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利用植物内生细菌促进植物生长及生物技术应用:综述

Harnessing Bacterial Endophytes for Promotion of Plant Growth and Biotechnological Applications: An Overview.

作者信息

Eid Ahmed M, Fouda Amr, Abdel-Rahman Mohamed Ali, Salem Salem S, Elsaied Albaraa, Oelmüller Ralf, Hijri Mohamed, Bhowmik Arnab, Elkelish Amr, Hassan Saad El-Din

机构信息

Department of Botany and Microbiology, Faculty of Science, Al-Azhar University, Nasr City, Cairo 11884, Egypt.

Department of Plant Physiology, Matthias Schleiden Institute of Genetics, Bioinformatics and Molecular Botany, Friedrich-Schiller-University, 07743 Jena, Germany.

出版信息

Plants (Basel). 2021 May 7;10(5):935. doi: 10.3390/plants10050935.

Abstract

Endophytic bacteria colonize plants and live inside them for part of or throughout their life without causing any harm or disease to their hosts. The symbiotic relationship improves the physiology, fitness, and metabolite profile of the plants, while the plants provide food and shelter for the bacteria. The bacteria-induced alterations of the plants offer many possibilities for biotechnological, medicinal, and agricultural applications. The endophytes promote plant growth and fitness through the production of phytohormones or biofertilizers, or by alleviating abiotic and biotic stress tolerance. Strengthening of the plant immune system and suppression of disease are associated with the production of novel antibiotics, secondary metabolites, siderophores, and fertilizers such as nitrogenous or other industrially interesting chemical compounds. Endophytic bacteria can be used for phytoremediation of environmental pollutants or the control of fungal diseases by the production of lytic enzymes such as chitinases and cellulases, and their huge host range allows a broad spectrum of applications to agriculturally and pharmaceutically interesting plant species. More recently, endophytic bacteria have also been used to produce nanoparticles for medical and industrial applications. This review highlights the biotechnological possibilities for bacterial endophyte applications and proposes future goals for their application.

摘要

内生细菌定殖于植物体内,并在植物体内部分或终生生存,而不会对其宿主造成任何伤害或疾病。这种共生关系改善了植物的生理机能、健康状况和代谢物谱,同时植物为细菌提供食物和庇护所。细菌诱导的植物变化为生物技术、医学和农业应用提供了许多可能性。内生菌通过产生植物激素或生物肥料,或通过减轻非生物和生物胁迫耐受性来促进植物生长和健康。植物免疫系统的增强和疾病的抑制与新型抗生素、次生代谢物、铁载体以及含氮肥料或其他具有工业价值的化合物等肥料的产生有关。内生细菌可用于环境污染物的植物修复或通过产生几丁质酶和纤维素酶等裂解酶来控制真菌病害,其广泛的宿主范围使得在农业和药学上有价值的植物物种有广泛的应用。最近,内生细菌也被用于生产用于医学和工业应用的纳米颗粒。本综述强调了细菌内生菌应用的生物技术可能性,并提出了其应用的未来目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b0f/8151188/fbca521c39ea/plants-10-00935-g001.jpg

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