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中国北方八种常见落叶果树的根际微环境受微生物塑造

Rhizosphere Microenvironments of Eight Common Deciduous Fruit Trees Were Shaped by Microbes in Northern China.

作者信息

Si Peng, Shao Wei, Yu Huili, Yang Xiaojing, Gao Dengtao, Qiao Xiansheng, Wang Zhiqiang, Wu Guoliang

机构信息

Laboratory of Cultivation Physiology, Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, China.

College of Forestry, Henan Agricultural University, Zhengzhou, China.

出版信息

Front Microbiol. 2018 Dec 18;9:3147. doi: 10.3389/fmicb.2018.03147. eCollection 2018.

Abstract

The rhizosphere microenvironment is the site of nutrient circulation and microbial community formation, and thus is an ongoing topic of research. Although research on this topic is extensive, studies into the rhizosphere microenvironment of fruit trees remain rare. To elucidate the mechanisms driving the fruit tree rhizosphere microenvironment, we assessed soil physicochemical properties, enzyme activities, the community-level physiological profile (CLPP) and microbial diversity in rhizospheric soils of eight common deciduous fruit trees in northern China. We found that the available minerals, pH, enzyme activities, microbial utilization of six types of carbon (C) substrates, and microbial diversity in the rhizosphere varied among tree species. Redundancy analysis (RDA) showed that rhizosphere microenvironmental parameters (ammonia nitrogen content, soil pH and invertase activity) were closely related to the soil microbial community. Further analysis revealed that the soil microbial utilization of six C sources, nitrate nitrogen content, and invertase activity were negatively correlated with species and ; however, these groups were positively correlated with pH. The ammonia nitrogen content was positively correlated with C source utilization and negatively correlated with , and . Interestingly, invertase was closely linked to the microbial community, especially fungal diversity, and was positively correlated with plant-beneficial microbes such as , and , but negatively correlated with pathogenic microbes such as , and . Hence, rhizosphere soil physicochemical properties, enzyme activities and microbial community were significantly affected by tree species. Additionally, a variety of environmental factors were closely related to the microbial community in the rhizospheric soils of eight species of deciduous fruit trees.

摘要

根际微环境是养分循环和微生物群落形成的场所,因此一直是研究的热点。尽管关于这一主题的研究广泛,但对果树根际微环境的研究仍然很少。为了阐明驱动果树根际微环境的机制,我们评估了中国北方八种常见落叶果树根际土壤的理化性质、酶活性、群落水平生理剖面(CLPP)和微生物多样性。我们发现,根际中有效矿物质、pH值、酶活性、六种碳(C)底物的微生物利用情况以及微生物多样性因树种而异。冗余分析(RDA)表明,根际微环境参数(氨氮含量、土壤pH值和转化酶活性)与土壤微生物群落密切相关。进一步分析表明,六种碳源的土壤微生物利用情况、硝态氮含量和转化酶活性与[具体物种1]和[具体物种2]呈负相关;然而,这些组与pH值呈正相关。氨氮含量与碳源利用呈正相关,与[具体物种3]和[具体物种4]呈负相关。有趣的是,转化酶与微生物群落密切相关,尤其是真菌多样性,并且与有益植物微生物如[具体有益微生物1]、[具体有益微生物2]和[具体有益微生物3]呈正相关,但与致病微生物如[具体致病微生物1]、[具体致病微生物2]呈负相关。因此,根际土壤理化性质、酶活性和微生物群落受到树种的显著影响。此外,多种环境因素与八种落叶果树根际土壤中的微生物群落密切相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfdf/6305578/c5594abb648a/fmicb-09-03147-g0001.jpg

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