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拟南芥蜡突变体表皮细菌群落的特异性。

Distinct phyllosphere bacterial communities on Arabidopsis wax mutant leaves.

机构信息

University of Würzburg, Department of Botany II, Julius-von-Sachs-Institute for Biological Sciences, Würzburg, Germany.

出版信息

PLoS One. 2013 Nov 5;8(11):e78613. doi: 10.1371/journal.pone.0078613. eCollection 2013.

Abstract

The phyllosphere of plants is inhabited by diverse microorganisms, however, the factors shaping their community composition are not fully elucidated. The plant cuticle represents the initial contact surface between microorganisms and the plant. We thus aimed to investigate whether mutations in the cuticular wax biosynthesis would affect the diversity of the phyllosphere microbiota. A set of four Arabidopsis thaliana eceriferum mutants (cer1, cer6, cer9, cer16) and their respective wild type (Landsberg erecta) were subjected to an outdoor growth period and analysed towards this purpose. The chemical distinctness of the mutant wax phenotypes was confirmed by gas chromatographic measurements. Next generation amplicon pyrosequencing of the bacterial communities showed distinct community patterns. This observation was supported by denaturing gradient gel electrophoresis experiments. Microbial community analyses revealed bacterial phylotypes that were ubiquitously present on all plant lines (termed "core" community) while others were positively or negatively affected by the wax mutant phenotype (termed "plant line-specific" community). We conclude from this study that plant cuticular wax composition can affect the community composition of phyllosphere bacteria.

摘要

植物的叶际环境栖息着多种多样的微生物,但影响其群落组成的因素尚未完全阐明。植物角质层是微生物与植物最初接触的表面。因此,我们旨在研究角质层生物合成突变是否会影响叶际微生物群落的多样性。一组四个拟南芥eceriferum 突变体(cer1、cer6、cer9、cer16)及其各自的野生型(Landsberg erecta)被置于户外生长阶段,并进行了相应的分析。通过气相色谱测量证实了突变体蜡表型的化学差异。对细菌群落的下一代扩增子焦磷酸测序显示出明显不同的群落模式。这一观察结果得到了变性梯度凝胶电泳实验的支持。微生物群落分析揭示了在所有植物系上普遍存在的细菌类群(称为“核心”群落),而其他类群则受到蜡突变体表型的正或负面影响(称为“植物系特异性”群落)。我们从这项研究中得出结论,植物角质层组成可以影响叶际细菌的群落组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6c8/3818481/c565add64325/pone.0078613.g001.jpg

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