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Influence of tillage, residue management, and crop rotation on soil microbial biomass and catabolic diversity

机译:耕作,残留管理和轮作对土壤微生物量和分解代谢多样性的影响

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The densely populated, intensively cropped subtropical highlands of the world have agricultural sustainability problems from soil erosion and fertility decline. In 1991, the International Maize and Wheat Improvement Center (CIMMYT) initiated a long-term field experiment at its semi-arid highland experiment station in Mexico (2240 masl; 19.31 degrees N, 98.50 degrees W; Cumulic Phaeozem) to investigate the long-term effects of tillage/seeding practices, crop rotations, and crop residue management on maize and wheat grown under rainfed conditions. Soil ecology status contributes to agricultural system sustainability, and evaluations were made to determine the effect of different management practices on soil microbial biomass (SMB) (substrate-induced respiration (SIR) and chloroform fumigation incubation (CFI)) and micro-flora physiological and catabolic diversity (BIOLOG (TM) ecoplate well system). SMB-C (CFI, SIR) was significantly and respectively 1.2 and 1.3 times higher for residue retention (average 387 mg C kg(dry soil)(-1) and 515 mg C kg(dry soil)(-1), respectively) compared to residue removal. SMB-C (CFI) was significantly higher for wheat (369 mg C kg(dry soil)(-1)) compared to maize (319 mg C kg(dry soil)(-1)). SMB-N (CFI) was significantly 1.3 times higher for residue retention (average 28 mg N kg(dry soil)(-1)) compared to residue removal. The average well color development (AWCD) obtained by the BIOLOG (TM) ecoplate essay indicated there were large differences in the catabolic capability of soil microbial communities after 15 years of contrasting management practices. While maize and wheat rotation under conventional tillage with residue retention showed a significantly higher overall AWCD value compared to the other treatments, AWCD of maize with zero tillage and residue removal was significantly lower than in the other treatments. AWCD was significantly higher for residue retention compared to residue removal and for wheat as compared to maize. For maize, the management practices were divided into two groups; zero tillage with residue removal was separate from all other treatments. For wheat, conventional tillage was separate from all zero tillage treatments. This study suggests that in the target area, a cropping system that includes zero tillage, crop rotation, and crop residue retention can increase overall biomass and micro-flora activity and diversity compared with common farming practices. in the long term, zero tillage combined with residue retention creates conditions favourable for the development of antagonists and predators, and fosters a new ecological stability. Zero tillage without residue retention is an unsustainable practice that leads to poor soil health in the long run. (c) 2007 Elsevier B.V. All rights reserved.
机译:世界上人口稠密,种植密集的亚热带高地因土壤侵蚀和肥力下降而存在农业可持续性问题。 1991年,国际玉米和小麦改良中心(CIMMYT)在其位于墨西哥的半干旱高地试验站(2240 masl;北纬19.31度,西风98.50度;生菜根)进行了长期田间试验,在雨育条件下种植的玉米和小麦的耕作/播种习惯,轮作和作物残留管理的长期影响。土壤生态状况有助于农业系统的可持续性,并进行了评估以确定不同管理措施对土壤微生物生物量(SMB)(基质诱导呼吸(SIR)和氯仿熏蒸培养(CFI))以及微生物区系的生理和生理影响。分解代谢多样性(BIOLOG(TM)生态板孔系统)。 SMB-C(CFI,SIR)的残留保留率分别高出1.2倍和1.3倍(分别为387 mg C kg(干土)(-1)和515 mg C kg(干土)(-1))与去除残留物相比。小麦(369 mg C kg(干土)(-1))的SMB-C(CFI)显着高于玉米(319 mg C kg(干土)(-1))。与去除残留物相比,残留物保留的SMB-N(CFI)高出1.3倍(平均28 mg N kg(干土)(-1))。通过BIOLOG(TM)生态板文章获得的平均孔显色性(AWCD)表明,经过15年的对比管理实践,土壤微生物群落的分解代谢能力存在很大差异。与其他处理相比,在常规耕作下保留残留物的玉米和小麦轮作显示出较高的总体AWCD值,而零耕作和去除残留物的玉米AWCD则明显低于其他处理。与去除残留物相比,AWCD的残留物残留量显着更高,而与玉米相比,小麦的AWCD则更高。对于玉米,管理方法分为两组。去除残留物的零耕种与所有其他处理分开进行。对于小麦,常规耕作与所有零耕种处理是分开的。这项研究表明,在目标地区,与常规耕作方式相比,包括零耕种,轮作和作物残渣保留的耕作制度可以增加总体生物量和微生物区系活动以及多样性。从长远来看,零耕种与残留物保留相结合创造了有利于拮抗剂和捕食者发展的条件,并促进了新的生态稳定性。从零开始,没有残留物残留的耕作是不可持续的做法,从长远来看,这将导致土壤健康状况恶化。 (c)2007 Elsevier B.V.保留所有权利。

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