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Effects of Hedysarum leguminous plants on soil bacterial communities in the Mu Us Desert, northwest China

机译:Hedysarum豆科植物对西北西北地区土壤细菌社区的影响

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This study assessed the influence of rhizocompartment types (i.e., root, rhizosphere soil, root‐zone soil, and intershrub bulk soil) on the diversity of soil microbial communities under desert leguminous plant shrubs. Moreover, the influence and variations of soil physicochemical factors in interactions among leguminous plants, soil, and microbes were investigated. Both 16S rRNA high‐throughput genome sequencing and conventional soil physicochemical index determination were used to characterize both the bacterial diversity and soil physicochemical properties in the rhizocompartments of two Hedysarum species (Hedysarum mongolicum and Hedysarum scoparium) in the Mu Us Desert of China. All nutrient indices (except total phosphorus and available phosphorus) in rhizosphere soil were uniformly higher than those in both root‐zone soil and intershrub bulk soil (p??.05). The bacterial community diversity in the root, undershrub soil (i.e., rhizosphere and root zone), and intershrub bulk soil also showed significant differences (p??.05). The bacterial community in the root is mainly composed of Proteobacteria, Actinobacteria, Bacteroidetes, Tenericutes, and Chloroflexi, among which bacteria of the Proteobacteria genus are dominant. Root endophyte and rhizosphere soil microbiomes were mainly influenced by soil nutrients, while bacterial communities in root‐zone soil and intershrub bulk soil were mainly influenced by soil pH and NH4+‐N. The rhizocompartment types of desert leguminous plants impose a significant influence on the diversity of soil microbial communities. According to these findings, nitrogen‐fixing rhizobia can co‐exist with nonsymbiotic endophytes in the roots of desert leguminous plants. Moreover, plants have a hierarchical filtering and enriching effect on beneficial microbes in soil via rhizocompartments. Soil physicochemical factors have a significant influence on both the structure and composition of microbial communities in various rhizocompartments, which is derived from the interactions among leguminous plants, soil, and microbes.
机译:该研究评估了rhizocompartment型(即根,根际土壤,根区土壤和煤层散装土壤)对沙漠豆科植物灌木下土壤微生物群落多样性的影响。此外,研究了豆类,土壤和微生物相互作用中土壤理化因素的影响和变化。 16S RRNA高通量基因组测序和常规土壤理化指数测定用于表征在中国穆美沙漠中的两种HED宫颈属(Hebysarum Mongolicum和Hebyasarum Scoparium)中的细菌多样性和土壤物理化学特性。根际土壤中的所有营养指数(总磷和可用磷)均匀高于根区土壤和煤层散装土壤(P?<β.05)。细菌群落中的根部,下坡土壤(即根际和根区),以及Intershrub散装土壤也显示出显着差异(P?<β.05)。根部中的细菌群落主要由植物菌,肌动菌,菌菌,菌,菌,氯葡萄球菌和氯克隆组成,其中植物基因的细菌是显性的。根内体和根际土壤微生物体主要受土壤营养素的影响,而根区土壤和煤层散装土壤中的细菌群落主要受土壤pH和NH4 + -N的影响。 Rhizocompartment类型的沙漠豆科植物对土壤微生物群落的多样性产生了重大影响。据这些发现,氮固定的根瘤菌可以在沙漠豆科植物的根部中与非愈合内体细胞共存。此外,植物通过RhizoComparments对土壤中有益微生物的分层过滤和富集作用。土壤理化细胞的因素对各种无根瘤菌中的微生物群落的结构和组成具有显着影响,这是源自豆科植物,土壤和微生物之间的相互作用。

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