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对葡萄园土壤分离株门多萨假单胞菌菌株S5.2的有机酸利用谱进行表型和基因组调查。

Phenotypic and genomic survey on organic acid utilization profile of Pseudomonas mendocina strain S5.2, a vineyard soil isolate.

作者信息

Chong Teik Min, Chen Jian-Woon, See-Too Wah-Seng, Yu Choo-Yee, Ang Geik-Yong, Lim Yan Lue, Yin Wai-Fong, Grandclément Catherine, Faure Denis, Dessaux Yves, Chan Kok-Gan

机构信息

Division of Genetics and Molecular Biology, Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia.

UM Omics Centre, University of Malaya, 50603, Kuala Lumpur, Malaysia.

出版信息

AMB Express. 2017 Dec;7(1):138. doi: 10.1186/s13568-017-0437-7. Epub 2017 Jun 26.

Abstract

Root exudates are chemical compounds that are released from living plant roots and provide significant energy, carbon, nitrogen and phosphorus sources for microbes inhabiting the rhizosphere. The exudates shape the microflora associated with the plant, as well as influences the plant health and productivity. Therefore, a better understanding of the trophic link that is established between the plant and the associated bacteria is necessary. In this study, a comprehensive survey on the utilization of grapevine and rootstock related organic acids were conducted on a vineyard soil isolate which is Pseudomonas mendocina strain S5.2. Phenotype microarray analysis has demonstrated that this strain can utilize several organic acids including lactic acid, succinic acid, malic acid, citric acid and fumaric acid as sole growth substrates. Complete genome analysis using single molecule real-time technology revealed that the genome consists of a 5,120,146 bp circular chromosome and a 252,328 bp megaplasmid. A series of genetic determinants associated with the carbon utilization signature of the strain were subsequently identified in the chromosome. Of note, the coexistence of genes encoding several iron-sulfur cluster independent isoenzymes in the genome indicated the importance of these enzymes in the events of iron deficiency. Synteny and comparative analysis have also unraveled the unique features of D-lactate dehydrogenase of strain S5.2 in the study. Collective information of this work has provided insights on the metabolic role of this strain in vineyard soil rhizosphere.

摘要

根系分泌物是从活的植物根系中释放出来的化合物,为栖息在根际的微生物提供了重要的能量、碳、氮和磷来源。这些分泌物塑造了与植物相关的微生物群落,并影响植物的健康和生产力。因此,有必要更好地理解植物与相关细菌之间建立的营养联系。在本研究中,对葡萄园土壤分离株门多萨假单胞菌菌株S5.2利用葡萄和砧木相关有机酸的情况进行了全面调查。表型微阵列分析表明,该菌株可以利用包括乳酸、琥珀酸、苹果酸、柠檬酸和富马酸在内的几种有机酸作为唯一生长底物。使用单分子实时技术进行的全基因组分析表明,该基因组由一条5,120,146 bp的环状染色体和一条252,328 bp的大质粒组成。随后在染色体中鉴定出了一系列与该菌株碳利用特征相关的遗传决定因素。值得注意的是,基因组中编码几种独立于铁硫簇的同工酶的基因共存,表明这些酶在缺铁情况下的重要性。共线性和比较分析也揭示了研究中菌株S5.2的D-乳酸脱氢酶的独特特征。这项工作的综合信息为该菌株在葡萄园土壤根际的代谢作用提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/772b/5484659/26329503d43c/13568_2017_437_Fig1_HTML.jpg

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