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将根瘤菌与豆科植物共生固氮基因的可逆突变应用于研究根瘤菌的社会欺骗行为。

Applying reversible mutations of nodulation and nitrogen-fixation genes to study social cheating in Rhizobium etli-legume interaction.

机构信息

Department of Microbiology, Nanjing Agricultural University, Nanjing, China.

出版信息

PLoS One. 2013 Jul 26;8(7):e70138. doi: 10.1371/journal.pone.0070138. Print 2013.

Abstract

Mutualisms are common in nature, though these symbioses can be quite permeable to cheaters in situations where one individual parasitizes the other by discontinuing cooperation yet still exploits the benefits of the partnership. In the Rhizobium-legume system, there are two separate contexts, namely nodulation and nitrogen fixation processes, by which resident Rhizobium individuals can benefit by cheating. Here, we constructed reversible and irreversible mutations in key nodulation and nitrogen-fixation pathways of Rhizobium etli and compared their interaction with plant hosts Phaseolus vulgaris to that of wild type. We show that R. etli reversible mutants deficient in nodulation factor production are capable of intra-specific cheating, wherein mutants exploit other Rhizobium individuals capable of producing these factors. Similarly, we show that R. etli mutants are also capable of cheating inter-specifically, colonizing the host legume yet contributing nothing to the partnership in terms of nitrogen fixation. Our findings indicate that cheating is possible in both of these frameworks, seemingly without damaging the stability of the mutualism itself. These results may potentially help explain observations suggesting that legume plants are commonly infected by multiple bacterial lineages during the nodulation process.

摘要

共生关系在自然界中很常见,但在某些情况下,这些共生关系可能对欺骗者非常宽容,因为一方通过停止合作但仍利用伙伴关系的好处来寄生另一方。在根瘤菌-豆科植物系统中,有两个独立的环境,即结瘤和固氮过程,其中居住的根瘤菌个体可以通过欺骗来获益。在这里,我们构建了根瘤菌 etli 中关键的结瘤和固氮途径的可逆和不可逆突变体,并将其与植物宿主菜豆的相互作用与野生型进行了比较。我们表明,缺乏结瘤因子产生能力的根瘤菌 etli 可逆突变体能够进行种内欺骗,其中突变体利用其他能够产生这些因子的根瘤菌个体。同样,我们表明,根瘤菌 etli 突变体也能够进行种间欺骗,定植宿主豆科植物,但在固氮方面对伙伴关系没有任何贡献。我们的研究结果表明,在这两种框架下都有可能发生欺骗,而似乎不会破坏共生关系的稳定性。这些结果可能有助于解释一些观察结果,即豆科植物在结瘤过程中通常会被多种细菌谱系感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fa9/3724788/7fac715600df/pone.0070138.g001.jpg

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