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Plant-based culture media: Efficiently support culturing rhizobacteria and correctly mirror their in-situ diversity

机译:基于植物的培养基:有效支持根瘤菌的培养并正确反映其原位多样性

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摘要

Our previous publications and the data presented here provide evidences on the ability of plant-based culture media to optimize the cultivability of rhizobacteria and to support their recovery from plant-soil environments. Compared to the tested chemically-synthetic culture media (e.g. nutrient agar and N-deficient combined-carbon sources media), slurry homogenates, crude saps, juices and powders of cactus (Opuntia ficus-indica) and succulent plants (Aloe vera and Aloe arborescens) were rich enough to support growth of rhizobacteria. Representative isolates of Enterobacter spp., Klebsiella spp., Bacillus spp. and Azospirillum spp. exhibited good growth on agar plates of such plant-based culture media. Cell growth and biomass production in liquid batch cultures were comparable to those reported with the synthetic culture media. In addition, the tested plant-based culture media efficiently recovered populations of rhizobacteria associated to plant roots. Culturable populations of >106–108 cfu g−1 were recovered from the ecto- and endo-rhizospheres of tested host plants. More than 100 endophytic culture-dependent isolates were secured and subjected to morphophysiological identification. Factor and cluster analyses indicated the unique community structure, on species, genera, class and phyla levels, of the culturable population recovered with plant-based culture media, being distinct from that obtained with the chemically-synthetic culture media. Proteobacteria were the dominant (78.8%) on plant-based agar culture medium compared to only 31% on nutrient agar, while Firmicutes prevailed on nutrient agar (69%) compared to the plant-based agar culture media (18.2%). Bacteroidetes, represented by Chryseobacterium indologenes, was only reported (3%) among the culturable rhizobacteria community of the plant-based agar culture medium.
机译:我们以前的出版物和此处提供的数据提供了基于植物的培养基优化根瘤菌的可培养性并支持其从植物土壤环境中恢复的能力的证据。与经过测试的化学合成培养基(例如营养琼脂和氮缺乏的复合碳源培养基)相比,浆液匀浆,粗液,仙人掌汁和粉末(仙人掌)和肉质植物(芦荟和芦荟) )足够丰富,可以支持根瘤菌的生长。肠杆菌属,克雷伯菌属,芽孢杆菌属的代表性分离株。和固氮螺菌属。在这种基于植物的培养基的琼脂平板上显示出良好的生长。液体分批培养中的细胞生长和生物量生产与合成培养基中报道的相当。另外,经测试的基于植物的培养基有效地回收了与植物根相关的根际细菌的种群。从受试寄主植物的根际和根际内回收到> 10 6 –10 8 cfu g -1 的可培养种群。固定了100多个内生培养物依赖性菌株,并进行了形态生理鉴定。因子和聚类分析表明,在以植物为基础的培养基中回收的可培养种群在种类,属,类别和门上的独特群落结构,与化学合成培养基不同。与植物性琼脂培养基(18.2%)相比,蛋白质琼脂菌在植物性琼脂培养基中占主导地位(78.8%),而营养琼脂中仅为31%,而菌丝菌在营养琼脂中占优势(69%)。在以植物为基础的琼脂培养基的可培养根瘤菌群落中,仅报道了(3%)以吲哚氏杆菌为代表的拟杆菌。

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