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植物表型性状最终塑造其微生物群:一项同质园试验。

Plant Phenotypic Traits Eventually Shape Its Microbiota: A Common Garden Test.

作者信息

Li Yunshi, Wu Xiukun, Chen Tuo, Wang Wanfu, Liu Guangxiu, Zhang Wei, Li Shiweng, Wang Minghao, Zhao Changming, Zhou Huaizhe, Zhang Gaosen

机构信息

Key Laboratory of Desert and Desertification, Northwest Institute of Eco-Environment and Resources (NIEER), Chinese Academy of Sciences (CAS), Lanzhou, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2018 Nov 6;9:2479. doi: 10.3389/fmicb.2018.02479. eCollection 2018.

Abstract

Plant genotype drives the development of plant phenotypes and the assembly of plant microbiota. The potential influence of the plant phenotypic characters on its microbiota is not well characterized and the co-occurrence interrelations for specific microbial taxa and plant phenotypic characters are poorly understood. We established a common garden experiment, which quantifies prokaryotic and fungal communities in the phyllosphere and rhizosphere of six spruce ( spp.) tree species, through Illumina amplicon sequencing. We tested for relationships between bacterial/archaeal and fungal communities and for the phenotypic characters of their plant hosts. Host phenotypic characters including leaf length, leaf water content, leaf water storage capacity, leaf dry mass per area, leaf nitrogen content, leaf phosphorous content, leaf potassium content, leaf δC values, stomatal conductance, net photosynthetic rate, intercellular carbon dioxide concentration, and transpiration rate were significantly correlated with the diversity and composition of the bacterial/archaeal and fungal communities. These correlations between plant microbiota and suites of host plant phenotypic characters suggest that plant genotype shape its microbiota by driving the development of plant phenotypes. This will advance our understanding of plant-microbe associations and the drivers of variation in plant and ecosystem function.

摘要

植物基因型驱动植物表型的发育以及植物微生物群的组装。植物表型特征对其微生物群的潜在影响尚未得到充分表征,特定微生物类群与植物表型特征之间的共现相互关系也知之甚少。我们开展了一项共同园试验,通过Illumina扩增子测序对六种云杉树种叶际和根际中的原核生物和真菌群落进行定量分析。我们测试了细菌/古菌和真菌群落之间的关系以及它们植物宿主的表型特征。宿主表型特征包括叶长、叶含水量、叶储水能力、单位面积叶干质量、叶氮含量、叶磷含量、叶钾含量、叶δC值、气孔导度、净光合速率、细胞间二氧化碳浓度和蒸腾速率,这些特征与细菌/古菌和真菌群落的多样性及组成显著相关。植物微生物群与宿主植物表型特征组之间的这些相关性表明,植物基因型通过驱动植物表型的发育来塑造其微生物群。这将增进我们对植物 - 微生物关联以及植物和生态系统功能变异驱动因素的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc9/6232875/c52273a531ef/fmicb-09-02479-g001.jpg

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