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吡咯里西啶生物碱对微生物的防御特性。

Defensive properties of pyrrolizidine alkaloids against microorganisms.

作者信息

Joosten Lotte, van Veen Johannes A

出版信息

Phytochem Rev. 2011 Mar;10(1):127-136. doi: 10.1007/s11101-010-9204-y. Epub 2010 Nov 23.

Abstract

The understanding of the selection factors that drive chemical diversification of secondary metabolites of constitutive defence systems in plants, such as pyrrolizidine alkaloids (PAs), is still incomplete. Historically, plants always have been confronted with microorganisms. Long before herbivores existed on this planet, plants had to cope with microbial pathogens. Therefore, plant pathogenic microorganisms may have played an important role in the early evolution of the secondary metabolite diversity. In this review, we discuss the impact that plant-produced PAs have on plant-associated microorganisms. The objective of the review is to present the current knowledge on PAs with respect to anti-microbial activities, adaptation and detoxification by microorganisms, pathogenic fungi, root protection and PA induction. Many in vitro experiments showed effects of PAs on microorganisms. These results point to the potential of microorganisms to be important for the evolution of PAs. However, only a few in vivo studies have been published and support the results of the in vitro studies. In conclusion, the topics pointed out in this review need further exploration by carrying out ecological experiments and field studies.

摘要

对于驱动植物组成型防御系统次生代谢产物化学多样化的选择因素,例如吡咯里西啶生物碱(PAs),人们的理解仍不完整。从历史上看,植物一直面临着微生物的挑战。早在地球上出现食草动物之前,植物就必须应对微生物病原体。因此,植物病原微生物可能在次生代谢产物多样性的早期进化中发挥了重要作用。在这篇综述中,我们讨论了植物产生的PAs对与植物相关的微生物的影响。这篇综述的目的是介绍关于PAs在抗菌活性、微生物的适应性和解毒、致病真菌、根系保护以及PA诱导方面的现有知识。许多体外实验显示了PAs对微生物的影响。这些结果表明微生物对于PAs的进化可能具有重要意义。然而,仅有少数体内研究发表,且支持体外研究的结果。总之,本综述指出的主题需要通过开展生态实验和田间研究进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e57e/3047671/cc61cb36319b/11101_2010_9204_Fig1_HTML.jpg

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