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Review

Prospects of molybdenum fertilization in grain legumes-A review

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Pages 1425-1440 | Received 07 Jan 2021, Accepted 09 Feb 2021, Published online: 27 Dec 2021

References

  • Adkine, P. M., D. D. Mankar, V. M. Khandait, V. L. Bhandare, and S. M. Nawlakhe. 2011. Effect of boron, molybdenum and potassium nitrate on growth, yield and economics of soybean. Journal of Soils and Crops 21 (1):116–23.
  • Ahlawat, I. P. S., B. Gangaiah, M. Z. Ashraf. 2007. Nutrient management in chickpea. In Chickpea breeding and management, eds. S. S. Yadav, R. Redden, W. Chen, and B. Sharma, 213–32. Wallingford, Oxon, United Kingdom: CAB International.
  • Alam, F., T. Y. Kim, S. Y. Kim, S. S. Alam, P. Pramanik, P. J. Kim, and Y. B. Lee. 2015. Effect of molybdenum on nodulation, plant yield and nitrogen uptake in hairy vetch (Vicia villosa Roth). Soil Science and Plant Nutrition 61 (4):664–75. doi: https://doi.org/10.1080/00380768.2015.1030690.
  • Ali, M., and J. P. Mishra. 2001. Effect of foliar nutrition of boron and molybdenum on chickpea. Indian Journal of Pulses Research 14 (1):41–3.
  • Alves, J. M., E. C. Guimaraes, and J. S. Alves. 2002. Molybdenum application in cowpea. [Vigna unguiculata (L.) Walp] Leaf. Revista Universidade Rural Serie Ciencias da Vida 22:193–7.
  • Arun, M. N., S. Shankara Hebbar, K. Bhanuprakas, and T. Senehivel. 2017. Seed priming improve irrigation water use efficiency, yield and yield components of summer cowpea under limited water conditions. Legume Research 40:864–71.
  • Awomi, T. A., A. K. Singh, A. P. Singh, and L. J. Bordoloi. 2011. Effect of phosphorus, molybdenum and cobalt on growth yield and nutrient content of mungbean and soil fertility. Journal of Soils and Crops 21 (2):158–64.
  • Balachandar, D., P. Nagarajan, and S. Gunasekaran. 2003a. Effects of micronutrients on nodulation and yield of black gram in acid soil conditions. Legume Research 26 (2):153–4.
  • Balachandar, D., P. Nagarajan, and S. Gunasekaran. 2003b. Effect of organic amendments and micronutrients on nodulation and yield of blackgram in acid soil. Legume Research 26 (3):192–5.
  • Bambara, S., and P. A. Ndakidemi. 2009. Effects of Rhizobium inoculation, lime and molybdenum on photosynthesis and chlorophyll content of Phaseolus vulgaris L. African Journal of Microbiological Research 3 (11):791–8.
  • Bambara, S., and P. A. Ndakidemi. 2010a. The potential roles of lime and molybdenum on the growth, nitrogen fixation and assimilation of metabolites in nodulated legume, a special reference to Phaseolus vulgaris L. African Journal of Biotechnology 8 (17):2482–9.
  • Bambara, S., and P. A. Ndakidemi. 2010b. Phaseolus vulgaris response to Rhizobium inoculation, lime and molybdenum in selected low pH soil in Western Cape. South Africa. African Journal of Agricultural Research 5 (14):1804–11.
  • Bambara, S., and P. A. Ndakidemi. 2010c. Changes in selected soil chemical properties in the rhizosphere of Phaseolus vulgaris L. supplied with Rhizobium inoculants, molybdenum and lime. Scientific Research and Essays 5 (7):679–84.
  • Bandyopadhyay, S., B. Bhattacharya, K. Ghosh, and C. Varadachari. 2008. New slow-releasing molybdenum fertilizer. Journal of Agricultural and Food Chemistry 56 (4):1343–9. doi: https://doi.org/10.1021/jf072878g.
  • Banerjee, P., B. Mukherjee, A. Ghosh, M. Pramanik, and R. Nath. 2020. Influence of seed priming and foliar nutrition on quality and nutrient uptake of relay grass pea (Lathyrus sativus L.) in Gangetic plains of West Bengal. International Journal of Current Microbiology and Applied Sciences 9 (5):2864–72. doi: https://doi.org/10.20546/ijcmas.2020.905.329.
  • Banerjee, P., V. Visha Kumari, R. Nath, and P. Bandyopadhyay. 2019. Seed priming and foliar nutrition studies on relay grass pea after winter rice in lower Gangetic plain. Journal of Crop and Weed 15 (3):72–8. doi: https://doi.org/10.22271/09746315.2019.v15.i3.1240.
  • Bassan, D. A. Z., O. Arf, S. Buzetti, M. A. C. Carvalho, N. C. B. Santos, and M. E. Sá. 2001. Seed inoculation and nitrogen and molybdenum application on a winter bean crop, production and physiological seed quality. Revista Brasileira de Sementes 23 (1):76–83. doi: https://doi.org/10.17801/0101-3122/rbs.v23n1p76-83.
  • Begum, R., S. K. Swain, and S. K. Mohanty. 2018. Effect of micronutrients on plant growth and yield in green gram. International Journal of Chemical Studies 6 (2):1671–3.
  • Bhagiya, S. R., K. B. Polara, and J. V. Polara. 2005. Effect of B and Mo on yield, quality and nutrient absorption by groundnut. Advances in Plant Sciences 18 (2):803–6.
