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种植顺序引起的土壤微生物群落变化会影响土壤性质和作物产量。

The shift of soil microbial community induced by cropping sequence affect soil properties and crop yield.

作者信息

Sun Lei, Wang Shuang, Narsing Rao Manik Prabhu, Shi Yu, Lian Zheng-Han, Jin Pin-Jiao, Wang Wei, Li Yu-Mei, Wang Kang-Kang, Banerjee Aparna, Cui Xiao-Yang, Wei Dan

机构信息

Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, School of Forestry, Northeast Forestry University, Harbin, China.

Heilongjiang Academy of Black Soil Conservation and Utilization, Harbin, China.

出版信息

Front Microbiol. 2023 Feb 16;14:1095688. doi: 10.3389/fmicb.2023.1095688. eCollection 2023.

Abstract

Rational cropping maintains high soil fertility and a healthy ecosystem. Soil microorganism is the controller of soil fertility. Meanwhile, soil microbial communities also respond to different cropping patterns. The mechanisms by which biotic and abiotic factors were affected by different cropping sequences remain unclear in the major grain-producing regions of northeastern China. To evaluate the effects of different cropping sequences under conventional fertilization practices on soil properties, microbial communities, and crop yield, six types of plant cropping systems were performed, including soybean monoculture, wheat-soybean rotation, wheat-maize-soybean rotation, soybean-maize-maize rotation, maize-soybean-soybean rotation and maize monoculture. Our results showed that compared with the single cropping system, soybean and maize crop rotation in different combinations or sequences can increase soil total organic carbon and nutrients, and promote soybean and maize yield, especially using soybean-maize-maize and maize-soybean-soybean planting system. The 16S rRNA and internal transcribed spacer (ITS) amplicon sequencing showed that different cropping systems had different effects on bacterial and fungal communities. The bacterial and fungal communities of soybean monoculture were less diverse when compared to the other crop rotation planting system. Among the different cropping sequences, the number of observed bacterial species was greater in soybean-maize-maize planting setup and fungal species in maize-soybean-soybean planting setup. Some dominant and functional bacterial and fungal taxa in the rotation soils were observed. Network-based analysis suggests that bacterial phyla and while fungal phylum showed a positive correlation with other microbial communities. The phylogenetic investigation of communities by reconstruction of unobserved states (PICRUSt) result showed the presence of various metabolic pathways. Besides, the soybean-maize-maize significantly increased the proportion of some beneficial microorganisms in the soil and reduced the soil-borne animal and plant pathogens. These results warrant further investigation into the mechanisms driving responses of beneficial microbial communities and their capacity on improving soil fertility during legume cropping. The present study extends our understanding of how different crop rotations effect soil parameters, microbial diversity, and metabolic functions, and reveals the importance of crop rotation sequences. These findings could be used to guide decision-making from the microbial perspective for annual crop planting and soil management approaches.

摘要

合理种植可保持土壤高肥力和健康的生态系统。土壤微生物是土壤肥力的控制者。同时,土壤微生物群落也会对不同的种植模式做出反应。在中国东北主要粮食产区,不同种植顺序下生物和非生物因素受影响的机制尚不清楚。为了评估常规施肥条件下不同种植顺序对土壤性质、微生物群落和作物产量的影响,进行了六种植物种植系统试验,包括大豆单作、小麦-大豆轮作、小麦-玉米-大豆轮作、大豆-玉米-玉米轮作、玉米-大豆-大豆轮作和玉米单作。我们的结果表明,与单作系统相比,不同组合或顺序的大豆和玉米轮作可以增加土壤总有机碳和养分,并提高大豆和玉米产量,特别是采用大豆-玉米-玉米和玉米-大豆-大豆种植系统。16S rRNA和内转录间隔区(ITS)扩增子测序表明,不同种植系统对细菌和真菌群落有不同影响。与其他轮作种植系统相比,大豆单作的细菌和真菌群落多样性较低。在不同的种植顺序中,大豆-玉米-玉米种植模式下观察到的细菌种类较多,而玉米-大豆-大豆种植模式下观察到的真菌种类较多。在轮作土壤中观察到了一些优势和功能性细菌及真菌类群。基于网络的分析表明,细菌门 和 而真菌门 与其他微生物群落呈正相关。通过未观察状态重建对群落进行系统发育研究(PICRUSt)结果显示存在各种代谢途径。此外,大豆-玉米-玉米显著增加了土壤中一些有益微生物的比例,并减少了土传动植物病原体。这些结果值得进一步研究驱动有益微生物群落响应的机制及其在豆类种植过程中改善土壤肥力的能力。本研究扩展了我们对不同作物轮作如何影响土壤参数、微生物多样性和代谢功能的理解,并揭示了作物轮作顺序的重要性。这些发现可用于从微生物角度指导年度作物种植和土壤管理方法的决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72b8/10004276/ceea64199def/fmicb-14-1095688-g001.jpg

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