Weeds response and control efficiency, greengram productivity and resource-use efficiency under a conservation agriculture-based maize-wheat-greengram system
Sonaka Ghosh, T. K. Das, Y. Shivay, K. Bandyopadhyay, S. Sudhishri, A. Bhatia, Dipankar Biswas, M. Yeasin, Sourav Ghosh
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引用次数: 0
Abstract
There has been a growing trend for achieving sustainable crop intensification without jeopardizing land productivity through conservation agriculture (CA). The CA has paved the way for cultivation of pulses in diverse cropping systems. A field experiment was conducted at ICAR-Indian Agricultural Research Institute, New Delhi during 2018-19 and 2019-20 cropping cycle with summer greengram in maize-wheat system to assess the effects of CA on weed interference, crop productivity and resource use efficiency. Results showed that CA-based practices with residue retention resulted in a considerable reduction in weed density and biomass when compared to conventional tillage (CT). Greengram yield parameters in CA were higher than in CT. The permanent broad bed (PBB) with residue retention (R) and recommended 100% N application (100N) (~PBB+R+100N) gave ~56% higher greengram grain yield than CT with considerably higher water productivity, nutrient-use efficiency and net returns. The adoption of CA practice involving PBB+R in greengram led to higher weed control efficiency and was more productive, remunerative and irrigation water-use efficient. Thus, it could potentially boost up the greengram productivity, profitability and resource-use efficiency under maize-wheat-greengram system in north-western Indo-Gangetic Plains (IGP) of India.
通过保护性农业(CA)在不损害土地生产力的情况下实现可持续作物集约化的趋势日益明显。该项目为在不同的种植系统中种植豆类铺平了道路。在2018-19和2019-20两个种植周期,在新德里icar -印度农业研究所(icar - india Agricultural Research Institute)进行了夏绿玉米-小麦系统的田间试验,评估了CA对杂草干扰、作物生产力和资源利用效率的影响。结果表明,与传统耕作(CT)相比,基于ca的秸秆保留做法导致杂草密度和生物量显著减少。与CT相比,CA的Greengram产量参数更高。留渣永久宽床(PBB)和推荐100%施氮(100N) (~PBB+R+100N)的绿粒产量比连续处理高56%,水分生产力、养分利用效率和净收益显著提高。在绿化带中采用PBB+R的CA做法,除草效率更高,产量更高,收益更高,灌溉用水效率更高。因此,它可以潜在地提高印度西北部恒河平原(IGP)玉米-小麦-绿豆系统下的绿豆生产率、盈利能力和资源利用效率。