首页> 外文期刊>The Indian Journal of Agricultural Sciences >Impact assessment of integrated walnut fruit sequencing in exposed subsoil on vegetative growth traits, soil quality indicators and biological diversity in rainfed ecological system
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Impact assessment of integrated walnut fruit sequencing in exposed subsoil on vegetative growth traits, soil quality indicators and biological diversity in rainfed ecological system

机译:旱地植物生长特征,土壤质量指标及雨量生态系统中植物生长特征,土壤质量指标及生物多样性的影响评价

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摘要

This study monitored the impacts of integrated fruit-based cropping systems on vegetative growth traits, nutrient acquisition, microbial biomass and diversity in rhizosphere soil. Twelve cropping systems (CS) comprising Walnut-Peach-Sunhemp-Chrysanthemum (W-PSC), Walnut-Peach-Sunhemp-Tomato-Marigold (W-PSTM), Walnut-Nectarines-Sunhemp-Chrysanthemum (W-NSC), Walnut-Nectarines-Sunhemp-Tomato-Marigold (W-NSTM), Walnut-Plum-Sunhemp-Chrysanthemum (WP-SC), Walnut-Plum-Sunhemp-Tomato-Marigold (WP-STM), Walnut-Nectarines-Sunhemp- Chrysanthemum-Tomato-Marigold (W-NSCTM), Walnut-Apple-Sunhemp-Tomato-Marigold (W-ASTM), Walnut-Nectarines-Sunhemp-Soybean-Marigold (W-NSSM), Walnut-Nectarines-Sunhemp-Cucumber-Marigold (W-NSCuM), Walnut-Nectarines-Sunhemp-Cauliflower-Marigold (W-NSCauM) and Walnut-Nectarines (WN) have been demonstrated. The intercrop sequencing significantly improved vegetative growth and soil fertility indicators of exposed subsoils. Maximum moisture retention (25.2%), WHC (17.6%) and SOC (7.36 g/kg)was recorded in W-NSCTM. Available N, P, K, exchangeable Ca, Mg were improved by 30.1%, 34.3%, 20.5%, 92.1%, 78.3%, respectively, over walnut-nectarines. DTPA-extractable micronutrient cations (Fe, Cu, Zn, Mn) improved by 64.8%, 58%, 44.5%, 85.7%, respectively. Microbial biomass-N (MBN), microbial biomass-N (MBN), and the cultivable plate counts of Bacillus species, Pseudomonas species, soil fungi, Azotobacter chroococcum and actinobacteria exhibited significant variability. On an average, significantly higher cultivable microbial diversity was observed. Microbial communities of Pseudomonas (132.2%), Bacillus (141.4%), soil fungi (241.3%), A. chroococcum (222.1%) and actinobacteria (206.9%) improved significantly. Correlation analysis resulted in significant association (P0.05). Principal component analysis (PCA) accounted for 96.1% of the total variance within CS. PCA also identified MBC, MBN, and the microbial communities as major drivers for the variability among CS. It can be inferred that integrated fruit based sequencing is a better option for improving agronomic performance in terms of nutrient supply, recycling and microbial biomass capacity to generate eco-friendly soil quality management for sustainability in rural farming ecosystem.
机译:该研究监测了综合果实种类系统对根际土壤营养生长性状,营养率,微生物生物量和多样性的影响。 12种裁剪系统(CS)包含核桃 - 桃 - Sunhemp-Chrysanthemum(W-PSC),核桃 - 桃 - Sunhemp-番茄 - 万寿菊(W-PSTM),核桃 - Nectarines-Sunhemp-Chrysanthemum(W-NSC),核桃 - Nectarines-sunhemp-tomato-marigold(w-nstm),核桃 - 李子sunhemp-chrysanthemum(wp-sc),核桃 - 李子sunhemp-tomato-marigold(wp-stm),核桃 - 油桃 - sunhemp-菊花 - 菊花 - 菊花 - 番茄-Marigold(W-NSCTM),核桃 - Apple-Sunhemp-Tomato-Marigold(W-ASTM),核桃 - Nectarines-Sunhemp-Soybean-Marigold(W-NSSM),核桃 - Nectarines-Sunhemp-Cucumber-Marigold(W- NSCUM),已经证实了核桃 - 油线 - SUNHEMP-CAULIFLOWER-MAR​​IGOLD(W-NSCAUM)和核桃 - 油桃(WN)。曝光潜水物的营养生长和土壤肥力指标显着改善了植物的营养生长和土壤肥力指标。在W-NSCTM中记录最大水分保留(25.2%),WHC(17.6%)和SOC(7.36g / kg)。可用的N,P,K,可更换的Ca,Mg分别提高30.1%,34.3%,20.5%,92.1%,78.3%,核桃碱。 DTPA可提取的微量营养剂阳离子(Fe,Cu,Zn,Mn)分别提高了64.8%,58%,44.5%,85.7%。微生物生物量-N(MBN),微生物生物量-N(MBN)和芽孢杆菌种类的可耕地数,假单胞菌物种,土壤真菌,偶氮杆菌和抗菌菌具有显着的变异性。平均而言,观察到可培养的微生物多样性显着更高。假单胞菌(132.2%),芽孢杆菌(141.4%),土壤真菌(241.3%),A.Chroocccum(222.1%)和肌动菌(206.9%)显着改善。相关分析导致显着关联(P <0.05)。主成分分析(PCA)占CS内总方差的96.1%。 PCA还确定了MBC,MBN和微生物社区,作为CS之间变异性的主要驱动因素。可以推断,综合水果基测序是提高营养供应,再循环和微生物生物量能力方面改善农艺性能的更好选择,以在农村农业生态系统中为可持续发展产生环保土壤质量管理。

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