  • Bhattacharyya, J., and A. K. Pal. 2001. Effect of Rhizobium inoculation, phosphorus and molybdenum on the growth of summer green gram (Vigna radiata L. Wiczek). Journal of Interacad 5 (4):450–7.
  • Bhuiyan, M. M. H., M. M. Rahman, F. Afroze, G. N. C. Sutradhar, and M. S. Bhuiyan. 2008. Effect of phosphorus, molybdenum and Rhizobium inoculation on growth and nodulation of mungbean. Journal of Soil and Nature 2 (2):25–30.
  • Biscaro, G. A., S. A. R. Goulart-Junior, R. P. Soratto, N. A. Freitas-Júnior, A. V. A. Motomiya, and G. C. Calado-Filho. 2009. Molybdenum applied to seeds and side dressing nitrogen on irrigated common bean in cerrado soil. Ciência e Agrotecnologia 33 (5):1280–7. doi: https://doi.org/10.1590/S1413-70542009000500012.
  • Biswas, S., A. Banerjee, P. Acharyya, and N. Chakraborty. 2020. Response of French bean (Phaseolus vulgaris L. cv. Arka Arjun) to Rhizobium inoculation under varied levels of nitrogen and molybdenum. International Journal of Current Microbiology and Applied Sciences 9 (3):2759–67. doi: https://doi.org/10.20546/ijcmas.2020.903.316.
  • Biswas, P. K., M. K. Bhowmick, and A. Bhattacharyya. 2009. Effect of molybdenum and seed inoculation on nodulation, growth and yield in urdbean [Vigna mungo (L.) Hepper]. Journal of Crop and Weed 5 (1):141–4.
  • Biswas, P. K., M. K. Bhowmick, and A. Bhattacharyya. 2010. Effect of molybdenum and seed inoculation on nodulation, growth and yield in mungbean (Vigna radiata L.). Journal of Crop and Weed 5 (1):119–21.
  • Bittner, F. 2014. Molybdenum metabolism in plants and crosstalk to iron. Frontiers in Plant Science 5:28. doi: https://doi.org/10.3389/fpls.2014.00028.
  • Biyan, S. C., P. Dhuppar, and D. S. Rao. 2014. Integrated nutrient management assessment for increased mungbean crop yield. Crop Research 48 (1,2 and 3):38–41.
  • Boto, J. A., J. B. Valenciano, and V. Marcelo. 2010. Response of chickpea (Cicer arietinum L.) yield to zinc, boron and molybdenum application under pot conditions. Spanish Journal of Agricultural Research 8 (3):797–807. doi: https://doi.org/10.5424/sjar/2010083-1281.
  • Brkić, S., Z. Milaković, A. Kristek, and M. Antunović. 2011. Pea yield and its quality depending on inoculation, nitrogen and molybdenum fertilization. Plant, Soil and Environment 50 (No. 1):39–45. doi: https://doi.org/10.17221/3640-PSE.
  • Caliskan, S., I. Ozkaya, M. E. Caliskan, and M. Arslan. 2008. The effects of nitrogen and iron fertilization on growth, yield and fertilizer use efficiency of soybean in a Mediterranean-type soil. Field Crops Research 108 (2):126–32. doi: https://doi.org/10.1016/j.fcr.2008.04.005.
  • Campo, R. J., R. S. Araujo, and M. Hungria. 2009. Molybdenum-enriched soybean seeds enhance N accumulation, seed yield, and seed protein content in Brazil. Field Crops Research 110 (3):219–24. doi: https://doi.org/10.1016/j.fcr.2008.09.001.
  • Campo, R. J., and M. Hungria. 2002. Importância dos micronutrientes na fi xação biológica do N2. Informações Agronômicas 98:6–9.
  • Chakraborty, A. 2009. Growth and yield of lentil (Lens culinaris L.) as affected by boron and molybdenum application in lateritic soil. Journal of Crop and Weed 5 (1):88–91.
  • Chatterjee, R., and S. Bandyopadhyay. 2017. Effect of boron, molybdenum and biofertilizers on growth and yield of cowpea (Vigna unguiculata L. Walp.) in acid soil of eastern Himalayan region. Journal of the Saudi Society of Agricultural Sciences 16 (4):332–6. doi: https://doi.org/10.1016/j.jssas.2015.11.001.
  • Chaudhari, S. R., V. J. Zinzala, and L. K. Saini. 2018. Effect of seed treatment with Rhizobium, molybdenum and cobalt on quality, nutrient content and uptake by green gram and soil fertility after harvest of the crop. Trends in Biosciences 11 (6):923–6.
  • Chaudhary, H. R., O. P. Sharma, L. R. Yadav, and G. L. Choudhary. 2011. Effect of organic sources and chemicals fertilizers on productivity of mungbean. Journal of Food Legumes 24:324–6.
  • Datta, J. K., A. Kundu, S. D. Hossein, A. Banerjee, and N. K. Mondal. 2011. Studies on the impact of micronutrient (molybdenum) on germination, seedling growth and physiology of bengal gram (Cicer arietinum) under laboratory condition. Asian Journal of Crop Science 3 (2):55–67. doi: https://doi.org/10.3923/ajcs.2011.55.67.
  • Deb, R., P. Poddar, and S. Banerjee. 2006. Effect of various modes of application of molybdenum on nodulation, yield and economics of groundnut cultivation under terai region of West Bengal. Environment and Ecology 24:1081–4.
