113
Views
0
CrossRef citations to date
0
Altmetric
Articles

Upper and lower levels of boron for cotton and wheat as influenced by calcium carbonate

&
Pages 2386-2400 | Received 26 Sep 2017, Accepted 29 Dec 2017, Published online: 20 Sep 2018

References

  • Ahmed, N., M. Abid, and F. Ahmad. 2008. Boron toxicity in irrigated cotton (Gossypium hirsutum L.). Pakistan Journal of Botany 40:2443–5.
  • Alpaslan, M., and A. Gunes. 2001. Interactive effects of boron and salinity stress on the growth, membrane permeability and mineral composition of tomato and cucumber plants. Plant and Soil 236:123–18.
  • Amer, M. M., M. A. Aiad, and G. M. A. El-Sanat. 2016. Some observations on boron in water, soils, and plants at various locations in Egypt. International Journal of Advanced Research 4 (8):2180–73.
  • Anderson, O. E., and F. C. Boswell. 1968. Boron and manganese effects on cotton yield, lint quality, and earliness of harvest. Agronomy Journal 60 (5):488–93.
  • Arora, S., and D. S. Chahal. 2005. Toxic effect of high boron content in soils on clover (Trifolium alexandrinum. Environmental Ecology 23:255–7).
  • Ascher-Ellis, J. S., R. D. Graham, G. J. Hollamby, J. Paul, and P. Davies. 2001. Micronutrients. In Application of physiology in wheat breeding, eds. M. P. Reynold, J. I. Ortiz-Moasterio, and A. McNab, 219–40. Mexico: CIMMYT.
  • Bansal, R. L., V. K. Nayyar, and P. N. Takkar. 1991. Availability of B, co, and S in ustochrepts. Journal of Indian Society of Soil Science 39:181–2.
  • Brady, N. C., and R. R. Weil. 2008. The nature and properties of soils (14th ed.), 1–965. USA: Pearson Education Publication.
  • Cartwright, B., B. A. Zarcinas, and A. H. Mayfield. 1984. Toxic concentrations of B in a red-brown earth at Gladstone, South Australia. Australian Journal of Soil Research 22 (3):261–72.
  • Chhipa, B. R., and P. Lal. 1989. Effect of soil boron on yield, yield attributes and nutrient uptake by different varieties of wheat. Polish Journal of Soil Science 22:85–9.
  • Cook, R. L., and C. E. Millar. 1940. Some soil factors affecting boron availability. Soil Science Society of America Journal 4 (C):297–301.
  • El-Gharably, G. A., and W. Bussler. 1985. Critical levels of boron in cotton plants. Zeitschrift Für Pflanzenernährung Und Bodenkunde 148 (6):681–8.
  • Elseewi, A. A., and A. E. Elmalky. 1979. Boron distribution in soils and waters of Egypt. Soil Science Society of America Journal 43 (2):297–300.
  • FAO. 1996. Food, Agriculture and Food Security: Developments since the World Food Conference and Prospects, World Food Summit Technical Background Doc. No. 1 Rome.
  • Fox, R. H. 1968. The effect of calcium and ph on boron uptake from high concentrations of boron by cotton and alfalfa. Soil Science 106 (6):435–9.
  • Furlani, A. M. C., C. P. Carvalho, J. G. Freitas, and M. F. Verdial. 2003. Wheat cultivar tolerance to boron deficiency and toxicity in nutrient solution. Scientia Agricola 60 (2):359–70.
  • Goldberg, S., and H. S. Forster. 1991. Boron sorption on calcareous soils and reference calcites. Soil Science 152 (4):304–10.
  • Goldberg, S., P. J. Shouse, S. M. Lesch, C. M. Grieve, J. A. Poss, H. A. Forster, and D. L. Suarez. 2003. Effect of high boron application on boron content and growth of melons. Plant and Soil 256 (2):403–11.
  • Guertal, E. A. 2004. Boron fertilization of bentgrass. Crop Science 44 (1):204–8.
  • Gupta, U. C. 1993. Boron and its role in crop production. Boca Raton, FL: CRC press.
  • Havlin, J. L., J. D. Beaton, S. L. Tisdale, and W. L. Nelson. 2005. Soil fertility and fertilizers (7th ed.). USA: Pearson Education Limited.
  • Heathcote, R. G., and J. B. Smithson. 1974. Boron deficiency in cotton in Northern Nigeria. I. Factors influencing occurrence and methods of corrections. Experimental Agriculture 10 (03):199–208.
  • Kanval, S., T. A. Rahmatullah, M. A. Maqsood, and N. Abbas. 2008. Critical ratio of calcium and boron in maize shoot for optimum growth. Journal of Plant Nutrition 31:1535–42.
