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对三株假单胞菌菌株进行的比较基因组学、蛋白质组学和胞外蛋白质组学分析揭示了关于土壤细菌磷清除能力的新见解。

Comparative genomic, proteomic and exoproteomic analyses of three Pseudomonas strains reveals novel insights into the phosphorus scavenging capabilities of soil bacteria.

作者信息

Lidbury Ian D E A, Murphy Andrew R J, Scanlan David J, Bending Gary D, Jones Alexandra M E, Moore Jonathan D, Goodall Andrew, Hammond John P, Wellington Elizabeth M H

机构信息

School of Life Sciences, University of Warwick, Gibbet Hill Road, Coventry, West Midlands, CV4 7AL, UK.

The Genome Analysis Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

出版信息

Environ Microbiol. 2016 Oct;18(10):3535-3549. doi: 10.1111/1462-2920.13390. Epub 2016 Jul 7.

Abstract

Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth. One such mechanism is the microbial-driven solubilization and remineralization of complex forms of phosphorus (P). It is known that bacteria secrete various phosphatases in response to low P conditions. However, our understanding of their global proteomic response to P stress is limited. Here, exoproteomic analysis of Pseudomonas putida BIRD-1 (BIRD-1), Pseudomonas fluorescens SBW25 and Pseudomonas stutzeri DSM4166 was performed in unison with whole-cell proteomic analysis of BIRD-1 grown under phosphate (Pi) replete and Pi deplete conditions. Comparative exoproteomics revealed marked heterogeneity in the exoproteomes of each Pseudomonas strain in response to Pi depletion. In addition to well-characterized members of the PHO regulon such as alkaline phosphatases, several proteins, previously not associated with the response to Pi depletion, were also identified. These included putative nucleases, phosphotriesterases, putative phosphonate transporters and outer membrane proteins. Moreover, in BIRD-1, mutagenesis of the master regulator, phoBR, led us to confirm the addition of several novel PHO-dependent proteins. Our data expands knowledge of the Pseudomonas PHO regulon, including species that are frequently used as bioinoculants, opening up the potential for more efficient and complete use of soil complexed P.

摘要

栖息于农作物根际的细菌对作物生长具有有益作用。其中一种机制是微生物驱动的复杂形式磷(P)的溶解和再矿化。已知细菌在低磷条件下会分泌各种磷酸酶。然而,我们对它们对磷胁迫的整体蛋白质组学反应的了解有限。在此,对恶臭假单胞菌BIRD-1(BIRD-1)、荧光假单胞菌SBW25和施氏假单胞菌DSM4166进行了胞外蛋白质组分析,并同时对在磷酸盐(Pi)充足和Pi缺乏条件下生长的BIRD-1进行了全细胞蛋白质组分析。比较胞外蛋白质组学揭示了每种假单胞菌菌株的胞外蛋白质组在响应Pi缺乏时存在显著异质性。除了PHO调节子中特征明确的成员如碱性磷酸酶外,还鉴定出了几种以前与Pi缺乏反应无关的蛋白质。这些包括假定的核酸酶、磷酸三酯酶、假定的膦酸盐转运蛋白和外膜蛋白。此外,在BIRD-1中,主调节因子phoBR的诱变使我们确认了几种新的PHO依赖性蛋白质。我们的数据扩展了对假单胞菌PHO调节子的认识,包括经常用作生物接种剂的物种,为更有效和完全利用土壤中络合的磷开辟了潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ff2/5082522/e1881607975a/EMI-18-3535-g001.jpg

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