  • Deo, C., and M. L. Kothari. 2002. Effect of modes and levels of molybdenum application on grain yield protein content and nodulation of chickpea grown on loamy sand soil. Communications in Soil Science and Plant Analysis 33 (15–18):2905–15. doi: https://doi.org/10.1081/CSS-120014490.
  • Dozet, G., S. B. Tubic, L. Kostadinovic, V. Djukic, S. Jaksic, V. Popovic, and M. Cvijanovic. 2016. The effect of preceding crops nitrogen fertilization and cobalt and molybdenum application on yield and quality of soybean grain. Romanian Agricultural Research 33:1–11.
  • Duraisamy, P., and A. K. Mani. 2001. Effect of iron and molybdenum on yield and nutrition of horse gram in red loamy sand soil. Mysore Journal of Agricultural Science 35:26–31.
  • Duval, B. D., S. M. Natali, and B. A. Hungate. 2015. What constitutes plant-available molybdenum in sandy acidic soils? Communications in Soil Science and Plant Analysis 46 (3):318–26. doi: https://doi.org/10.1080/00103624.2014.969405.
  • Edulamudi, P., A. J. A. Masilamani, V. Zakkula, and V. M. Konada. 2017. Effect of molybdenum and zinc on nodulation, leghaemoglobin content and pod formation of horse gram. Annals of Arid Zone 56 (3 and 4):117–23.
  • El-Hersh, M. S., K. M. Abd El-Hai, and K. M. Ghanem. 2011. Efficiency of molybdenum and cobalt elements on the lentil pathogens and nitrogen fixation. Asian Journal of Plant Pathology 5 (3):102–14. doi: https://doi.org/10.3923/ajppaj.2011.102.114.
  • Elkhatib, H. A. 2009. Growth and yield of common bean (Phaseolus vulgaris L.) in response to Rhizobium inoculation, nitrogen and molybdenum fertilization. Alexandria Science Exchange Journal 30 (2):319–32.
  • Eloir, P. G., E. Conte, A. M. Castro, and O. De Fábio Faria. 2005. Soybean yield in response to molybdenum and Bradyrhizobium japonicum inoculation. Revista Brasileira de Ciência do Solo 29 (1):151–5. doi: https://doi.org/10.1590/S0100-06832005000100017.
  • Farhangi-Abriz, S., R. Faegi-Analou, and N. Nikpour-Rashidabad. 2017. Foliar application of sodium molybdate enhanced nitrogen uptake and translocation in soybean plants by improving nodulation process under salt stress. Cercetari Agronomice in Moldova 50 (3):71–82. doi: https://doi.org/10.1515/cerce-2017-0027.
  • Fitzpatrick, K. L., S. D. Tyerman, and B. N. Kaiser. 2008. Molybdate transport through the plant sulfate transporter SHST1. FEBS Letters 582 (10):1508–13. doi: https://doi.org/10.1016/j.febslet.2008.03.045.
  • Gad, N. 2012. Response of cowpea plants to cobalt and molybdenum combination. Middle East Journal of Applied Sciences 2 (1):13–9.
  • Gad, N., and M. R. A. El-Moez. 2013. Influence of molybdenum on nodulation, nitrogen fixation and yield of cowpea. Journal of Applied Sciences Research 9:1498–504.
  • Gad, N., and H. Kandil. 2013. Evaluate the effect of molybdenum and different nitrogen levels on cowpea (Vigna anguiculata). Journal of Applied Sciences Research 9 (3):1490–7.
  • Głowacka, A., T. Gruszecki, B. Szostak, and S. Michałek. 2019. The response of common bean to sulphur and molybdenum fertilization. International Journal of Agronomy 2019:1–8. doi: https://doi.org/10.1155/2019/3830712.
  • Gonzalez-Guerrero, M., A. Matthiadis, A. Saez, and T. A. Long. 2014. Fixating on metals, new insights into the role of metals in nodulation and symbiotic nitrogen fixation. Frontiers in Plant Scence 5 (45).doi: https://doi.org/10.3389/fpls.2014.00045
  • Gungula, D. T., and Y. Garjila. 2006. The effects of molybdenum application on growth and yield of cowpea. American-Eurasian Journal of Agricultural & Environmental Sciences 1 (2):96–101.
  • Gupta, S. C., and S. Gangwar. 2012. Effect of molybdenum, iron and microbial inoculants on symbiotic traits, nutrient uptake and yield of chickpea. Journal of Food Legumes 25 (1):45–9.
  • Gupta, S. C., and S. Sahu. 2012. Response of chickpea to micronutrients and biofertilizers in vertisol. Legume Research 35 (3):248–51.
  • Hamaguchi, H., K. Watanabe, K. Matsuo, M. Umemoto, M. Takahashi, Y. Watanabe, and K. Itoh. 2016. Effects of molybdenum (Mo) in the seed enriched by foliar application in the preceding generation on nodulation and yield of supernodulating soybean (Glycine max L. Merr.) lines. Japanese Journal of Crop Science 85 (2):130–7. doi: https://doi.org/10.1626/jcs.85.130.
  • Hamlin, R. L. 2007. Molybdenum. In Handbook of plant nutrition, eds. A. V. Barker, and D. Pilbeam, 375–95. Boca Raton, FL: CRC.
  • Hansch, R., and R. R. Mendel. 2009. Physiological functions of mineral micronutrients (Cu, Zn, Mn, Fe, Ni, Mo, B, Cl). Current Opinion in Plant Biology 12 (3):259–66. doi: https://doi.org/10.1016/j.pbi.2009.05.006.
