Intercropping between persimmon and apple enriched the leaf endophytes and rhizosphere communities against apple root rot.

IF 4.8 2区 生物学 Q1 PLANT SCIENCES
Haichun Cun, Pengbo He, Ayesha Ahmed, Pengfei He, Yixin Wu, Yingjie Jiang, Hui Zhang, Guowen Tang, Baohua Kong, Sahar A Youssef, Shahzad Munir, Yueqiu He
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引用次数: 0

Abstract

Background: Root rot disease has seriously restricted the development of the apple industry Worldwide. After being infected by pathogens, the microbial communities of rhizosphere soil and leaves may change. We found that apple and persimmon intercropping can reduce the occurrence of apple root rot achieving a relative control efficacy of 80.3% following persimmon intercropping.

Results: Here, we investigate the effect of intercropping with persimmon tree on rhizosphere microbiome and leaf endophytes. For this, we tested the rhizosphere soil and leaves of healthy and infected apple trees during intercropping. The soil and leaves of healthy and infected root rot apple trees, persimmon trees, and intercropping were collected (during sampling time, apple trees were 5 years old, and persimmon trees were 3 years old). The high-throughput sequencing was performed on the Illumina Miseq platform to analyze the leaf endophytic bacterial and soil microbial communities. We further revealed that infection by root rot pathogens severely impacts the synergistic effects between endophytes and the composition of rhizosphere microbial communities. The intercropping between apple and persimmon trees can modulate apple leaf endophytes and rhizosphere microbial communities. Importantly, the relative abundance of Pantoea and Serratia increased significantly in the leaves of apple trees affected by root rot. We argue that bacteria such as Pantoea and Serratia are conducive to the occurrence of root rot. Notably, Bacillus and Trichoderma were significantly reduced in the rhizosphere of apples with root rot trees; however, persimmon trees and apple trees can maintain the relative abundance of beneficial species or improve the abundance compared with healthy apple trees.

Conclusions: The overall study concludes that intercropping apples and persimmons maintains the beneficial microbial balance and plant growth and helps to prevent dysbiosis caused by pathogens. Based on this shift in microbiome balance, a management strategy for apple root rot is discussed.

柿子与苹果间作对苹果根腐病的防治作用增强了叶片内生菌和根际群落。
背景:苹果根腐病严重制约了世界苹果产业的发展。病原菌侵染后,根际土壤和叶片的微生物群落发生变化。结果表明,苹果与柿子间作可减少苹果根腐病的发生,柿子间作后的相对防治效果为80.3%。结果:研究了柿树间作对根际微生物群和叶片内生菌的影响。为此,我们对间作期间健康苹果树和病苹果树的根际土壤和叶片进行了试验。采集健康、病根腐病苹果树、柿子树和间作的土壤和叶片(采样期间,苹果树为5年树龄,柿子为3年树龄)。在Illumina Miseq平台上进行高通量测序,分析叶片内生细菌和土壤微生物群落。结果表明,病原菌侵染严重影响了内生菌与根际微生物群落组成之间的协同作用。苹果与柿子间作可调节苹果叶片内生菌和根际微生物群落。重要的是,受根腐病影响的苹果叶片中Pantoea和Serratia的相对丰度显著增加。我们认为Pantoea和Serratia等细菌有利于根腐病的发生。值得注意的是,根腐病苹果树根际中芽孢杆菌和木霉的数量显著减少;而柿子树和苹果树能保持有益物种的相对丰度,或比健康苹果树的丰度有所提高。结论:综合研究认为,苹果与柿子间作维持了有益菌群平衡和植物生长,有助于预防病原菌引起的生态失调。在此基础上,对苹果根腐病的防治策略进行了探讨。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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