油茶叶球上的附生细菌和内生细菌:探讨地区和栽培品种的影响。

IF 2.3 Q2 ECOLOGY BMC ecology and evolution Pub Date : 2024-05-13 DOI:10.1186/s12862-024-02240-3
Xiaolin Chen, Lili Li, Yuanhao He
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摘要

附生细菌和内生细菌对植物的健康生长起着重要作用。植物种类和生长环境都会影响细菌种群的多样性,但究竟是前者还是后者影响更大,目前尚无定论。为了探索油茶附生和内生微生物群落,本研究通过Illumina高通量测序技术对中国湖南三个地区的三个代表性油茶栽培品种进行了评估。结果表明,叶片内生微生物群落的多样性和物种丰富度明显高于附生微生物群落。同一栽培品种在不同地区生长时,附生微生物和内生微生物的多样性和物种丰富度是复杂的。生长在攸县的油茶栽培品种叶片附生微生物群落的多样性最高,但丰度最低;而生长在长沙的栽培品种叶片内生微生物群落的多样性和物种丰富度最高。通过对油茶叶片附生和内生微生物群落的分析,认为优势菌门主要包括变形菌门、放线菌门和固着菌门。附生微生物群落和内生微生物群落的物种和相对丰度在属一级存在极大差异。NMDS 图和 PERMANOVA 分析表明,附生微生物群落的物种丰富度和多样性受地区影响较大。叶片内生微生物群落结构则受地区和栽培品种的影响,但栽培品种的影响更为显著。分子生态网络分析表明,附生微生物群落的共生相互作用更为复杂。
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Epiphytic and endophytic bacteria on Camellia oleifera phyllosphere: exploring region and cultivar effect.

The epiphytic and endophytic bacteria play an important role in the healthy growth of plants. Both plant species and growth environmental influence the bacterial population diversity, yet it is inconclusive whether it is the former or the latter that has a greater impact. To explore the communities of the epiphytic and endophytic microbes in Camellia oleifera, this study assessed three representative C. oleifera cultivars from three areas in Hunan, China by Illumina high-throughput sequencing. The results showed that the diversity and species richness of endophytic microbial community in leaves were significantly higher than those of microbial community in the epiphytic. The diversity and species richness of epiphytic and endophytic microbes are complex when the same cultivar was grown in different areas. The C. oleifera cultivars grown in Youxian had the highest diversity of epiphytic microbial community, but the lowest abundance, while the cultivars grown in Changsha had the highest diversity and species richness of endophytic microbes in leaves. It was concluded that the dominant phylum mainly included Proteobacteria, Actinobacteriota and Firmicutes through the analysis of the epiphytic and endophytic microbial communities of C. oleifera. The species and relative abundances of epiphytic and endophytic microbial community were extremely different at the genus level. The analysis of NMDS map and PERMANOVA shows that the species richness and diversity of microbial communities in epiphytes are greatly influenced by region. However, the community structure of endophytic microorganisms in leaves is influenced by region and cultivated varieties, but the influence of cultivars is more significant. Molecular ecological network analysis showed that the symbiotic interaction of epiphytic microbial community was more complex.

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