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SOIL & CROP SCIENCES

Influence of transplanting techniques and age of wash root type seedlings on planting attributes of paddy rice

ORCID Icon, , , , &
Article: 2176978 | Received 02 Aug 2022, Accepted 01 Feb 2023, Published online: 19 Mar 2023

References

  • Alipour, A. F., & Mobasser, H. R. (2021). Effect of planting density on growth characteristics and grain yield increase in successive cultivations of two rice cultivars. Agrosystems, Geosciences and Environment, 4, e20213. https://doi.org/10.1002/agg2.20213
  • Anonymous. (1986) Design and development of engine operated paddy transplanter for mat type seedlings. Dept. of farm machinery and power engineering, Punjab Agricultural University, Ludhiana.
  • Anonymous. (2017). Southwest monsoon report. Indian Metrological Department.
  • Anonymous. (2018) Annual report 2017-18. Pp197-220 ministry of agriculture & farmer welfare. Govt of India.
  • Anonymous. (2019) Rice knowledge bank. http://www.knowledgebank.irri.org/training/fact-sheets/crop-establishment/manual-transplanting (site visited on 30- 04-2019)
  • Anonymous. (2021a) Area, yield and production of rice in world. https://www.fao.org/faostat/en/ (Site visited on 11- 08-2021)
  • Anonymous. (2021b) Handbook of agriculture 2021. Punjab Agricultural University, Ludhiana, India
  • Anonymous. (2021c) Package of Practices for crops of Punjab for kharif 2021. Punjab Agricultural University, Ludhiana, India
  • ANTAM-003-2017. (2017). Test code for testing paddy transplanter, Asian and Pacific Network for Testing of Agricultural Machinery (ANTAM). https://hdl.handle.net/20.500.12870/4477
  • Asenso, E., Zhang, L., Tang, L., Issaka, F., Tian, K., Li, J., & Hu, L. (2019). Moldboard plowing with direct seeding improves soil properties and sustainable productivity in ratoon rice farmland in southern China. Sustainability, 11(22), 6499. https://doi.org/10.3390/su11226499
  • Badgujar, C. M., Dhingra, H. S., Manes, G. S., & Khurana, R. (2017). Development and evaluation of inclined plate metering mechanism for soaked Okra (Abelmoschus Esculentus) seeds. International Journal of Current Microbiology and Applied Sciences, 6(12), 3948–21. https://doi.org/10.20546/ijcmas.2017.612.455
  • Baek, J. S., & Chung, N. J. (2012). Seed wintering and deterioration characteristics between weedy and cultivated rice. Rice, 5(21). https://doi.org/10.1186/1939-8433-5-21
  • Buschermohle, M. J., Smith, A., Boyer, C., & Bowling, R. G. (2016) Influence of planter width, planting speed and seed loading methods on planting efficiency for cotton production. Proceedings, Beltwide Cotton Conference, National Cotton Council of America., New Orleans, LA: National Cotton Council of America.
  • Chaba, A. A. (2014) Despite labour shortage, not many takers for paddy transplanter . The Indian Express (Jalandhar Edition) (published on 09- 04-2014). https://indianexpress.com/article/india/india-others/despite-labour-shortage-not-many-takers-for-paddy-transplanter/
  • Chaudhary, V. P., Varshney, B. P., & Kalra, M. S. (2005). Self-propelled rice transplanter-a better alternative than manual transplanting. Agricultural Engineering Today, 29, 32–37. https://www.indianjournals.com/ijor.aspx?target=ijor:aet&volume=29&issue=5and6&article=005#:~:text=Since%20long%2C%20mechanical%20transplanting%20using,plant%20density%20contributing%20to%20higher
  • Chauhan, B. S., & Johnson, D. E. (2011). Row spacing and weed control timing affect yield of aerobic rice. Field Crops Research, 121(2), 226–231. https://doi.org/10.1016/j.fcr.2010.12.008
  • Condra, C. J. (2017) Influence of planter width, planting speed, and perimeter to-area ratio on field efficiency for row crop planters. Master’s Thesis, University of Tennessee,2017. University of Tennessee. https://trace.tennessee.edu/utk_gradthes/4864
  • Dholay, S. G., & Matekar, S. B. (2015). Optimum kinematic synthesis and development of an automatic onion transplanter. International Engineering Research Journal, 2, 5748–5753. http://www.ierjournal.org/pgcon/886.Optimum%20Kinematic%20Synthesis%20and%20Development%20of%20an%20Automatic%20Onion%20Transplanter.pdf
  • Dihingia, P. C., Prasanna, G. V. K., & Sarma, P. K. (2016). Development of a hopper-type planting device for a walk-behind hand-tractor-powered vegetable transplanter. Journal of Biosystems Engineering, 41(1), 21–33. https://doi.org/10.5307/JBE.2016.41.1.021
  • Dixit, A., Khurana, R., Singh, J., & Singh, G. (2007). Comparative performance of different paddy transplanters developed in India – A review. Agricultural Reviews, 28, 262–269. https://www.indianjournals.com/ijor.aspx?target=ijor:ar&volume=28&issue=4&article=004
