首页> 外文期刊>Microbiological Research >DegP protease is essential for tolerance to salt stress in the plant growth-promoting bacterium Gluconacetobacter diazotrophicus PAL5
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DegP protease is essential for tolerance to salt stress in the plant growth-promoting bacterium Gluconacetobacter diazotrophicus PAL5

机译:DEGP蛋白酶对于植物生长促进细菌葡萄糖术Dizotrophicus Pal5的耐盐胁迫是必不可少的

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摘要

The use of plant growth-promoting bacteria represents an alternative to the massive use of mineral fertilizers in agriculture. However, some abiotic stresses commonly found in the environment, like salinity, can affect the efficiency of this approach. Here, we investigated the key mechanisms involved in the response of the plant growth-promoting bacterium Gluconacetobacter diazotrophicus to salt stress by using morphological and cell viability analyses, comparative proteomics, and reverse genetics. Our results revealed that the bacteria produce filamentous cells in response to salt at 100 mM and 150 mM NaCl. However, such a response was not observed at higher concentrations, where cell viability was severely affected. Proteomic analysis showed that salt stress modulates proteins involved in several pathways, including iron uptake, outer membrane efflux, osmotic adjustment, cell division and elongation, and protein transport and quality control. Proteomic data also revealed the repression of several extracytoplasmic proteins, especially those located at periplasm and outer membrane. The role of such pathways in the tolerance to salt stress was analyzed by the use of mutant defectives for Atbdr (iron uptake), AmtlK and AotsA (compatible solutes synthesis), and AdegP (quality control of nascent extracytoplasmic proteins). AdegP presented the highest sensitivity to salt stress, Atbdr, andAmtlK also showed increased sensitivity, but AotsA was not affected. This is the first demonstration that DegP protein, a protease with minor chaperone activity, is essential for tolerance to salt stress in G. diazotrophicus. Our data contribute to a better understanding of the molecular bases that control the bacterial response/tolerance to salt stress, shedding light on quality control of nascent extracytoplasmic proteins.
机译:None

著录项

  • 来源
    《Microbiological Research》 |2021年第1期|共11页
  • 作者单位

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Sao Paulo Dept Bioquim Inst Quim Ave Prof Lineu Prestes 748 Sao Paulo SP Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

    Univ Estadual Norte Fluminense Darcy Ribeiro UENF Setor Biol Integrat Lab Biotecnol Ave Alberto Lamego 2000 Rio De Janeiro Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

    Abiotic stress; Protein quality control; Proteome; Mutagenesis;

    机译:非生物胁迫;蛋白质质量控制;蛋白质组;诱变;

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