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内生细菌:生物活性化合物的新来源。

Endophytic bacteria: a new source of bioactive compounds.

作者信息

Singh Monika, Kumar Ajay, Singh Ritu, Pandey Kapil Deo

机构信息

Centre of Advanced Study in Botany, Institute of Science, Banaras Hindu University, Varanasi, 221005 India.

出版信息

3 Biotech. 2017 Oct;7(5):315. doi: 10.1007/s13205-017-0942-z. Epub 2017 Sep 14.

Abstract

In recent years, bioactive compounds are in high demand in the pharmaceuticals and naturopathy, due to their health benefits to human and plants. Microorganisms synthesize these compounds and some enzymes either alone or in association with plants. Microbes residing inside the plant tissues, known as endophytes, also produce an array of these compounds. Endophytic actinomycetes act as a promising resource of biotechnologically valuable bioactive compounds and secondary metabolites. Endophytic sp. produced some novel antibiotics which are effective against multi-drug-resistant bacteria Antimicrobial agents produced by endophytes are eco-friendly, toxic to pathogens and do not harm the human. Endophytic inoculation of the plants modulates the synthesis of bioactive compounds with high pharmaceutical properties besides promoting growth of the plants. Hydrolases, the extracellular enzymes, produced by endophytic bacteria, help the plants to establish systemic resistance against pathogens invasion. Phytohormones produced by endophytes play an essential role in plant development and drought resistance management. The high diversity of endophytes and their adaptation to various environmental stresses seem to be an untapped source of new secondary metabolites. The present review summarizes the role of endophytic bacteria in synthesis and modulation of bioactive compounds.

摘要

近年来,生物活性化合物因其对人类和植物的健康益处,在制药和自然疗法领域需求旺盛。微生物单独或与植物联合合成这些化合物及一些酶。存在于植物组织内的微生物,即内生菌,也能产生一系列此类化合物。内生放线菌是具有生物技术价值的生物活性化合物和次生代谢产物的一个有前景的来源。内生菌产生了一些对多重耐药菌有效的新型抗生素。内生菌产生的抗菌剂对环境友好,对病原体有毒性且不伤害人类。对植物进行内生菌接种除了促进植物生长外,还能调节具有高药用特性的生物活性化合物的合成。内生细菌产生的胞外酶——水解酶,有助于植物建立对病原体入侵的系统抗性。内生菌产生的植物激素在植物发育和抗旱管理中起着至关重要的作用。内生菌的高度多样性及其对各种环境胁迫的适应性似乎是新次生代谢产物的一个未开发来源。本综述总结了内生细菌在生物活性化合物合成和调节中的作用。

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