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不同程度干旱胁迫下抗旱甘蔗品种根际细菌群落的适应性

Adaptation of rhizosphere bacterial communities of drought-resistant sugarcane varieties under different degrees of drought stress.

作者信息

Dao Jicao, Xing Yuanjun, Chen Chunyi, Chen Mianhe, Wang Ziting

机构信息

Guangxi Key Laboratory of Sugarcane Biology , Nanning, Guangxi, China.

State Key Laboratory for Conservation & Utilization of Subtropical Agro-bioresources, Guangxi University , Nanning, Guangxi, China.

出版信息

Microbiol Spectr. 2023 Sep 12;11(5):e0118423. doi: 10.1128/spectrum.01184-23.

Abstract

Sugarcane is highly sensitive to changes in moisture, and increased drought severely restricts its growth and productivity. Recent studies have shown that plant growth-promoting microorganisms are essential to reduce the adverse effects of environmental stresses, especially drought. However, our knowledge about the dynamics of rhizosphere microbial community structure in sugarcane under varying degrees of drought stress is limited. We analyzed the effects of different degrees of drought stress on the rhizosphere microbial communities of Zhongzhe 1(ZZ1) and Zhongzhe 6(ZZ6) with differences in drought resistance, by combining soil enzyme activity, nutrient content, and physiological and morphological characteristics of sugarcane roots. The results showed that rhizosphere bacterial community began to change at a field capacity of 50%, enriching the sugarcane rhizosphere with drought-resistant bacteria. The core strains of ZZ1 and ZZ6 rhizosphere enrichment were mainly , , and . However, compared to ZZ1, the changes in rhizosphere bacterial abundance in ZZ6 were primarily associated with the abundance of as drought levels increased. and , enriched in the rhizosphere of ZZ6 under drought, were positively correlated with root tip number and total root length (TRL), increasing the distribution area of roots and, thus, improving water and nutrient uptake by the roots thereby enhancing the resistance of sugarcane to drought stress. This research enhances our understanding of the composition of the rhizosphere microbial community in sugarcane under different levels of drought stress and its interaction with the roots, thereby providing valuable insights for enhancing drought resistance in sugarcane. IMPORTANCE Drought stress is expected to further increase in intensity, frequency, and duration, causing substantial losses in sugarcane yields. Here, we exposed sugarcane to varying degrees of drought treatment during growth and quantified the eventual composition of the resulting sugarcane rhizosphere bacterial community groups. We found that sugarcane rhizosphere under mild drought began to recruit specific bacterial communities to resist drought stress and used the interactions of root tip number, total root length, and drought-resistant strains to improve sugarcane survival under drought. This research provides a theoretical basis for the rhizosphere microbiome to help sugarcane improve its resistance under different levels of drought stress.

摘要

甘蔗对水分变化高度敏感,干旱加剧会严重限制其生长和生产力。最近的研究表明,促进植物生长的微生物对于减轻环境胁迫尤其是干旱的不利影响至关重要。然而,我们对不同程度干旱胁迫下甘蔗根际微生物群落结构动态的了解有限。我们结合土壤酶活性、养分含量以及甘蔗根系的生理和形态特征,分析了不同程度干旱胁迫对具有抗旱性差异的中蔗1号(ZZ1)和中蔗6号(ZZ6)根际微生物群落的影响。结果表明,根际细菌群落在田间持水量为50%时开始发生变化,耐旱细菌在甘蔗根际富集。ZZ1和ZZ6根际富集的核心菌株主要是 、 和 。然而,与ZZ1相比,随着干旱程度增加,ZZ6根际细菌丰度的变化主要与 的丰度有关。干旱条件下在ZZ6根际富集的 和 与根尖数和总根长(TRL)呈正相关,增加了根系的分布面积,从而提高了根系对水分和养分的吸收,进而增强了甘蔗对干旱胁迫的抗性。本研究增进了我们对不同干旱胁迫水平下甘蔗根际微生物群落组成及其与根系相互作用的理解,从而为提高甘蔗抗旱性提供了有价值的见解。重要性 预计干旱胁迫的强度、频率和持续时间将进一步增加,导致甘蔗产量大幅损失。在此,我们在甘蔗生长期间使其遭受不同程度的干旱处理,并对由此产生的甘蔗根际细菌群落组的最终组成进行了量化。我们发现,轻度干旱下的甘蔗根际开始招募特定细菌群落以抵抗干旱胁迫,并利用根尖数、总根长和耐旱菌株的相互作用来提高甘蔗在干旱条件下的存活率。本研究为根际微生物组帮助甘蔗在不同干旱胁迫水平下提高抗性提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3a/10580969/269ea1a7c826/spectrum.01184-23.f001.jpg

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