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首页> 外文期刊>Bioscience, Biotechnology, and Biochemistry >Pantothenate auxotrophy of Methylobacterium spp. isolated from living plants
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Pantothenate auxotrophy of Methylobacterium spp. isolated from living plants

机译:脾脱甲基杆菌SPP的植物营养性。 与生物植物隔离

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摘要

A number of pink-pigmented facultative methylotrophs (PPFMs) belonging to Methylobacterium spp. isolated from living plant samples were found to require B vitamins for their growth in minimal medium, and most B vitamin-auxotrophic PPFMs required pantothenate (vitamin B-5). Further investigation of pantothenate auxotrophy using the representative strain Methylobacterium sp. OR01 demonstrated that this strain cannot synthesize beta-alanine, one of the precursors of pantothenate. beta-alanine and several precursors of pantothenate restored the growth of Methylobacterium sp. OR01 in minimal medium. Furthermore, this strain could colonize leaves of Arabidopsis thaliana cultivated in medium without pantothenate or its precursors. Pantothenate, beta-alanine and several precursors were detected in the suspension of A. thaliana leaves. These results suggest that pantothenate-auxotrophic PPFMs can symbiotically colonize the surface of plant leaves by acquiring beta-alanine and other precursors, in addition to pantothenate. Finally, the fitness advantage of B vitamin auxotrophy of PPFMs in the phyllosphere environment is discussed.
机译:许多属于甲基杆菌的粉红色着色的致命性甲基(PPFMS)。发现从生物植物样品中孤立,需要B维生素在最小培养基中生长,并且大多数B维生素 - 营养营养PPFMS需要泛酸(维生素B-5)。使用代表性株甲基杆菌SP进一步研究泛烯醇植物营养营养。 OR01证明这种菌株不能合成β-丙氨酸,泛酸的前体之一。 β-丙氨酸和几种泛酸盐酸盐恢复了甲基杆菌的生长。 OR01在最小培养基中。此外,这种菌株可以在没有泛酸或其前体的情况下在培养基中培养的拟南芥叶片殖民。在A.型叶片的悬浮液中检测到泛皂酸酯,β-丙氨酸和几个前体。这些结果表明,除了泛氢化酸盐之外,泛育植物 - 营养营养PPFM可以通过获取β-丙氨酸和其他前体来融合植物叶片。最后,讨论了PPFMS在文学环境中PPFMS的B维生素氛性的健康优势。

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