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首页> 外文期刊>Saudi Journal of Biological Sciences >Proteomics‐based identification of orchid-associated bacteria colonizing the Epipactis albensis, E. helleborine and E. purpurata (Orchidaceae, Neottieae)
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Proteomics‐based identification of orchid-associated bacteria colonizing the Epipactis albensis, E. helleborine and E. purpurata (Orchidaceae, Neottieae)

机译:基于蛋白质组学的植物相关细菌鉴定骨膜糖尿病,E. Helleborine和E.Purpurata(Orchidaceae,Neostieae)

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Using proteomics-based identification by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS), we conducted the first analysis of the composition of endophytic bacteria isolated from different parts of selected Epipactis species, i.e. the buds, the inflorescences and the central part of the shoots, as well as the rhizomes. We identified aerobic and anaerobic bacteria, including such taxa as Bacillus spp., Clostridium spp., Pseudomonas spp. and Stenotrophomonas spp., which may be considered as promoting plant growth. Because most of the indicated bacteria genera belong to spore-producing taxa (spores allow bacterial symbionts to survive adverse conditions), we suggest that these bacteria species contribute to the adaptation of orchids to the environment. We found clear differences in the microbiome between investigated closely related taxa, i.e., Epipactis albensis, E. helleborine, E. purpurata and E. purpurata f. chlorophylla . Some of the analysed orchid species, i.e. E. albensis and E. purpurata co-occur in habitats, and their bacterial microbiomes differ from each other.
机译:通过基于蛋白质组学的基于基质辅助激光解吸/电离飞行时间质谱法(MALDI-TOF MS),我们进行了从不同部分的选择突发物种中分离的内生细菌组成的第一次分析,即芽,花序和枝条的中心部分,以及根茎。我们鉴定了有氧和厌氧菌细菌,包括如芽孢杆菌SPP。,Clostridium SPP,Pseudomonas SPP。和Stenotrophomonas SPP。,它可以被认为是促进植物生长。由于大多数指出的细菌属属于孢子生产的分类群(孢子允许细菌共生以存活不利条件),所以我们建议这些细菌物种有助于兰花对环境的适应。我们发现在研究密切相关的分类群之间的微生物组,即Epipactis albensis,E. Helleborine,E.Purpurata和E.Purpurata F之间的微生物组差异。叶绿素。一些分析的兰花种类,即E. albensis和E. purpurata在栖息地中发生,并且它们的细菌微生物彼此不同。

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