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Engineering Root Exudation of Lotus toward the Production of Two Novel Carbon Compounds Leads to the Selection of Distinct Microbial Populations in the Rhizosphere

机译:莲花对两种新型碳化合物生产的工程根系渗出导致根际中不同微生物种群的选择

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摘要

The culture of opine-producing transgenic Lotus plants induces the increase in the rhizosphere of bacterial communities that are able to utilize these molecules as sole carbon source. We used transgenic Lotus plants producing two opines, namely mannopine and nopaline, to characterize the microbial communities directly influenced by the modification of root exudation. We showed that opine-utilizers represent a large community in the rhizosphere of opine-producing transgenic Lotus. This community is composed of at least 12 different bacterial species, one third of which are able to utilize the opine mannopine and two thirds the opine nopaline. Opine utilizers are diverse, belonging to the Gram-positive and -negative bacteria. We described two novel mannopine-utilizing species, Rhizobium and Duganella spp., and five novel nopaline-utilizing species, Duganella, Afipia, Phyllobacterium, Arthrobacter, and Bosea spp. Although opine utilizers mostly belong to the α-Proteobacteria, Rhizobiaceae family, there is little overlap between the populations able to utilize each of the two opines produced by the plants. Noticeably, in the rhizosphere of transgenic Lotus, only the opine mannopine favors the growth of Agrobacterium tumefaciens, the bacterium from which opines have been characterized. The diversity of opine utilizers from the rhizosphere of Lotus plants is greater than that observed from any other environment. Therefore, transgenic plants with engineered exudation constitute an excellent tool to isolate and characterize specific microbial populations.
机译:产生阿片产生的转基因莲花植物的培养诱导细菌群落的根际增加,该细菌群落能够利用这些分子作为唯一碳源。我们使用了产生两种阿片(即甘露聚糖和胭脂碱)的转基因荷花植物来表征受根系分泌物修饰直接影响的微生物群落。我们表明,利用阿片类药物的使用者在产生阿片类转基因莲花的根际中代表着一个大社区。该群落由至少12种不同的细菌组成,其中三分之一能够利用阿片甘露聚糖,而三分之二则可以使用阿片胭脂碱。高山利用者多种多样,属于革兰氏阳性和阴性细菌。我们描述了两个新的利用mannopine的物种,根瘤菌和Duganella spp。,和五个新的利用胭脂碱的物种,duganella,Afipia,Phyllobacterium,节杆菌和Bosea spp。尽管鸦片利用者大部分属于α-变形杆菌科,根瘤菌科,但能够利用植物产生的两种鸦片中的每一种的种群之间几乎没有重叠。值得注意的是,在转基因莲花的根际中,只有阿片甘露醇有利于根癌农杆菌的生长,而根癌农杆菌已被表征为阿片细菌。来自荷花植物根际的鸦片利用者的多样性大于在任何其他环境中观察到的多样性。因此,具有工程渗出的转基因植物构成了分离和表征特定微生物种群的极佳工具。

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  • 来源
    《Microbial Ecology》 |2004年第1期|96-103|共8页
  • 作者单位

    Institut des Sciences du Végétal CNRS Gif sur Yvette F-91198Laboratoire de Sciences de la Terre Ecole Normale Supérieure Lyon F-69364Laboratoire de Sciences de la Terre Ecole Normale Supérieure 46 Allée d’Italie F-69364 Lyon cedex 07;

    Institut des Sciences du Végétal CNRS Gif sur Yvette F-91198;

    Laboratoire d’Ecologie Microbienne Université Lyon I-Claude Bernard Villeurbanne F-69622;

    Institut des Sciences du Végétal CNRS Gif sur Yvette F-91198;

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