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Seasonal Variation in the Rhizosphere and Non-Rhizosphere Microbial Community Structures and Functions of

机译:根际和非根际微生物群落结构和功能的季节性变化

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摘要

Camellia yuhsienensis Hu, endemic to China, is a predominant oilseed crop, due to its high yield and pathogen resistance. Past studies have focused on the aboveground parts of C. yuhsienensis, whereas the microbial community of the rhizosphere has not been reported yet. This study is the first time to explore the influence of seasonal variation on the microbial community in the rhizosphere of C. yuhsienensis using high-throughput sequencing. The results showed that the dominant bacteria in the rhizosphere of C. yuhsienensis were Chloroflexi, Proteobacteria, Acidobacteria, Actinobacteria, and Planctomycetes, and the dominant fungi were Ascomycota, Basidiomycota, and Mucoromycota. Seasonal variation has significant effects on the abundance of the bacterial and fungal groups in the rhizosphere. A significant increase in bacterial abundance and diversity in the rhizosphere reflected the root activity of C. yuhsienensis in winter. Over the entire year, there were weak correlations between microorganisms and soil physiochemical properties in the rhizosphere. In this study, we found that the bacterial biomarkers in the rhizosphere were chemoorganotrophic Gram-negative bacteria that grow under aerobic conditions, and fungal biomarkers, such as Trichoderma, Mortierella, and Lecanicillium, exhibited protection against pathogens in the rhizosphere. In the rhizosphere of C. yuhsienensis, the dominant functions of the bacteria included nitrogen metabolism, oxidative phosphorylation, glycine, serine and threonine metabolism, glutathione metabolism, and sulfur metabolism. The dominant fungal functional groups were endophytes and ectomycorrhizal fungi of a symbiotroph trophic type. In conclusion, seasonal variation had a remarkable influence on the microbial communities and functions, which were also significantly different in the rhizosphere and non-rhizosphere of C. yuhsienensis. The rhizosphere of C. yuhsienensis provides suitable conditions with good air permeability that allows beneficial bacteria and fungi to dominate the soil microbial community, which can improve the growth and pathogen resistance of C. yuhsienensis.
机译:山茶花yuhsienensis Hu,其对中国的特有,是一种主要的油籽作物,由于其高产率和病原体抵抗力。过去的研究专注于C. yuhsienensis的地上部分,而无根际的微生物群落尚未报告。本研究首次利用高通量测序探讨了C. yuhsienensis yuhsienensis中的微生物群落对微生物群落的影响。结果表明,C. yuhsienensis的根际的显性细菌是氯昔上,植物聚糖,抗酸杆菌,肌动菌和平分菌,并且优势真菌是ascoycota,碱霉菌和粘膜霉菌。季节性变异对根际细菌和真菌基团的丰富具有显着影响。根际细菌丰度和多样性的显着增加反映了冬季C. yuhsienensis的根源。在全年中,无根际微生物与土壤生理化学性质之间存在薄弱的相关性。在本研究中,我们发现根际的细菌生物标志物是化学因素革兰阴性细菌,在有氧病症下生长,并且真菌生物标志物,如Trichoderma,Mortierella和LeCanicillium,表现出无菌岩层的保护。在C. yuhsienensis的根际,细菌的主要功能包括氮代谢,氧化磷酸化,甘氨酸,丝氨酸和苏氨酸代谢,谷胱甘肽代谢和硫代谢。优势真菌官能团是一种Symbofroph营养类型的内皮细胞和突出菌根真菌。总之,季节性变异对微生物群落和功能具有显着影响,这些功能在C. yuhsienensis的根际和非根晶岩中也显着不同。 C. Yuhsienensis的根际提供了合适的条件,透气性良好,允许有益的细菌和真菌来统治土壤微生物群落,这可以提高C. yuhsienensis的生长和病原体抗性。

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