生物
微生物群
植物免疫
生物技术
功能(生物学)
生态学
生态系统
非生物成分
计算生物学
进化生物学
生物信息学
遗传学
拟南芥
基因
突变体
作者
Dor Russ,Connor R. Fitzpatrick,Paulo José Pereira Lima Teixeira,Jeffery L. Dangl
出处
期刊:Cell
[Elsevier]
日期:2023-10-01
卷期号:186 (21): 4496-4513
被引量:17
标识
DOI:10.1016/j.cell.2023.08.035
摘要
Plant-associated microbiota can extend plant immune system function, improve nutrient acquisition and availability, and alleviate abiotic stresses. Thus, naturally beneficial microbial therapeutics are enticing tools to improve plant productivity. The basic definition of plant microbiota across species and ecosystems, combined with the development of reductionist experimental models and the manipulation of plant phenotypes with microbes, has fueled interest in its translation to agriculture. However, the great majority of microbes exhibiting plant-productivity traits in the lab and greenhouse fail in the field. Therapeutic microbes must reach détente, the establishment of uneasy homeostasis, with the plant immune system, invade heterogeneous pre-established plant-associated communities, and persist in a new and potentially remodeled community. Environmental conditions can alter community structure and thus impact the engraftment of therapeutic microbes. We survey recent breakthroughs, challenges, and opportunities in translating beneficial microbes from the lab to the field.
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