绿洲幼田土壤细菌群落对不同施肥方式的响应

IF 1.4 4区 农林科学 Q2 AGRICULTURE, MULTIDISCIPLINARY
Rong Yang, Shiyang Chen
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引用次数: 2

摘要

农业系统施肥不仅要优化作物产量和土壤肥力,而且要保持土壤的生物多样性和功能。在年轻的绿洲农田中,关于土壤细菌对施肥策略的响应的知识非常有限。通过12年的田间试验,评价了有机肥、矿肥及其组合施用对西北典型绿洲农田土壤细菌多样性和组成的影响,并利用Illumina MiSeq平台进行了高通量DNA测序。结果表明,纯有机肥处理玉米产量最高,显著高于低矿物肥处理。施用有机肥显著提高了土壤养分含量,施用有机肥水平对土壤养分含量也有正向影响。土壤细菌多样性对有机肥施用比矿肥施用更敏感。PERMANOVA结果证实,细菌群落组成沿有机肥水平梯度变化,而在矿肥中没有观察到这一点。有机肥的施用促进了共生类群的丰度,而仅在矿物肥处理中,环境抗性类群丰富。本研究表明,施用有机肥对提高作物产量、提高土壤肥力和改善土壤细菌多样性具有重要作用,同时可优化土壤细菌群落组成,强调施用有机肥对土壤整体健康的贡献和重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of soil bacterial community to different fertilization patterns in young oasis farmland
Fertilization in farming systems should not only optimize crop yields and soil fertilizer but also maintain soil biodiversity and functions. In young oasis farmland, knowledge regarding soil bacteria respond to fertilization strategies is very limited. We performed a 12-year field experiment to evaluated the effects of organic manure, mineral fertilizer and their combination on a typical young oasis farmland in Northwest China, and quantified soil bacterial diversity and composition by using high-throughput DNA sequencing on the Illumina MiSeq platform. Our results showed that maize yield was highest in the pure organic manure treatment and significantly higher than that of the low mineral fertilizer treatment. Organic manure application significantly increased soil nutrient content, while the organic manure level also positively influenced soil nutrient content. Soil bacterial diversity was more sensitive to the application of organic manure than mineral fertilizer. The PERMANOVA results confirmed that bacterial community composition changed along an organic manure level gradient, which was not observed for mineral fertilizer. Organic manure application promoted the abundance of the copiotrophic group, while the environment resistant group were abundant in the only mineral fertilizer treatments. The present study indicated the critical role of organic manure application for increasing crop yield, soil fertility, and soil bacterial diversity while optimizing the community composition of soil bacteria, emphasizing the contribution and importance of organic manure application to overall soil health.
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来源期刊
Journal of Agricultural Meteorology
Journal of Agricultural Meteorology AGRICULTURE, MULTIDISCIPLINARYMETEOROLOGY-METEOROLOGY & ATMOSPHERIC SCIENCES
CiteScore
2.70
自引率
7.70%
发文量
18
期刊介绍: For over 70 years, the Journal of Agricultural Meteorology has published original papers and review articles on the science of physical and biological processes in natural and managed ecosystems. Published topics include, but are not limited to, weather disasters, local climate, micrometeorology, climate change, soil environment, plant phenology, plant response to environmental change, crop growth and yield prediction, instrumentation, and environmental control across a wide range of managed ecosystems, from open fields to greenhouses and plant factories.
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