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高产生、低投入柳枝稷家系的根际微生物群落结构。

Rhizosphere microbial community structure in high-producing, low-input switchgrass families.

机构信息

USDA-ARS US Dairy Forage Research Center, Madison, WI, United States of America.

出版信息

PLoS One. 2024 Oct 3;19(10):e0308753. doi: 10.1371/journal.pone.0308753. eCollection 2024.

Abstract

Switchgrass (Panicum virgatum L.) is a native, low-input North American perennial crop primarily grown for bioenergy, livestock forage, and industrial fiber. To achieve no-input switchgrass production that meets biomass needs, several switchgrass genotypes have been identified that have a low or negative response to nitrogen fertilizer, i.e., the biomass accumulation with added nitrogen is less than or equal to that when grown without nitrogen. In order to improve the viability of low-input switchgrass production, a more detailed understanding of the biogeochemical mechanisms active in these select genotypes is needed. 16S and ITS amplicon sequencing and qPCR of key functional genes were applied to switchgrass rhizospheres to elucidate microbial community structure in high-producing, no-input switchgrass families. Rhizosphere microbial community structure differed strongly between sites, and nitrogen responsiveness.

摘要

柳枝稷(Panicum virgatum L.)是一种原产于北美的低投入多年生作物,主要用于生物能源、牲畜饲料和工业纤维。为了实现无需投入即可生产满足生物质需求的柳枝稷,已经确定了几种对氮肥反应较低或为负的柳枝稷基因型,即添加氮时的生物量积累小于或等于不添加氮时的生物量积累。为了提高低投入柳枝稷生产的可行性,需要更详细地了解这些选择的基因型中活跃的生物地球化学机制。应用 16S 和 ITS 扩增子测序和关键功能基因 qPCR 对柳枝稷根际进行分析,以阐明高产、无需投入的柳枝稷家系中的微生物群落结构。根际微生物群落结构在不同地点和氮响应方面存在显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d44/11449334/3071b49308ec/pone.0308753.g001.jpg

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