The impact of leftover herbicide residue applied to okra on weeds and crops of subsequent blackgram
DOI:
https://doi.org/10.59797/jfl.v37.i3.211Keywords:
Nutrient uptake, Pendimethalin, Productivity, Quizalofop-ethyl, Weed densityAbstract
In the present study, the impact of residual herbicide was studied from previous applications on okra plants, explicitly concerning the growth of weeds and subsequent black gram crops. The relative density of different weed species was determined, revealing that Echinochloa colonum had the highest density at 16.56% and 12.88%, followed by Leptochloa chinensis at 13.01% and Acrachne racemosa at 10.82%. However, within the group of sedges, Cyperus rotundus and Cyperus haspan had a greater relative density of 13.01% and 9.79%, respectively. The weed-free control treatment achieved the highest seed output of black gram, followed by two manual weeding on the 20th and 40th DAS. The herbicide residue resulted from application of metribuzin 500 g ha-1 on 3rd DAS, followed by post-emergence (POE) application of quizalofopethyl 50g ha-1 on 20 DAS recorded higher plant height 5.7%, dry matter production 32.7%, clusters plants-1 33.3%, pods plant-1 79.6%, grain yield 41.0%, halum yield 44.7%, nitrogen uptake 54.3%, phosphorus uptake 117.5%, and potash uptake 81.8% as compared to the weedy check.
References
Ahlawat I, Todarmal, Punia SS, Dahiya G, Bhardwaj S and Abhishek. 2024. Influence of herbicide-based integrated weed management strategies on growth and yield of fenugreek (Trigonella foenumgraecum L.) in Indo-gangetic plains. Journal of Food Legumes 37(1): 72-79.
AICRPWC. 1998. All India Coordinated Research Project on Weed Control, National Research Centre for Weed Science, Annual Report (Jan.-Dec.1997), Adhartal, Jabalpur, India. pp: 45-71.
Bommayasamy N and Chinnamuthu CR. 2019. Effect of preceding rice herbicide residue on weed, growth and yield of summer blackgram in rice-bhendi-blackgram sequence. Innovative Farming 4(1): 40-44.
Bommayasamy N and Chinnamuthu CR. 2021. Preceding (rice-okra) crops herbicide residual effects on weed, growth, yield and economics of succeeding blackgram under different ecosystem. Legume Research 44(7): 829-833.
Gomez KA and Gomez AA. 2010. Statistical procedures for agricultural research: John Wiley & Sons.
Kathepuri JV, Sankpal VY, Ghadage HL and Jawale SM. 2007. Weed management in irrigated onion (Allium cepa L.) under plane zone of Western Maharashtra. Madras Agricultural Journal 94(1-6): 127-130.
Kim SC and Moody K.1983. Comparison of some technologies for vegetation analysis of transplanted rice. Korean Journal Crop Science 28: 310-318.
Kulshrestha G, Singh SB, Lal SP, Nanjapur and Yaduraju T. 2000. Effect of long-term field application of pendimethalin: enhanced degradation in soil. Pest management Science 56(2): 202-206.
Kumar R and Singh UP. 2018. Performance of zero-till wheat (Triticum aestivum L.) with residue and weed management techniques under rice-wheat cropping system. Agricultural Science Digest 38(2): 113-117.
Kumawat L, Singh AP, Choudhary CS, Samota AK, Choudhary R, Joshi D, Sharma G and Kharol A. 2024. Effect of dose and time of imazethapyr on weed and
yield in summer season blackgram (Vigna mungo L.). Journal of Food Legumes 37(1): 117-121.
Namrata J. 2017. Efficacy of imazethapyr against weeds in blackgram. Trends in Biosciences 10(2): 945-946.
Nirmala H, Anamika S and Rathore AL. 2016. Post emergence herbicides for weed control in blackgram. Indian Journal of Weed Science 48(1): 76–78.
Pankaj SC, Upasani RR, Barla S, Dewangan PK and Kumar V. 2020. Efficacy of pre and post-emergence herbicides in blackgram crop. International Archive of Applied Sciences and Technology 11(3): 120-131.
Punia SS, Hooda VS, Duhan A, Yadav D and Amarjeet. 2013. Distribution of weed flora of greengram and blackgram in Haryana. Indian Journal of Weed Science 45(4): 247–249.
Ramesh T and Rathika S. 2016. Management of emerged weeds in irrigated blackgram (Vigna mungo L.) through post-emergence herbicides. Legume Research 39(2): 289-292.
Rana SC, Pandita VK, Chhokar RS. and Sirohi S. 2015. Effect of pre and post-emergence herbicides on weeds and seed yield of garden pea. Legume Research 38(4): 484-487.
Rao AS. 2011. Evaluation of post emergence herbicide alone and in combination with imazethapyr on weed control in rice fallow blackgram. The Andhra Agricultural Journal 58(3): 276-278.
Ryan MR, Smith RG, Mirsky SB, Mortensen DA and Seidel R. 2010. Management Filters and Species Traits: Weed Community Assembly in Long-Term Organic and Conventional Systems. Weed Science 58(3): 265-277.
Sangeetha C. 2010. Evaluation of early post - emergence herbicide in soybean and its residue on succeeding crops. M.Sc. (Ag.) Thesis, Tamil Nadu Agricultural University, Coimbatore, Tamil Nadu, India.
Snedecor GW and Cochran WG. 1967. Statistical Methods applied to experiments in agriculture and biology. 5th ed. Ames, Iowa: Iowa State University Press, 1967.
Upasani RR, Barla S, Hassan D and Puran AN. 2017. Weed management in blackgram and its residual effect on succeeding mustard crop. Indian Journal of Weed Science 49 (4): 346–349.
Watson DJ. 1958. The dependence of net assimilation rate on leaf-area index. Annals of Botany 22(1): 37-54.
Williams RF. 1946. The physiology of plant growth with special reference to the concept of net assimilation rate. Annals of Botany 10(37): 41-72.




