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间作对土壤微生物群落结构、活性与养分利用效率之间耦合关系的影响。

Impact of intercropping on the coupling between soil microbial community structure, activity, and nutrient-use efficiencies.

作者信息

Lian Tengxiang, Mu Yinghui, Jin Jian, Ma Qibin, Cheng Yanbo, Cai Zhandong, Nian Hai

机构信息

The State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural University, Guangzhou, China.

The Key Laboratory of Plant Molecular Breeding of Guangdong Province, College of Agriculture, South China Agricultural University, Guangzhou, China.

出版信息

PeerJ. 2019 Feb 8;7:e6412. doi: 10.7717/peerj.6412. eCollection 2019.

Abstract

Sugarcane-soybean intercropping has been widely used to control disease and improve nutrition in the field. However, the response of the soil microbial community diversity and structure to intercropping is not well understood. Since microbial diversity corresponds to soil quality and plant health, a pot experiment was conducted with sugarcane intercropped with soybean. Rhizosphere soil was collected 40 days after sowing, and MiSeq sequencing was utilized to analyze the soil microbial community diversity and composition. Soil columns were used to assess the influence of intercropping on soil microbial activity (soil respiration and carbon-use efficiency: nitrogen-use efficiency ratio). PICRUSt and FUNGuild analysis were conducted to predict microbial functional profiling. Our results showed that intercropping decreased pH by approximately 8.9% and enhanced the soil organic carbon, dissolved organic carbon, and available nitrogen (N) by 5.5%, 13.4%, and 10.0%, respectively. These changes in physicochemical properties corresponded to increased microbial diversity and shifts in soil microbial communities. Microbial community correlated significantly ( < 0.05) with soil respiration rates and nutrient use efficiency. Furthermore, intercropping influenced microbial functions, such as carbon fixation pathways in prokaryotes, citrate cycle (TCA cycle) of bacteria and wood saprotrophs of fungi. These overrepresented functions might accelerate nutrient conversion and control phytopathogens in soil.

摘要

甘蔗与大豆间作已在田间广泛用于控制病害和改善养分状况。然而,土壤微生物群落多样性和结构对间作的响应尚不清楚。由于微生物多样性与土壤质量和植物健康相关,因此进行了一项甘蔗与大豆间作的盆栽试验。播种40天后采集根际土壤,并利用MiSeq测序分析土壤微生物群落多样性和组成。使用土柱评估间作对土壤微生物活性(土壤呼吸和碳利用效率:氮利用效率比)的影响。进行PICRUSt和FUNGuild分析以预测微生物功能概况。我们的结果表明,间作使pH值降低了约8.9%,并使土壤有机碳、溶解有机碳和有效氮(N)分别增加了5.5%、13.4%和10.0%。这些理化性质的变化与微生物多样性增加和土壤微生物群落的变化相对应。微生物群落与土壤呼吸速率和养分利用效率显著相关(<0.05)。此外,间作影响微生物功能,如原核生物中的碳固定途径、细菌的柠檬酸循环(TCA循环)和真菌的木材腐生菌。这些过度表达的功能可能会加速土壤中的养分转化并控制植物病原体。

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