  • Katyal, J. C., and S. C. Agarwala. 1982. Micronutrient research in India. Fertilizer News 27:66–86.
  • Keren, R., and F. T. Bingham. 1985. Boron in water, soil, and plants. Advances in Soil Science 1:229–76.
  • Kizilgoz, I., and E. Sakin. 2010. The effects of soil boron and calcium applications on boron and calcium uptake in durum wheat (Triticum durum L.). African Journal of Agriculture Research 5:2073–6.
  • Marschner, H. 1995. Mineral nutrition of higher plants. (2nd ed). London. UK: Academic Press.
  • Mazaheri, A. 1976. Analysis of boron. Communications in Soil Science and Plant Analysis 7 (3):331–3.
  • Niaz, A., M. Ibrahim, N. Ahmad, and S. A. Anwar. 2002. Boron contents of light and medium textured soils and cotton plants. International Journal of Agricultural Biology 4:534–6.
  • Niaz, A., A. M. Ranjha, Rahmatullah, A. Hannan, and M. Waqas. 2007. Boron status of soils as affected by different soil characteristics-pH, CaCO3, organic matter and clay contents. Pakistan Journal of Agricultural Science 44:428–33.
  • Patel, M. S., and B. A. Golakiya. 1986. Effect of calcium carbonate and boron application on yield and nutrient uptake by groundnut. Journal of Indian Society of Soil Science 34:815–20.
  • Patel, N. K., and B. V. Mehta. 1966. Effects of various calcium–boron and potassium–boron ratios on the growth and chemical composition of aromatic strain of bidi tobacco. Journal of Indian Society of Soil Science 14:241–51.
  • Rashid, A. 2005. Establishment and management of micronutrient deficiencies in soils of Pakistan: a review. Soil and Environment 24:1–22.
  • Rashid, A., and E. Rafique. 2002. Boron deficiency in cotton grown in calcareous soils of Pakistan, II: correction and criteria for foliar diagnosis. In Boron in plant and animal nutrition, eds. H. E. Goldbach, P. H. Brown, B. Rerkasem, T. Thellier, M. A. Wimmer, and R. W. Bell, 357–62. New York: Academic Kluwer/Plenum.
  • Rashid, A., and J. Ryan. 2004. Micronutrient constraint to crop production in soils with mediterranen type characteristics: a review. Journal of Plant Nutrition 27 (6):959–75.
  • Rashid, A., E. Rafique, and N. Bughio. 1997. Micronutrient deficiencies in rain-fed calcareous soils of Pakistan. III. Boron nutrition of sorghum. Communications in Soil Science and Plant Analysis 28 (6-8):441–54.
  • Razzaq, A., and M. Rafiq. 1996. Soil classification and survey. In Soil science, eds. A. Rashid, K. S. Memon, E. Bashir, and R. Bental, 405–37. Islamabad, Pakistan: National Book of Foundation.
  • Reisenauer, H. M., L. M. Walsh, and R. G. Hoeft. 1973. Testing soils for sulphur, boron, molybdenum, and chlorine. In Soil testing and plant analysis, eds. L. M. Walsh and J. D. Beaton, 173–200. Madison, WI: Soil Science Society of America Journal, Inc.
  • Rerkasem, B., R. Netsangtip, S. Lordkaew, C. Cheng, and N. J. Barrow. 1993. Grain set failure in boron deficient wheat. Plant and Soil 155-156 (1):309–12.
  • Rezaei, H., and M. J. Malakouti. 2001. Critical levels of iron, zinc and boron for cotton in varamin region. Journal of Agricultural Science and Technology 3:147–53.
  • Ross, J. R., N. A. Slaton, K. R. Brye, and R. E. Delong. 2006. Boron fertilization influence on soybean yield and leaf and seed boron concentrations. Agronomy Journal 98 (1):198–205.
  • Sakal, R., and A. P. Singh. 1995. Boron research and agricultural production. In Micronutrient research and agricultural production in fertilizer development, ed. H. L. S. Tandon, 1–31. New Delhi, India: Fetilizer Development and Consultation Organization.
  • Santos, A. R. D., W. T. D. Mattos, A. A. D. S. Almeida, F. A. Monteiro, B. D. Corrêa, and U. C. Gupta. 2004. Boron nutrition and yield of alfalfa cultivar crioula in relation to boron supply. Scientia Agricola 61 (5):496–500.
  • Sedri, M. H., and M. J. Malakouti. 1998. Determination of micronutrients critical levels in Kordestan irrigated wheat soils. Iran Journal of Soil and Water Science 12:19–31.
  • Shaaban, M. M., F. E. Abdalla, E. A. A. Abou El-Nour, and A. M. El-Saady. 2006. Boron/nitrogen interaction effect on growth and yield of faba bean plants grown under sandy soil conditions. International Journal of Agricultural Research 1 (4):322–30.
