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对环境磷酸盐浓度的转录反应

Transcriptional Responses of to Environmental Phosphate Concentration.

作者信息

Grillo-Puertas Mariana, Villegas Josefina M, Pankievicz Vânia C S, Tadra-Sfeir Michelle Z, Teles Mota Francisco J, Hebert Elvira M, Brusamarello-Santos Liziane, Pedraza Raul O, Pedrosa Fabio O, Rapisarda Viviana A, Souza Emanuel M

机构信息

Instituto de Química Biológica, "Dr. Bernabé Bloj", Facultad de Bioquímica, Química y Farmacia, Universidad Nacional de Tucumán (UNT) and Instituto Superior de Investigaciones Biológicas (INSIBIO), CONICET-UNT, San Miguel de Tucumán, Argentina.

Department of Biochemistry and Molecular Biology, Universidade Federal do Paraná, Curitiba, Brazil.

出版信息

Front Microbiol. 2021 Jun 10;12:666277. doi: 10.3389/fmicb.2021.666277. eCollection 2021.

Abstract

is a nitrogen-fixing endophytic bacterium associated with important cereal crops, which promotes plant growth, increasing their productivity. The understanding of the physiological responses of this bacterium to different concentrations of prevailing nutrients as phosphate (Pi) is scarce. In some bacteria, culture media Pi concentration modulates the levels of intracellular polyphosphate (polyP), modifying their cellular fitness. Here, global changes of SmR1 were evaluated in response to environmental Pi concentrations, based on differential intracellular polyP levels. Cells grown in high-Pi medium (50 mM) maintained high polyP levels in stationary phase, while those grown in sufficient Pi medium (5 mM) degraded it. Through a RNA-seq approach, comparison of transcriptional profiles of cultures revealed that 670 genes were differentially expressed between both Pi growth conditions, with 57% repressed and 43% induced in the high Pi condition. Molecular and physiological analyses revealed that aspects related to Pi metabolism, biosynthesis of flagella and chemotaxis, energy production, and polyhydroxybutyrate metabolism were induced in the high-Pi condition, while those involved in adhesion and stress response were repressed. The present study demonstrated that variations in environmental Pi concentration affect traits related to survival and other important physiological characteristics. Since environmental conditions can influence the effectiveness of the plant growth-promoting bacteria, enhancement of bacterial robustness to withstand different stressful situations is an interesting challenge. The obtained data could serve not only to understand the bacterial behavior in respect to changes in rhizospheric Pi gradients but also as a base to design strategies to improve different bacterial features focusing on biotechnological and/or agricultural purposes.

摘要

是一种与重要谷类作物相关的固氮内生细菌,可促进植物生长,提高其生产力。目前对于这种细菌对不同浓度的主要养分(如磷酸盐(Pi))的生理反应了解甚少。在一些细菌中,培养基中的Pi浓度会调节细胞内多聚磷酸盐(polyP)的水平,从而改变它们的细胞适应性。在此,基于细胞内不同的polyP水平,评估了SmR1对环境Pi浓度的全局变化。在高Pi培养基(50 mM)中生长的细胞在稳定期保持较高的polyP水平,而在充足Pi培养基(5 mM)中生长的细胞则会降解它。通过RNA测序方法,比较两种Pi生长条件下培养物的转录谱,发现670个基因在两种条件下差异表达,其中57%在高Pi条件下被抑制,43%被诱导。分子和生理分析表明,与Pi代谢、鞭毛生物合成和趋化性、能量产生以及聚羟基丁酸酯代谢相关的方面在高Pi条件下被诱导,而与黏附和应激反应相关的方面则被抑制。本研究表明,环境Pi浓度的变化会影响与生存相关的性状以及其他重要的生理特征。由于环境条件会影响植物促生细菌的有效性,增强细菌抵御不同应激情况的稳健性是一个有趣的挑战。所获得的数据不仅有助于了解细菌在根际Pi梯度变化方面的行为,还可为设计旨在改善不同细菌特性的策略提供基础,这些策略侧重于生物技术和/或农业目的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e52e/8222739/f53207e25dd8/fmicb-12-666277-g001.jpg

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