  • Heidarzade, A., M. Esmaeili, M. Bahmanyar, and R. Abbasi. 2016. Response of soybean (Glycine max) to molybdenum and iron spray under well-watered and water deficit conditions. Journal of Experimental Biology and Agricultural Sciences 4 (1):37–46. doi: https://doi.org/10.18006/2015.4(1).37.46.
  • Hernandez, J. A., S. J. George, and L. M. Rubio. 2009. Molybdenum trafficking for nitrogen fixation. Biochemistry 48 (41):9711–21. doi: https://doi.org/10.1021/bi901217p.
  • Hidayatullah, M. Tahir, A. S. Kakar, S. G. Shah, and M. Usman. 2016. Response of peas to molybdenum application with and without rhizobium inoculum under alkaline calcareous soils. Science International (Lahore) 28 (5):4753–8.
  • Hirpara, D. V., H. L. Sakarvadia, A. S. Jadeja, L. C. Vekaria, and H. P. Ponkia. 2018. Response of boron and molybdenum on groundnut (Arachis hypogaea L.) under medium black calcareous soil. Journal of Pharmacognosy and Phytochemistry 8 (5):671–7.
  • Hristozkova, M., M. Geneva, and I. Stancheva. 2006. Response of pea plants (Pisum sativum L.) to reduced supply with molybdenum and copper. International Journal of Agriculture and Biology 8 (2):218–20.
  • Hristozkova, M., I. Stancheva, M. Geneva, and G. Georgiev. 2005. Effect of different foliar fertilizer concentrations on pea plants nodulation at reduced Mo supply. In Proc. Balkan scientific conference of biology in Plovdiv, eds. B. Gruev, M. Nikolova, and A. Donev, 365–72. Bulgaria: Bulgarian Academy of Sciences.
  • Islam, M. M., M. R. Karim, M. M. H. Oliver, T. A. Urmi, M. A. Hossain, and M. M. Haque. 2018. Impacts of trace element addition on lentil (Lens culinaris L.). Agronomy 8 (7):100–13. doi: https://doi.org/10.3390/agronomy8070100.
  • Jabbar, B. K. A., and H. M. Saud. 2012. Effects of molybdenum on biological nitrogen fixation by combination of Rhizobium and Azospirillum in soybean under drip irrigation system. International Journal of Life Sciences Biotechnology and Pharma Research 1 (2):63–77.
  • Jahiruddin, M. 2008. Role of micronutrients in balanced fertilization for sustainable crop production in Bangladesh. Bangladesh Journal of Agriculture and Environment 4 (Special Issue):165–75.
  • Jain, A. K., S. Kumar, and J. D. S. Panwar. 2007. Response of mungbean (Vigna radiata) to phosphorus and micronutrients on N and P uptake and seed quality. Legume Research 30 (3):201–4.
  • Jesus, W. C., F. X. R. Vale, R. R. Coelho, B. Hau, L. Zambolim, and R. D. Berger. 2004. Effect of foliar sprays of molybdenum (Mo) and boron (B) on vegetative growth and dry matter production of French bean. Agronomy Journal 96 (3):665–70. doi: https://doi.org/10.2134/agronj2004.0665.
  • Johansen, C., A. M. Musa, J. V. D. K. Rao, D. Harris, M. Y. Ali, A. K. M. Shahidullah, and J. G. Lauren. 2007. Correcting molybdenum deficiency of chickpea in the High Barind Tract of Bangladesh. Journal of Plant Nutrition and Soil Science 170 (6):752–61. doi: https://doi.org/10.1002/jpln.200700249.
  • Kadlag, A. D., J. C. Patil, M. C. Kasture, and A. D. Jagdhani. 2006. Effect of molybdenum on yield and quality of soybean. Annals of Plant Physiology 20 (2):281–2.
  • Kaiser, B. N., K. L. Gridley, N. J. Brady, T. Phillips, and S. D. Tyerman. 2005. The role of molybdenum in agricultural plant production. Annals of Botany 96 (5):745–54. doi: https://doi.org/10.1093/aob/mci226.
  • Kevresan, S., N. Petrovic, M. Popovic, and J. Kandrac. 2001. Nitrogen and protein metabolism in young pea plants as affected by different concentrations of nickel, cadmium lead and molybdenum. Journal of Plant Nutrition 24 (10):1633–44. doi: https://doi.org/10.1081/PLN-100106026.
  • Khan, K., and V. Prakash. 2014. Effect of rhizobial inoculation on growth, yield, nutrient and economics of summer urdbean (Vigna mungo L.) in relation to zinc and molybdenum. International Journal of Advanced Research in Chemistry and Chemical Engineering 1 (1):1–10.
  • Khan, N., M. Tariq, K. Ullah, D. Muhammad, I. Khan, K. Rahatullah, N. Ahmed, and S. Ahmed. 2014. The effect of molybdenum and iron on nodulation, nitrogen fixation and yield of chickpea genotypes (Cicer Arietinum L). IOSR Journal of Agriculture and Veterinary Science 7 (1):63–79. doi: https://doi.org/10.9790/2380-07136379.
  • Khanal, N., K. D. Joshi, D. Harris, and S. P. Chand. 2005. Effect of micronutrient loading, soil application and foliar sprays of organic extracts on grain legumes and vegetable crops under marginal farmers' conditions in Nepal. Proc. Intnl. Workshop on Micronutrients. South and South East Asia, Kathmandu, Nepal, Sept 8-11. 121–32.