  • Shaaban, M. M., M. M. El-Fouly, and A. A. Abdel-Maguid. 2004. Zinc–boron relationship in wheat plants grown under low or high levels of calcium carbonate in the soil. Pakistan Journal of Biological Sciences 7 (4):633–9.
  • Sharma, H. C., and M. S. Bajwa. 1989. Different forms of boron in salt affected soils. Journal of Indian Society of Soil Science 37:470–4.
  • Shorrocks, V. M. 1997. The occurrence and correction of boron deficiency. Plant and Soil 193:121–48.
  • Sims, J. R., and G. V. Johnson. 1991. Micronutrient soil tests. In Micronutrients in agriculture. ed. J. J. Mortvedt, 427–76. Madison, WI: SSSA Book Ser. 4.SSSA.
  • Singh, R., and I. P. S. Ahlawat. 2012. Dry matter, nitrogen, phosphorous, and potassium partitioning, accumulation, and use efficiency in transgenic cotton-based cropping systems. Communications in Soil Science and Plant Analysis 43 (20):2633–50.
  • Singh, R., and I. P. S. Ahlawat. 2014. Effects of transgenic cotton-based cropping systems and their fertility levels on succeeding wheat crop. Communications in Soil Science and Plant Analysis 45 (18):2385–96.
  • Singh, S. P., and V. K. Nayyar. 1999. Available boron status of some alluvium-derived arid and semi-arid soils of Punjab. Journal of Indian Society Soil Science 47:801–2.
  • Sotiropoulos, T. E., N. Ioannis, K. Therios, and N. Dimassi. 1999. Calcium application as a means to improve tolerance of kiwifruit (Actinidia deliciosa L.) to boron toxicity. Scientia Horticulturae 81 (4):443–9.
  • Sotiropoulos, T. E., N. I. Therios, N. K. Dimassi, A. Bosbalidis, and G. Kofilids. 2002. Nutritional status, growth, CO2 assimilation, and leaf anatomical responses in two kiwi fruit species under boron toxicity. Journal of Plant Nutrition 5:1244–61.
  • Steel, R. G. D., and J. H. Torrie. 1980. Analysis of covariance. In Principles and procedures of statistics: a biometrical approach (2nd ed.), 401–37. New York: McGraw-Hill.
  • Subedi, K. D., C. B. Budhathoki, M. Subedi, and Y. D. Gc. 1997. Response of wheat genotypes to sowing date and boron fertilization aimed at controlling sterility in a rice-wheat rotation in Nepal. Plant and Soil 188:249–56.
  • Subedi, K. D., C. N. Floyd, and C. B. Budhathoki. 1998. Cool temperature-induced sterility in spring wheat (Triticum aestivum L.) at high altitudes in Nepal: variation among cultivars in response to sowing date. Field Crops Research 55 (1-2):141–51.
  • Sun, Z. Y., and C. J. Xu. 1986. Soil available B in the South of Hebei province and application of boron to cotton. Journal of Soil Science 1:130–2.
  • Takkar, P. N., I. M. Chibba, and S. K. Mehta. 1989. Twenty years of coordinated research on micronutrient in soils and plants (Bull. 314). Bhopal, India: Indian Institute of Soil Science.
  • Tsadilas, C. D., T. Kassioti, and I. K. Mitsios. 2005. İnfluence of liming and nitrogen forms an boron uptake by tobacco. Soil Science and Plant Analysis 36 (4-6):701–8.
  • Turan, M. A., N. Taban, and S. Taban. 2009. Effect of calcium on the alleviation of boron toxicity and localization of boron and calcium in cell wall of wheat. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 37:99–103.
  • Vitosh, M. L., D. D. Wameke, and R. E. Lucas. 1997. Boron. Mishigan State University Extension Soil and Management Fertilizer. Available on the http://www.Msue.msu.EDV.
  • Wang, Y. L., L. Shi, X. Cao, and F. Xu. 2007. Plant boron nutrition and boron fertilization in China. In Advances in plant and animal boron nutrition, ed. Xu, 93–101. Dordrecht: Springer
  • Wolf, B. 1940. Factors influencing availability of boron in soil and its distribution in plants. Soil Science 50 (3):209–17.
  • Wolf, B. 1974. Improvements in the azomethine-H method for the determination of boron. Communications in Soil Science and Plant Analysis 5 (1):39–44.
  • Woodruff, J. R. 2006. Interpretation of Soil and Plant Analyses for Boron in Southern Crops at the Oct. 2004 Southern Nutrient Management Conference in Olive Branch, MS.
  • Zhao, D., and D. M. Oosterhuis. 2002. Cotton carbon exchange, non-structural carbohydrates, and boron distribution in tissues during development of boron deficiency. Field Crops Research 78 (1):75–87.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.