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玉米与ZAE94联合体在不同硝酸盐剂量下的双重RNA测序揭示了植物-植物促生细菌-环境关系的新见解。

Dual RNA-seq of maize and ZAE94 association, in different doses of nitrate, reveals novel insights into Plant-PGPB-environment relationship.

作者信息

Rosman Aline Cardozo, Urquiaga Maria Clara de Oliveira, Thiebaut Flávia, Ballesteros Helkin Giovani Forero, de Oliveira Eduardo Alves Gamosa, Hemerly Adriana Silva

机构信息

Laboratório de Biologia Molecular de Plantas, Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

出版信息

Front Plant Sci. 2024 Mar 13;15:1346523. doi: 10.3389/fpls.2024.1346523. eCollection 2024.

Abstract

The interactions between plants, beneficial bacteria and their environment are profoundly shaped by various environmental factors, including light, temperature, water availability, and soil quality. Despite efforts to elucidate the molecular mechanisms involved in the association between plants and beneficial bacteria, like Plant Growth-Promoting Bacteria (PGPB), with many studies focusing on the transcriptional reprogramming in the plant, there is no report on the modulation of genetic controls from both plant and associated bacteria standpoints, in response to environment. The main goal of this study was to investigate the relationship between plant-bacteria-environment signaling, using as a model maize plants inoculated with ZAE94 and cultivated with different doses of N (0.3 and 3 mM). For this purpose, we performed rRNA-depleted RNA-seq to determine the global gene expression of both maize roots and associated ZAE94. Our results revealed a differential modulation of maize nitrogen metabolism, phytohormone and cell wall responses when associated with ZAE94 at different N concentrations. In parallel, a modulation of the bacterial metabolism could be observed, by regulating genes involved in transport, secretion system, cell mobility, oxidoreductases, and chemotaxis, when bacteria were associated with maize roots and cultivated at different doses of N. The molecular and phenotypic data of maize plantlets suggested that different doses of N fertilization differentially regulated the beneficial effects of bacterial inoculation, as higher doses (3 mM) favored shoot elongation and lower doses (0.3 mM) favored increase in plant biomass. Our results provide a valuable integrated overview of differentially expressed genes in both maize and associated ZAE94 in response to different N availability, revealing new insights into pathways involved in grass-PGPB associations.

摘要

植物、有益细菌及其环境之间的相互作用受到各种环境因素的深刻影响,包括光照、温度、水分可用性和土壤质量。尽管人们努力阐明植物与有益细菌(如植物促生细菌,PGPB)之间关联所涉及的分子机制,许多研究聚焦于植物中的转录重编程,但从植物和相关细菌的角度针对环境响应的遗传控制调节尚无报道。本研究的主要目标是,以接种ZAE94并施以不同剂量氮(0.3和3 mM)种植的玉米植株为模型,研究植物 - 细菌 - 环境信号之间的关系。为此,我们进行了去除rRNA的RNA测序,以确定玉米根和相关ZAE94的整体基因表达。我们的结果显示,在不同氮浓度下与ZAE94相关联时,玉米的氮代谢、植物激素和细胞壁反应存在差异调节。同时,当细菌与玉米根相关联并在不同剂量氮下培养时,通过调节参与转运、分泌系统、细胞移动性、氧化还原酶和趋化性的基因,可以观察到细菌代谢的调节。玉米幼苗的分子和表型数据表明,不同剂量的氮肥对细菌接种的有益效果有不同调节作用,较高剂量(3 mM)有利于地上部伸长,较低剂量(0.3 mM)有利于植物生物量增加。我们的结果提供了一个有价值的综合概述,展示了玉米和相关ZAE94中响应不同氮可用性的差异表达基因,揭示了对禾本科植物与PGPB关联所涉及途径的新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c61b/10965572/e5ddb494c7ee/fpls-15-1346523-g001.jpg

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