  • Kumar, J., and M. Sharma. 2005. Effect of phosphorus and molybdenum on yield and nutrient uptake by chickpea (Cicer arietinum L.). Advances in Plant Sciences 18 (2):869–73.
  • Kumar, A., S. S. Singh, R. Kumar, N. Kumawat, and A. K. Singh. 2010. Response of Rhizobium and different levels of molybdenum on growth, nodulation and yield of black gram (Vigna mungo L.). Environment and Ecology 28 (3A):1728–30.
  • Kumar, M., A. P. Singh, J. Prakash, T. P. S. Katiyar, R. Kumar, and R. Bharose. 2013. Effect of phosphorus and molybdenum on yield and nutrient uptake by cowpea. An Asian Journal of Soil Science 8 (2):366–9.
  • Kumar, R., G. S. Tomar, N. Kumawat, and S. P. Singh. 2018. Effect of varieties, plant density and molybdenum on yield and economics of blackgram under rainfed condition of Chhattisgarh. International Journal of Chemical Studies 6 (1):1867–70.
  • Kumawat, N., R. Kumar, and O. P. Sharma. 2009. Nutrient uptake and yield of mungbean [Vigna radiate (L.) Wilczek] asinfluenced by organic manure, PSB and Phosphorus fertilization. Environment and Ecology 27 (4B):2002–5.
  • Laltanmawia, L.,. A. K. Singh, and S. K. Sharma. 2004. Effect of phosphorus and molybdenum on yield, protein content by soybean on acid soil of Nagaland. Journal of the Indian Society of Soil Science 52:199–202.
  • Makoi, J. H. J. R., S. Bambara, and P. A. Ndakidemi. 2013. Rhizobium inoculation and the supply of molybdenum and lime affect the uptake of macro elements in common bean (P. vulgaris L.) plants. Australian Journal of Crop Science 7 (6):784–93.
  • Malik, K., S. Kumar, and K. P. S. Arya. 2015a. Effect of zinc, molybdenum and urea on growth and yield of mungbean (Vigna radiate L. Wilczek). Advance Research Journal of Crop Improvement 6 (1):59–65. doi: https://doi.org/10.15740/HAS/ARJCI/6.1/59-65.
  • Malik, K., S. Kumar, and K. P. S. Arya. 2015b. Effect of zinc, molybdenum and urea on chlorophyll and protein content of mungbean (Vigna radiata L. Wilczek). International Journal of Plant SCIENCES 10 (2):152–7. doi: https://doi.org/10.15740/HAS/IJPS/10.2/152-157.
  • Malla Reddy, M., B. Padmaja, S. Malathi, and L. Jalapathi Rao. 2007. Effects of micronutrients on growth and yield of pigeonpea. Journal of SAT Agricultural Research 5 (1):1–3.
  • Mandou, M. S., A. H. Chotangui, L. N. Nkot, and D. Nwaga. 2017. Effect of Rhizobia inoculation phosphorus and molybdenum application on nodulation, N uptake and yield of peanut (Arachis hypogaea L.). International Journal of Agronomy and Agricultural Research 11 (1): 103–113.
  • Masanta, S., and S. Biswas. 2009. Effect of various nutrient management practices on productivity, soil fertility status and water use efficiency of French bean grown under homestead condition in Nadia district of West Bengal. Journal of Crop and Weed 5 (2):50–2.
  • Mcbride, M. B. 2005. Molybdenum and copper uptake by forage grasses and legumes grown on a metal-contaminated sludge site. Communications in Soil Science and Plant Analysis 36 (17-18):2489–501. doi: https://doi.org/10.1080/00103620500255840.
  • Meera, S., P. S. Pandian, R. Indirani, and T. Ragavan. 2019. Influence of phosphorus and molybdenum on growth attributes and yield of black gram in typichaplustalf. Internaional Journal of Chemical Studies 7 (3):2533–6.
  • Mendel, R. R., and R. Hänsch. 2002. Molybdoenzymes and molybdenum cofactor in plants. Journal of Experimental Botany 53 (375):1689–98. doi: https://doi.org/10.1093/jxb/erf038.
  • Mevada, K. D., J. J. Patel, and K. P. Patel. 2005. Effect of micronutrients on yield of urdbean. Indian Journal of Pulses Research 18:214–6.
  • Michel, D. C., I. C. F. Vasques, G. D. C. R. Araújo, J. L. D. Castro, L. L. R. D. Assis, R. H. C. L. D. Reis, M. L. D. S. Silva, and V. Faquim. 2020. Influence of molybdenum doses in inoculation and mineral fertilization in cowpea beans. Bioscience 36 (1):102–12.
  • Nasar, J., and Z. Shah. 2017. Effect of iron and molybdenum on yield and nodulation of lentil. ARPN Journal of Agricultural and Biological Science 12 (11):332–9.
  • Nasreen, S., and A. T. M. Farid. 2003. Nutrient uptake and yield of garden pea as influenced by various fertilizer treatments. Thai Journal of Agricultural Science 36 (2):185–92.
  • Nautiyal, N., and C. Chatterjee. 2004. Molybdenum stress- induced changes in growth and yield of Chickpea. Journal of Plant Nutrition 27 (1):173–81. doi: https://doi.org/10.1081/PLN-120027554.
