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养分循环功能基因多样性反映了鸡粪堆肥过程中磷的转化。

Nutrient-cycling functional gene diversity mirrors phosphorus transformation during chicken manure composting.

机构信息

National Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, PR China.

Key Laboratory of Aquatic Botany and Watershed Ecology Wuhan Botanical Garden, Chinese Academy of Sciences, Wuhan 430070, PR China; Danjiangkou Wetland Ecosystem Field Scientific Observation and Research Station, Chinese Academy of Sciences & Hubei Province, Wuhan 430070, PR China.

出版信息

Bioresour Technol. 2023 Oct;386:129504. doi: 10.1016/j.biortech.2023.129504. Epub 2023 Jul 17.

Abstract

Elucidating ecological mechanism underlying phosphorus transformation mediated by phosphate-solubilizing bacteria (PSB) during manure composting is an important but rarely investigated subject. The research objective is to disentangle ecological functions of the inoculation of PSB Pseudomonas sp. WWJ-22 during chicken manure composting based on gene quantification and amplicon sequencing. There are large dynamic changes in phosphorus fractions, gene abundances, and bacterial community structure. The PSB addition notably increased available phosphorus from 0.29-0.89 g kg to 0.49-1.39 g kg and significantly affected phosphorus fractionation. The PSB inoculation significantly affected composition of nutrient-cycling functional genes (NCFGs), and notably influenced bacterial community composition and function. Compost bacteria showed significant phylogenetic signals in response to phosphorus fractions, and stochastic processes dominated bacterial community assembly. Results emphasized that PSB addition increased functional redundancy, phylogenetic conservatism, and stochasticity-dominated assembly of bacterial community. Overall, findings highlight NCFG diversity can be a bio-indicator to mirror phosphorus transformation.

摘要

阐明解磷菌(PSB)在堆肥过程中介导磷转化的生态机制是一个重要但很少被研究的课题。本研究的目的是基于基因定量和扩增子测序,解析接种 PSB 假单胞菌 WWJ-22 对鸡粪堆肥过程中的生态功能。磷形态、基因丰度和细菌群落结构均发生了较大的动态变化。PSB 的添加显著提高了有效磷(从 0.29-0.89 g kg 增加到 0.49-1.39 g kg),并显著影响了磷的分馏。PSB 的接种显著影响了养分循环功能基因(NCFGs)的组成,显著影响了细菌群落的组成和功能。堆肥细菌对磷形态表现出显著的系统发育信号,而随机过程主导着细菌群落的组装。结果强调,PSB 的添加增加了细菌群落功能冗余、系统发育保守性和随机主导的组装。总的来说,这些发现突出了 NCFG 多样性可以作为反映磷转化的生物指标。

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