一种新的合成微生物群落功能筛选方法——以防治鸽豌豆枯萎病为例。

IF 3.6 3区 生物学 Q1 PLANT SCIENCES
Plant Biology Pub Date : 2025-09-03 DOI:10.1111/plb.70092
R Tyagi, S Srivastava, T K Raut, S Kartha, S Sharma
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引用次数: 0

摘要

对抗植物病原体的传统方法具有生态学意义:化学肥料污染环境,而生物接种剂在田间条件下往往不一致。微生物组辅助根际工程旨在重建根际微生物组,以促进植物生长和/或减轻胁迫。本研究采用基于根际工程的策略,通过产生合成微生物群落(SMCs)来对抗Cajanus cajan镰刀菌(Fusarium udum)造成的胁迫。我们使用了从cajan根际分离的芽孢杆菌科本地菌株培养库,这些菌株对镰刀菌具有生物防治活性,并具有促进植物生长(PGP)的特性。产生了各种可能的相容菌株组合,然后采用一种新的迭代反褶积技术来建立当存在于其他菌株群落时表现出增强生物防治特性的菌株。采用评分法筛选SMCs的菌株,并进行了体外和植物试验。通过对构建的SMCs处理过的植株的生长特性和胁迫标记物的评估,选择出对木豌豆枯萎病具有最大生物防治潜力的SMCs。利用本地多性状植物生长促进菌株建立了一个强大的SMC,以可持续地缓解镰刀菌诱导的生物胁迫,并在宿主C. cajan中证明了有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel functional screening method for generation of a synthetic microbial community: Case study with control of Fusarium wilt in pigeonpea.

Conventional methods to combat phytopathogens have ecological implications: chemical fertilizers pollute the environment, while bioinoculants are often inconsistent under field conditions. Microbiome-assisted rhizosphere engineering aims to re-structure the rhizosphere microbiome to promote plant growth and/or mitigate stress. This study employs a strategy based on rhizosphere engineering to combat stress caused by Fusarium udum in Cajanus cajan, by generating synthetic microbial communities (SMCs). We used a culture bank of indigenous bacterial strains belonging to the family Bacillaceae, isolated from the rhizosphere of C. cajan with biocontrol activity against Fusarium, and plant growth-promoting (PGP) properties. Various possible combinations of compatible strains were generated, followed by a novel iterative deconvolution technique to establish strains exhibiting enhanced biocontrol traits, when present in a community of other strains. A scoring scheme aided selection of strains for the SMCs, which were tested using in vitro and in planta experiments. Estimating growth attributes and stress markers in plants treated with constituted SMCs helped to select an SMC with maximum biocontrol potential against Fusarium wilt of pigeonpea. A robust SMC was generated with indigenous multi-trait plant growth promoting bacterial strains for sustainable mitigation of Fusarium induced biotic stress with proven efficacy in the host, C. cajan.

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来源期刊
Plant Biology
Plant Biology 生物-植物科学
CiteScore
8.20
自引率
2.60%
发文量
109
审稿时长
3 months
期刊介绍: Plant Biology is an international journal of broad scope bringing together the different subdisciplines, such as physiology, molecular biology, cell biology, development, genetics, systematics, ecology, evolution, ecophysiology, plant-microbe interactions, and mycology. Plant Biology publishes original problem-oriented full-length research papers, short research papers, and review articles. Discussion of hot topics and provocative opinion articles are published under the heading Acute Views. From a multidisciplinary perspective, Plant Biology will provide a platform for publication, information and debate, encompassing all areas which fall within the scope of plant science.
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