  • Nautiyal, N., S. Singh, and C. Chatterjee. 2005. Seed reserves of chickpea in relation to molybdenum supply. Journal of the Science of Food and Agriculture 85 (5):860–4. doi: https://doi.org/10.1002/jsfa.1929.
  • Navaz, M., S. Kumar, D. Chandrakar, Dameshwar, and A. Ahmad. 2017. Impact of foliar spray of nutrients and seed treatment on economics and energetics of lathyrus (Lathyrus sativus L.) under relay cropping system. Journal of Pharmacognosy and Phytochemistry 6 (5):1683–6.
  • Navaz, M., S. Kumar, G. K. Shrivastava, M. Mandavi, P. K. Salam, and N. Pandey. 2018. Impact of foliar spray of nutrients and seed treatment on uptake of phosphorus of plant and seed of lathyrus (Lathyrus sativus L.)Under relay cropping system. International Journal of Fauna and Biological Studies 5 (2):1–2.
  • Niranjana, H. G., Prakash, S. S. N. A. Basavegowda, Y., and H. T. Chandranath. 2005. Effect of micronutrient seed treatment on growth and yield of groundnut. Seed Research 33 (2):138–41.
  • Omer, F. A., D. N. Abbas, and A. S. Khalaf. 2016. Effect of molybdenum and potassium application on nodulation, growth and yield of lentil (Lens culinaris Medic). Pakistan Journal of Botany 48 (6):2255–9.
  • Padhi, P. P., and S. K. Pattanayak. 2018. Effect of lime coating and molybdenum seed treatment on nodulation, growth and yield of different pulses grown in Alfisols. International Journal of Current Microbiology and Applied Sciences 7 (2):1417–26. doi: https://doi.org/10.20546/ijcmas.2018.702.171.
  • Pal, A. K. 2010. Effect of Rhizobium inoculation and application of phosphorus and molybdenum on growth and yield in blackgram. Advances in Plant Science 23 (1):53–5.
  • Patra, P. K., and C. Bhattacharya. 2009. Effect of different leyels of boron and molybdenum on growth and yield of mung bean [Vigna radiata (L.)Wilczek (cv. Baisakhi Mung)] in Red and Laterite zone of West Bengal. Journal of Crop and Weed 5 (1):119–21.
  • Pattanayak, S. K., D. Dash, M. K. Jena, and R. K. Nayak. 2000. Seed treatment of green gram with molybdenum and cobalt: Effect on nodulation, biomass production and n uptake in an acid soil. Journal of the Indian Society of Soil Science 48 (4):769–73.
  • Pessoa, A. C. S., A. C. Ribeiro, J. M. Chagas, and S. T. A. Cassini. 2001. Nitrogenase and nitrate reductase activities and productivity of common beans in response to foliar application of molybdenum. Revista Brasileira de Ciência do Solo 25 (1):217–24. doi: https://doi.org/10.1590/S0100-06832001000100023.
  • Pires, A. A., G. A. A. Araujo, G. V. Miranda, P. G. Berger, A. C. B. Ferreira, P. D. Zampirolli, and U. T. Leite. 2004. Grain yield, yield components and bean SPAD index of common bean (Phaseolus vulgaris L.) in relation to time and partitioning of molybdenum foliar spray. Ciência e Agrotecnologia 28 (5):1092–8. doi: https://doi.org/10.1590/S1413-70542004000500017.
  • Pramanik, P., M. M. Haque, and P. J. Kim. 2013. Effect of nodule formation in roots of hairy vetch (Vicia villosa) on methane and nitrous oxide emissions during succeeding rice cultivation. Agriculture, Ecosystems & Environment 178:51–6. doi: https://doi.org/10.1016/j.agee.2013.06.021.
  • Quaggio, J. A., P. B. Gallo, C. Owino-Gerroh, M. F. Abreu, and H. Cantarella. 2004. Peanut response to lime and molybdenum application in low pH soils. Revista Brasileira de Ciência do Solo 28 (4):659–64. doi: https://doi.org/10.1590/S0100-06832004000400008.
  • Quddus, M. A., M. H. Rashid, M. A. Hossain, and H. M. Naser. 1970. Effect of zinc and boron on yield and yield contributing characters of mungbean in low Ganges river floodplain soil at Madaripur, Bangladesh. Bangladesh Journal of Agricultural Research 36 (1):75–85. doi: https://doi.org/10.3329/bjar.v36i1.9231.
  • Rabbani, M. G., A. R. M. Solaiman, K. M. Hossain, and T. Hossain. 2005. Effect of Rhizobium inoculants, nitrogen, phosphorus and molybdenum on nodulation, yield and seed protein in pea. Korean Journal of Sustainable Crop Science 50 (2):112–9.
  • Rabby, A. K. M. Z., A. K. Paul, and J. R. Sarker. 2011. Effects of nitrogen and molybdenum on the growth and yield of garden pea (Pisum sativum L.). International Journal of Bio-Resource and Stress Management 2 (2):230–5.
  • Rahman, M. M. H., G. C. C. Sutradhar, M. M. Rahman, and A. K. Paul. 2008. Effect of phosphorus, molybdenum and Rhizobium inoculation on yield attributes of mungbean. International Journal of Sustainable Crop Production 3 (6):26–33.
  • Rajesh, N., and V. K. Paulpandi. 2013. Review of foliar nutrition in Redgram enhancing the growth and yield characters. American International Journal of Research in Formal, Applied and Natural Sciences 13 (142):9–13.
