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巨型 Jalapa 玉米 E1BL2 的基因组研究:可持续农业和真菌植物病原体高效管理的新型生物资源。

Genomic Insights into E1BL2 from Giant Jala Maize: A Novel Bioresource for Sustainable Agriculture and Efficient Management of Fungal Phytopathogens.

机构信息

Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Prolongación de Carpio y Plan de Ayala s/n, Col. Santo Tomás, Ciudad de México 11340, Mexico.

Laboratorio de Aprovechamiento Integral de Recursos Bióticos, Universidad Politécnica de Pachuca, Carretera Pachuca-Ciudad Sahagún Km. 20, Rancho Luna, Ex-Hacienda de Santa Bárbara Zempoala, Pachuca 43830, Mexico.

出版信息

Int J Mol Sci. 2024 Sep 1;25(17):9508. doi: 10.3390/ijms25179508.

Abstract

The relationships between plants and bacteria are essential in agroecosystems and bioinoculant development. The leaf endophytic E1BL2 was previously isolated from giant Jala maize, which is a native landrace of Nayarit, Mexico. Using different Mexican maize landraces, this work evaluated the strain's plant growth promotion and biocontrol against eight phytopathogenic fungi in vitro and greenhouse conditions. Also, a plant field trial was conducted on irrigated fields using the hybrid maize Supremo. The grain productivity in this assay increased compared with the control treatment. The genome analysis of E1BL2 showed putative genes involved in metabolite synthesis that facilitated its beneficial roles in plant health and environmental adaptation (, , , , ); siderophores (, ); and extracellular enzymes relevant for PGPB mechanisms (, ), protection against oxidative stress (, ), nitrogen metabolism (, , ), inductors of plant-induced systemic resistance (ISR) (, , , ), fungal biocontrol (, , , ), pest control (, , , , ), and the establishment of plant-bacteria symbiosis (, , , ). Our findings suggest that E1BL2 significantly promotes maize growth and offers biocontrol benefits, which highlights its potential as a bioinoculant.

摘要

植物与细菌之间的关系对于农业生态系统和生物接种剂的发展至关重要。此前,从墨西哥纳亚里特的原生地方品种 giant Jala 玉米中分离出了叶内 E1BL2。本研究使用不同的墨西哥玉米地方品种,在体外和温室条件下评估了该菌株对 8 种植物病原菌的促生和生防作用。此外,还在灌溉农田上使用杂交玉米 Supremo 进行了田间试验。与对照处理相比,该试验中的谷物产量增加。E1BL2 的基因组分析显示,其可能涉及代谢物合成的基因,这有助于其在植物健康和环境适应方面发挥有益作用(、、、、);铁载体(、);以及与 PGPB 机制相关的细胞外酶(、),对氧化应激的保护(、),氮代谢(、、),诱导植物诱导的系统性抗性(ISR)(、、、),真菌生防(、、、),害虫防治(、、、、),以及植物-细菌共生关系的建立(、、、)。我们的研究结果表明,E1BL2 显著促进了玉米的生长并提供了生防效益,这凸显了其作为生物接种剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20d6/11395412/031c8b87c2a5/ijms-25-09508-g001.jpg

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