[荒漠过渡带植物土壤细菌群落结构与功能特征]。

Q2 Environmental Science
Xian-Yao Yang, Xue Wu, Cui-Ping Tian, Qian-Qian Yang, Xian-Tao Wang, Xuan Zhang, Zhou Zheng
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引用次数: 0

摘要

为探讨不同生境下荒漠植物与土壤微生态及环境的相互作用,以塔里木盆地北缘荒漠与绿洲过渡带典型植物柽柳、疏叶alhagi、沙茄为研究对象。采用高通量测序技术对两种生境下根际土壤细菌群落结构、多样性、功能差异及影响因素进行了研究。结果表明:①土壤细菌群落受环境和遗传因素的共同影响。②三种植物在过渡带生境中以变形杆菌门、拟杆菌门和放线菌门为优势菌门,在荒漠生境中以拟杆菌门、变形杆菌门和厚壁菌门绝对优势菌门。③相关性分析表明,土壤含水量、电导率和土壤微生物碳显著影响土壤微生物群落结构(P<0.05),过渡带土壤含水量显著高于荒漠生境,模糊了其他环境因子对微生物的影响,成为影响土壤微生物群落结构和功能的关键因素。④PICRUSt2功能预测表明,3种典型荒漠植物的土壤细菌群落包括6种主要功能和43种次要功能,其中代谢功能为主要功能,但不同植物的细菌群落和功能富集程度存在差异。研究结果有助于了解典型荒漠植物和生境差异对土壤微生物群落的影响,为后续荒漠生态管理和修复土壤微环境提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Structural and Functional Characteristics of Bacterial Communities in the Soil of Plants at the Desert-Transition Zone].

To explore the interactions between desert plants and soil microecology and the environment under different habitats, the typical plants of Tamarix ramosissimaAlhagi sparsifolia, and Salsola collina in the desert and oasis transitional zone on the northern edge of the Tarim Basin were selected as research subjects. High-throughput sequencing technology was used to investigate the structure, diversity, functional differences, and influencing factors of bacterial communities in the rhizosphere soil under the two habitats. The results follow: ① The soil bacterial community is jointly influenced by environmental and genetic factors. ② Proteobacteria, Bacteroidetes, and Actinobacteria are the dominant bacterial phyla in the transitional zone habitat for the three plants; in the desert habitat, Bacteroidetes, Proteobacteria, and Firmicutes are absolutely dominant. ③ Correlation analysis indicated that soil moisture content, electrical conductivity, and soil microbial carbon significantly affect the structure of the soil microbial community (P<0.05), with the soil moisture content in the transitional zone being significantly higher than that in the desert habitat, blurring the impact of other environmental factors on microorganisms and becoming a key factor affecting the structure and function of the soil microbial community. ④ PICRUSt2 functional prediction indicated that the soil bacterial communities of the three typical desert plants include 6 primary functions and 43 secondary functions, with metabolic functions being the main functions, but different plants show differences in bacterial community and functional enrichment. The results enhance understanding of the impact of typical desert plants and habitat differences on soil microbial communities and provide a reference for soil microenvironments in subsequent desert ecological management and restoration.

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来源期刊
环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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