  • Ramesh, K., and V. Thirumurugan. 2001. Effect of seed pelleting and foliar nutrition on growth of soybean. Madras Agricultural Journal 88:465–8.
  • Rathi, B. J., A. K. Jain, S. Kumar, and J. D. S. Panwar. 2009. Response of rhizobium inoculation with sulphur and micronutrients on yield and yield attributes of black gram. Legume Research 32 (1):62–4.
  • Raut, S. S., C. N. Chore, R. D. Deotale, H. U. Waghmare, C. N. Hatmode, and M. D. Yenprediwar. 2004. Response of seed dressing with biofertilizers and nutrient on chemical, biochemical, yield and yield contributing parameters of soybean. Journal of Soils and Crops 14:66–70.
  • Reshma, R. K., Agnihotri, R. Vamil, G. Singh, M. Ahmad, and R. Sharma. 2014. Effect of molybdenum and cobalt induced heavy metal stress on seedling growth stage of Vigna radiate. Acta Botanica Hungarica 56 (1–2):227–41. doi: https://doi.org/10.1556/ABot.56.2014.1-2.15.
  • Reshma, B. S., R. B. Nazirkar, R. S. Thakare, and N. B. Kondvilkar. 2017. Effect of foliar spray of zinc, iron and seed priming with molybdenum on growth and yield attributes and quality of soybean in the rainfed condition of vertisol. International Journal of Chemical Studies 6 (1):828–31.
  • Sable, S., P. Y. Sontakey, B. Nair, P. Manapure, and R. D. Deotale. 2000. Influence of seed inoculation with Rhizobium and molybdenumon soybean roots. Journal of Soils and Crops 10 (2):126–30.
  • Salam, P. K., Rajput, R. S. P. K. Mishra, A., and G. K. Srivastava. 2005. Effect of micronutrients fertilization onproductivity potential of urdbean (Phaseolus mungo L.). Annals of Agricultural Research 25 (2):329–32.
  • Salha, B., and R. Chaabane. 2016. Effect of molybdenum and nitrogen on Phaseolus vulgaris L. Cicer arietinum L. and Lens culinaris M. seedlings grown under salt stress. International Journal of Biosciences 8 (6):34–42.
  • Samant, T. K. 2017. Effect of Rhizobium and molybdenum inoculation on yield, economics, nodulation and nitrogen uptake in mungbean (Vigna radiate L.). International Journal of Chemical Studies 5 (5):1376–9.
  • Sarkar, R. K., B. Biswas, and G. C. Malik. 2003. Productivity of grass pea (Lathyrus sativus L.) under different levels of phosphorus and foliar spray of molybdenum. Lathyrus Lathyrism Newsletter 3:36–7.
  • Schwarz, G., R. R. Mendel, and M. W. Ribbe. 2009. Molybdenum cofactors, enzymes and pathways. Nature 460 (7257):839–47. doi: https://doi.org/10.1038/nature08302.
  • Seema, S., and P. K. Singh. 2009. Effect of micronutrients and biofertilizer inoculation on grain yield, protein content, micronutrients content and economics of chickpea crop. Annals of Agricultural Research 30 (1 and 2):32–5.
  • Shankhe, G. M., B. A. Sonune, and P. S. Naphade. 2003. Influence of boron and molybdenum on yield and quality of groundnut. Annals of Plant Physiology 16 (2):157–9.
  • Sharma, S. R., and S. C. Bhandari. 2002. Effects of organic manure and mineral nutrients on the symbiotic efficiency in cowpea. Indian Journal of Pulses Research 15 (2):156–60.
  • Shil, N. C., S. Noor, and M. A. Hossain. 1970. Effects of boron and molybdenum on the yield of chickpea. Journal of Agriculture & Rural Development 5 (1 and 2):17–24. doi: https://doi.org/10.3329/jard.v5i1.1452.
  • Shirpurkar, G. N., N. V. Kashid, M. S. Kamble, A. A. Pisal, and N. D. Sarode. 2006. Effect of application of zinc, boron and molybdenum on yield and yield attributing characters of soybean. (Glycine max L.) Merrill). Legume Research 29 (4):242–6.
  • Shivakumar, U. I., and K. Kumutha. 2003. Effect of Rhizobium and molybdenum on nodulation yield and yield contributing characters of groundnut. Journal of Ecobiology 15:451–5.
  • Silva, A., V. I. Franzini, C. D. Piccolla, and T. Muraoka. 2017. Molybdenum supply and biological fixation of nitrogenby two Brazilian common bean cultivars. Revista Brasileira de Engenharia Agrícola e Ambiental 21 (2):100–5. doi: https://doi.org/10.1590/1807-1929/agriambi.v21n2p100-105.
  • Singh, M., K. Deo, J. S. Mishra, and B. P. Bhatt. 2017. Effect of integrated nutrient management on production potential and quality of summer mungbean (Vigna radiata L.). Journal of Krishi Vigyan 5 (2):39–45. doi: https://doi.org/10.5958/2349-4433.2017.00009.5.
  • Singh, A. K., M. A. Khan, and A. Srivastava. 2014. Effect of boron and molybdenum application on seed yield of mungbean. Asian Journal of Bio Science 9 (2):169–72. doi: https://doi.org/10.15740/HAS/AJBS/9.2/169-172.
  • Singh, D. K., P. Kumar, N. Mishra, S. K. Singh, and A. K. Singh. 2012. Effect of cobalt, boron and molybdenum at different fertility status on organic carbon and total nitrogen in soil after crop harvest of pea (Pisum sativum L.). New Agriculturist 23 (1):27–30.