  • Donnell, H. (2001). Farm power and machinery management, Wiley-Blackwell; 10 edition
  • Dou, Z., Li, Y., Guo, H., Chen, L., Jiang, J., Zhou, Y., Xu, Q., Xing, Z., Gao, H., & Zhang, H. (2021). Effects of mechanically transplanting methods and planting densities on yield and quality of Nanjing 2728 under rice-crayfish continuous production system. Agronomy, 11(3), 488. https://doi.org/10.3390/agronomy11030488
  • Goel, A. K., Behera, D., & Swain, S. (2008) Effect of sedimentation period on performance of rice transplanter. Agricultural Engineering International: the CIGR Ejournal. Manuscript PM 07034. Vol. X
  • Hayashi, S., Kamoshita, A., & Yamagishi, J. (2006). Effect of planting density on grain yield and water productivity of rice (Oryza sativa L.) grown in flooded and non-flooded fields in Japan. Plant Production Science, 9, 298–311. http://dx.doi.org/10.1626/pps.9.2983
  • He, L., Ashraf, U., Du, B., Lai, R., Luo, H., Abrar, M., & Tang, X. (2020). Increased seedlings per hill compensates yield loss due to zero tillage in machine-transplanted fragrant rice. Crop Science, 60(5), 2683–2694. https://doi.org/10.1002/csc2.20218
  • Hossen, M. A., Hossain, M. M., Haque, M. E., & Bell, R. W. (2018). Effect of seed rate on seedling quality for mechanical rice transplanting. Bangladesh Rice Journal, 22(1), 9–23. https://www.banglajol.info/index.php/BRJ/article/view/41834/31229
  • Ishfaq, M., Akbar, N., Anjum, S. A., & Haq, M. A. U. (2020). Growth, yield and water productivity of dry direct seeded rice and transplanted aromatic rice under different irrigation management regimes. Journal of Integrative Agriculture, 19, 2656–2673. https://doi.org/10.1016/S2095-3119(19)
  • Ishfaq, M., Akbar, N., Zulfiqar, U., Ali, A., Shah, A., Anjum, S. A., & Farooq, M. (2022). Economic assessment of water-saving irrigation management techniques and continuous flooded irrigation in different rice production systems. Paddy Water Environment, 20(1), 37–50. https://doi.org/10.1007/s10333-021-00871-6
  • Islam, T., & Salam, M. A. (2017). Effect of number of seedlings hill-1 on the yield and yield contributing characters of short duration Aman rice cultivars. Progressive Agriculture, 28(4), 279–286. https://doi.org/10.3329/pa.v28i4.36367
  • Jat, H. S., Jat, R. D., Nanwal, R. K., Lohan, S. K., Yadav, A. K., Poonia, T., Sharma, P. C., & Jat, M. L. (2020). Energy use efficiency of crop residue management for sustainable energy and agriculture conservation in NW India. Renewable Energy, 155, 1372–1382. https://doi.org/10.1016/j.renene.2020.04.046
  • Jehangir, I. A., Hussain, A., Sofi, N. R., Wani, S. H., Ali, O. M., Abdel Latef, A. A. H., Raja, W., & Bhat, M. A. (2021). Crop establishment methods and weed management practices affect grain yield and weed dynamics in temperate rice. Agronomy, 11(11), 2137. https://doi.org/10.3390/agronomy11112137
  • Kumar, M., Dogra, R., Narang, M., Singh, M., & Mehan, S. (2021). Development and evaluation of direct paddy seeder in puddled field. Sustainability, 13(5), 2745. https://doi.org/10.3390/su13052745
  • Kumar, D., Singh, U. V., Kumar, J., Kumar, M., & Khan, K. (2017). Laboratory test and calibration of direct paddy drum seeder for pre- germinated paddy seeds. International Journal of Current Microbiology and Applied Sciences, 6(9), 1037–1046. https://doi.org/10.20546/ijcmas.2017.609.125
  • Li, G., Chen, T., Ke, X., Liu, Y., Dai, Q., Huo, Z., & Wei, H. (2021). Early sowing increases grain yield and cooking and eating quality of machine-transplanted rice in eastern China. Crop Science, 61(6), 4383–4401. https://doi.org/10.1002/csc2.20627
  • Manian, R., Selvan, M., & Kathirvel, K. (2002). Performance evaluation of basin lister cum-seeder attachment to tractor drawn cultivator. Agricultural Mechanization in Asia, Africa and Latin America, 33(1), 15–19. https://www.agriculturalmechanization.com/app/download/14507481035/VOL.33_NO.1_WINTER_2002.pdf?t=1611646834
  • Mishra, A. K., Kumar, U., & Sahu, G. (2021). Development and performance evaluation of a manually operated paddy transplanter for root-washed seedlings. Journal of Agricultural Engineering, 58(4), 323–342. https://doi.org/10.52151/jae2021581.1755
  • Mishra, A., & Salokhe, V. M. (2008). Seedling characteristics and the early growth of transplanted rice under different water regimes. Experimental Agriculture, 44(3), 365–383. https://doi.org/10.1017/S0014479708006388
  • Mittal, J. P., & Dhawan, K. ca. 1988. Research manual on energy requirements in agricultural sector (pp. 20–23) .ICAR.
