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通过增加clpB伴侣基因的拷贝数可提高鹰嘴豆根瘤菌的共生性能。

The Symbiotic Performance of Chickpea Rhizobia Can Be Improved by Additional Copies of the clpB Chaperone Gene.

作者信息

Paço Ana, Brígido Clarisse, Alexandre Ana, Mateos Pedro F, Oliveira Solange

机构信息

ICAAM-Instituto de Ciências Agrárias e Ambientais Mediterrânicas (Laboratório de Microbiologia do Solo), Universidade de Évora, Núcleo da Mitra, Ap. 94, 7002-554, Évora, Portugal.

IIFA-Instituto de Investigação e Formação Avançada, Universidade de Évora, Ap. 94, 7002-554, Évora, Portugal.

出版信息

PLoS One. 2016 Feb 4;11(2):e0148221. doi: 10.1371/journal.pone.0148221. eCollection 2016.

Abstract

The ClpB chaperone is known to be involved in bacterial stress response. Moreover, recent studies suggest that this protein has also a role in the chickpea-rhizobia symbiosis. In order to improve both stress tolerance and symbiotic performance of a chickpea microsymbiont, the Mesorhizobium mediterraneum UPM-Ca36T strain was genetically transformed with pPHU231 containing an extra-copy of the clpB gene. To investigate if the clpB-transformed strain displays an improved stress tolerance, bacterial growth was evaluated under heat and acid stress conditions. In addition, the effect of the extra-copies of the clpB gene in the symbiotic performance was evaluated using plant growth assays (hydroponic and pot trials). The clpB-transformed strain is more tolerant to heat shock than the strain transformed with pPHU231, supporting the involvement of ClpB in rhizobia heat shock tolerance. Both plant growth assays showed that ClpB has an important role in chickpea-rhizobia symbiosis. The nodulation kinetics analysis showed a higher rate of nodule appearance with the clpB-transformed strain. This strain also induced a greater number of nodules and, more notably, its symbiotic effectiveness increased 60% at pH5 and 83% at pH7, compared to the wild-type strain. Furthermore, a higher frequency of root hair curling was also observed in plants inoculated with the clpB-transformed strain, compared to the wild-type strain. The superior root hair curling induction, nodulation ability and symbiotic effectiveness of the clpB-transformed strain may be explained by an increased expression of symbiosis genes. Indeed, higher transcript levels of the nodulation genes nodA and nodC (3 folds) were detected in the clpB-transformed strain. The improvement of rhizobia by addition of extra-copies of the clpB gene may be a promising strategy to obtain strains with enhanced stress tolerance and symbiotic effectiveness, thus contributing to their success as crop inoculants, particularly under environmental stresses. This is the first report on the successful improvement of a rhizobium with a chaperone gene.

摘要

已知ClpB伴侣蛋白参与细菌应激反应。此外,最近的研究表明该蛋白在鹰嘴豆与根瘤菌的共生关系中也发挥作用。为了提高鹰嘴豆微共生体的胁迫耐受性和共生性能,用含有clpB基因额外拷贝的pPHU231对地中海中生根瘤菌UPM-Ca36T菌株进行了遗传转化。为了研究clpB转化菌株是否表现出更高的胁迫耐受性,在热胁迫和酸胁迫条件下评估了细菌生长情况。此外,使用植物生长试验(水培和盆栽试验)评估了clpB基因额外拷贝对共生性能的影响。与用pPHU231转化的菌株相比,clpB转化菌株对热休克更耐受,这支持了ClpB参与根瘤菌热休克耐受性的观点。两种植物生长试验均表明ClpB在鹰嘴豆与根瘤菌的共生关系中起重要作用。结瘤动力学分析表明,clpB转化菌株的结瘤出现率更高。与野生型菌株相比,该菌株还诱导形成了更多的根瘤,更值得注意的是,其共生效率在pH5时提高了约60%,在pH7时提高了83%。此外,与野生型菌株相比,在用clpB转化菌株接种的植物中还观察到更高频率的根毛卷曲。clpB转化菌株优异的根毛卷曲诱导能力、结瘤能力和共生效率可能是共生基因表达增加所致。事实上,在clpB转化菌株中检测到结瘤基因nodA和nodC的转录水平更高(约3倍)。通过添加clpB基因的额外拷贝来改良根瘤菌可能是一种有前景的策略,可获得具有增强胁迫耐受性和共生效率的菌株,从而有助于它们作为作物接种剂取得成功,特别是在环境胁迫条件下。这是关于用伴侣蛋白基因成功改良根瘤菌的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dc4/4741418/2e45caad56e2/pone.0148221.g001.jpg

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