  • Singh, D. K., P. Kumar, N. Mishra, S. K. Singh, and A. K. Singh. 2011. Interactive effect of cobalt, boron and molybdenum at different fertility status on available nitrogen and organic nitrogen in soil after pea. (Pisum sativum L.) crop harvest. New Agriculturist 22 (1):57–61.
  • Singh, R., R. Singh, P. Yadav, S. Singh, L. Prasad, and J. Singh. 2006. Effect of sulphur and molybdenum on yield and quality of blackgram (Vigna mungo L.). Crop Research 32 (3):336–8.
  • Singh, R. P., B. Singh, P. K. Yadav, J. Singh, S. N. Singh, R. K. Singh, and J. Singh. 2008. Integrated use of sulphur and molybdenum on growth, yield and quality of black gram (Vigna mungo L.). Legume Research 31:214–7.
  • Srinivasan, S., R. V. Selvi, S. Ramesh, M. Pandiyan, M. Sunder, R. Kannan, and R. Marimuthu. 2007. Response of mungbean to different methods and levels of molybdenum application under acid soil conditions. Acta Horticulturae 752 (752):473–6. doi: https://doi.org/10.17660/ActaHortic.2007.752.86.
  • Subasinghe, S., G. A. Dayatilake, and R. Senaratne. 2003. Effect of B, Co and Mo on nodulation, growth and yield of cowpea (Vigna unguiculata). Tropical Agricultural Research and Extension 6:108–12.
  • Tahir, M., A. Ali, N. Aabidin, M. Yaseen, and H. Rehman. 2011. Effect of molybdenum and seed inoculation on growth, yield and quality of mungbean. Crop Environvenment 2 (2):37–40.
  • Tahir, M., A. Sher, and M. A. Majeed. 2014. Effect of molybdenum on yield and quality of black gram (Vigna mungo L.). Pakistan Journal of Life and Social Sciences 12 (2):101–5.
  • Taran, N. Y., O. M. Gonchar, K. G. Lopatko, L. M. Batsmanova, M. V. Patyka, and M. V. Volkogon. 2014. The effect of colloidal solution of molybdenum nanoparticles on the microbial composition in rhizosphere of Cicer arietinum L. Nanoscale Research Letters 9 (1):289. doi: https://doi.org/10.1186/1556-276X-9-289.
  • Tiwari, D. K., and R. C. Jain. 2014. Influence of micronutrient and bio-fertilizer application on soybean growth, yield and economics in black soil of central India. International Journal of Agricultural and Statistical Sciences 10 (1):197–200.
  • Togay, Y., N. Togay, and Y. Dogan. 2008. Research on the effect of phosphorus and molybdenum applications on the yield and yield parameters in lentil (Lens Culinaris Medic.). African Journal of Biotechnology 7 (9):1256–60.
  • Togay, N., Y. Togay, M. Erman, and F. Çig. 2015. Effect of Fe (iron) and Mo (molybdenum) application on the yield and yield parameters of lentil (. Legume Research - An International Journal 38 (3):358–62. doi: https://doi.org/10.5958/0976-0571.2015.00120.4.
  • Umair, A., S. Ali, R. Hayat, M. Ansar, and M. J. Tareen. 2011. Evaluation of seed priming in mung bean (Vigna radiata) for yield, nodulation and biological nitrogen fixation under rainfed conditions. African Journal of Biotechnology 10 (79):18122–9.
  • Valenciano, J. B., J. A. Boto, and V. Marcelo. 2011a. Chickpea (Cicer arietinum L.) response to zinc, boron and molybdenum application under field conditions. New Zealand Journal of Crop and Horticultural Science 39 (4):217–29. doi: https://doi.org/10.1080/01140671.2011.577079.
  • Valenciano, J. B., V. Marcelo, and M. M. Miguelez-Frade. 2011b. Effect of different times and techniques of molybdenum application on chickpea (Cicer arietinum) growth and yield. Spanish Journal of Agricultural Research 9 (4):1271–8. doi: https://doi.org/10.5424/sjar/20110904-516-10.
  • Velmurugan, R., and P. P. Mahendran. 2015. Molybdenum fertilization effect on nodulation, yield and quality of green gram grown in the soils of southern agro-climatic zone of Tamil Nadu, India. Legume Research 38 (6):798–803.
  • Verma, C. B., V. K. Verma, R. Pyare, and D. Singh. 2019. Effect of seed priming and foliar spray of boron, molybdenum on pigeon pea (Cajanus cajan L.). International Journal of Chemical Studies 7 (4):2822–4.
  • Yadav, A., L. Yadav, R., and S. S. Yadav. 2017. Effect of molybdenum on nodulation, total nutrient uptake and protein content of clusterbean. International Journal of Current Microbiology and Applied Sciences 6 (5):1939–44. doi: https://doi.org/10.20546/ijcmas.2017.605.215.
  • Zeidan, M. S., M. Hozayn, and M. E. E. Abd El-Salam. 2006. Yield and quality of lentil as affected by micronutrient deficiencies in sandy soils. Journal of Applied Sciences Research 2:1342–5.
  • Zhou, J., B. Deng, Y. Zhang, B. A. Cobb, and Z. Zhang. 2017. Molybdate in rhizobial seed-coat formulations improves the production and nodulation of alfalfa. Plos One 12 (1):e0170179–14. doi: https://doi.org/10.1371/journal.pone.0170179.

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