  • Muthayya, S., Sugimoto, J. D., Montgomery, S., & Maberly, G. F. (2014). An overview of global rice production, supply, trade, and consumption. Annals of the New York Academy of Sciences, 1324(1), 7–14. https://doi.org/10.1111/nyas.12540
  • Nag, P. K., & Gite, L. P. (2020). Ergonomics Application in Design of Farm Tools and Equipment. Human-Centered Agriculture, Design Science and Innovation 1st Design Science and Innovation (pp 301–331). Springer Singapore. https://doi.org/10.1007/978-981-15-7269-2_12
  • Nare, B., Shrivastava, A. K., Naik, R. K., & Prakash, A. (2014). Design, development and evaluation of self-propelled garlic (Allium Sativum L.) Clove Planter. Agricultural Mechanization in Asia, Africa, and Latin America, 45(2), 74–79. https://www.agriculturalmechanization.com/app/download/14479924735/VOL.45_NO.2_SPRING_2014.pdf?t=1646618937
  • Pal, S., Tripathi, A., Khandai, S., & Kerketta, A. K. (2018). Performance evaluation and cost economics of developed manual paddy transplanter. International Journal of Current Microbiology and Applied Sciences, 7(12), 2690–2694. https://doi.org/10.20546/ijcmas.2018.712.305
  • Pandey, N., Verma, A. K., & Tripathi, R. S. (2001). Effect of planting time and nitrogen on tillering pattern, dry-matter accumulation, and grain yield of hybrid rice (Oryza sativa). Indian Journal of Agricultural Sciences, 337–338. https://epubs.icar.org.in/index.php/IJAgS/article/view/39809
  • Patil, S. B., Shahare, P. U., & Aware, V. V. (2017). Field testing of power operated paddy transplanter suitable for root washed seedlings, international. Journal of Pure and Applied Biosciences, 5(6), 1146–1152. https://doi.org/10.18782/2320-7051.6011
  • Rao, A. N., Johnson, D. E., Sivaprasad, B., Ladha, J. K., & Mortimer, A. M. (2007). Weed management in direct - seeded rice. Advances in Agronomy, 93, 153–255. https://doi.org/10.1016/S0065-2113(06)93004-1
  • RNAM. 1983 . Test code for testing paddy transplanter. Regional Network for Agricultural Machinery (RNAM). RNAM.
  • Singh, M., Kumar, M., Prakash, A., Sharma, K., & Mishra, P. K. (2018). Comparative field performance of pneumatic planters for planting of maize crop. Agricultural Engineering Today, 42, 12–18. https://www.indianjournals.com/ijor.aspx?target=ijor:aet&volume=42&issue=3&article=002
  • Singh, M. K., Pal, S. K., Thakur, R., & Verma, V. N. (1997). Energy input–output relationship of cropping systems. Indian Journal of Agricultural Sciences, 67, 262–264. https://agris.fao.org/agris-search/search.do?recordID=IN2022004719
  • Singh, G., Sharma, T. R., & Bockhop, C. W. (1985). Field performance evaluation of a manual rice transplanter. Journal of Agricultural Engineering and Research, 32(3), 259–268. https://doi.org/10.1016/0021-8634(85)90083-6
  • Taylor, R. K., Schrock, M. D., & Staggenborg, S. A. (2001). Using GPS technology to assist machinery management decisions. American Society of Agricultural and Biological Engineers Paper No. MC01-204. St. Joseph, MI: ASABE
  • Tuong, P., Bouman, B. A. M., & Mortimer, M. (2005). More rice, less water—integrated approaches for increasing water productivity in irrigated rice-based systems in Asia. Plant Production Science, 8(3), 231–241. https://doi.org/10.1626/pps.8.231
  • Yogeswari, D., & Porpavai, S. (2018). Effect of crop establishment methods and irrigation scheduling on growth and yield of rice. International Journal of Chemical Studies, 6, 32–35. https://www.chemijournal.com/archives/?year=2018&vol=6&issue=4&ArticleId=2971&si=false
  • Zachariah, J. P., BIS Guide for estimating cost of farm machinery operation (1979) IS: 9164, Bureau of Indian Standards, New Delhi, 1–18
  • Zhang, T. W., & Dornfeld, D. A. (2007). Energy use per worker-hour: Evaluating the contribution of labor to manufacturing energy use. In Advances in Life Cycle Engineering for Sustainable Manufacturing Businesses: Proceedings of the 14th CIRP Conference on Life Cycle Engineering, Waseda University, Tokyo, Japan, June 11th–13, (pp. 189–193). Waseda University.
  • Zilpilwar, S. R., Yadav, R., & Gajjar, P. (2020). Garlic (Allium sativum L.) clove planter: The mechanization in garlic cultivation. Journal of Ergonomics, 10(5), s. https://doi.org/10.35248/2165-7556.20.10.268