首页> 外文期刊>Legume research >Impact of legume intensified crop rotations and tillage practices on maize productivity vis-a-vis C and N dynamics of a sandy loam soil in north-western Indo-Gangetic Plains of India
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Impact of legume intensified crop rotations and tillage practices on maize productivity vis-a-vis C and N dynamics of a sandy loam soil in north-western Indo-Gangetic Plains of India

机译:豆类强化作物旋转和耕作实践对玉米生产力的影响,印度西南西北地区砂土土壤的玉米生产力达-A-is-is-is and

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The study was conducted to evaluate long-term effect of legume intensified maize based crop rotations and contrasting tillage practices and a experiment was laid out in split plot design with three tillage practices i. e. zero tillage (ZT), permanent bed (PB) and conventional tillage (CT) as main plot treatments and four legume intensified crop rotations (MWMb maize- wheat-mungbean, MCS -maize-chickpea-Sesbania, MMuMb -maize-mustard-mungbean and MMS -maize-maizeSesbania) as sub-plot treatments. Adoption of CA based tillage practices (ZT/PB) significantly improved maize protein yield (MPY). ZT/PB gave 7.7-14.2% higher MPY(Maize protein yield and 7.4-13.0% higher MPYA (maize protein yield for adults) over CT. Similarly, the MPY and MPYA under legume intensified cereal based rotations were invariably higher in MCS and MWMb systems compared to MMuMb and MMS rotations. The total soil nitrogen (TSN) content increased by 15.4-17.4 and 20.32-20.91% with ZT and PB over CT in 0-15 and 15-30 cm soil depths, respectively. However, among the legume intensified rotations the maize planted under MCS and MWMb rotations registered 11.3-18.0% (0-15cm) and 8.411.0% (15-30cm) higher TSN over MMuMb and MMS rotation. Similarly, adoption of the CA practices (ZT/PB) resulted into significant improvement in soil organic carbon (SOC) stocks compared to CT. ZT and PB among the tillage practices and MCS crop rotations among the sub-plot treatments registered higher Leaf area index (LAI) and net assimilation rate (NAR) compared to other management practices. Interaction effect of tillage practices and crop rotations were significant for MPY, MPYA, TSN and SOC stocks and all these parameters were reported maximum with ZT-MCS. Thus, our study suggests that CA based crop management with legume diversified maize based rotations (MCS and MWMb) can be advocated as sustainable intensification strategy in north-western India and other similar agro-ecologies of South Asia.
机译:该研究进行了评估豆类强化基于玉米的作物轮换的长期效果,并将耕作耕作实践与三个耕作惯例的分裂块设计中定制出来。 e。零耕作(ZT),永久床(Pb)和常规耕作(CT)作为主要情节治疗和四种豆类加强作物轮换(MWMB玉米 - 麦片,MCS -MAIZE-Chickpea-Sesbania,Mmumb -Maize-Mustard-Mungbean和MMS -MAIZE-MAIZESESBISBIA)作为子地图治疗。采用基于CA的耕作措施(ZT / PB)显着改善了玉米蛋白质产量(MPY)。 ZT / PB在CT上获得7.7-14.2%的MPY(玉米蛋白质产量和7.4-13.0%(成人玉米蛋白质产量)。同样,MCS和MWMB中,豆类的MPY和MPYA在豆类加强谷物的旋转中得分起得多与mmumb和MMS旋转相比的系统。总土壤氮气(TSN)含量分别在0-15和15-30cm的土壤深度分别增加了15.4-17.4和20.32-20.91%,ZT和PB。但是,其中豆类加强旋转玉米在MCS和MWMB旋转下种植11.3-18.0%(0-15cm)和8.411.0%(15-30厘米)的TSN,超越Mmumb和MMS旋转。类似地,采用CA实践(ZT / PB )与CT相比,土壤有机碳(SoC)股中的显着改善。ZT和Pb在耕作实践和MCS作物旋转中,亚绘制治疗中的较高叶面积指数(LAI)和净同化率(NAR)相比到其他管理措施。耕作实践的互动效应ND作物旋转对于MPY,MPYA,TSN和SOC股票具有重要意义,并且ZT-MCS最大地报告所有这些参数。因此,我们的研究表明,CA基于豆类多样化玉米的旋转(MCS和MWMB)可以倡导印度西北和南亚其他类似农业生态的可持续加强战略。

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