协调生物合成与摄取后修饰,以了解植物天然产物的生态功能

IF 10.6 1区 化学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jiancai Li , Ian T. Baldwin , Dapeng Li
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引用次数: 0

摘要

覆盖范围:到2022年最近,我们对产生各种植物源性天然产物的生物合成途径的理解取得了巨大进展,这远远超过了我们对这些化合物对植物的功能的理解:它们如何影响植物在自然界中的达尔文适应度。我们对它们的机制,即这些化合物所针对的生命过程的理解,也同样没有得到很好的解决。许多植物特化代谢物(PSM)在被食草动物摄入后被进一步修饰,这些食后修饰通常对PSM功能至关重要。本文综述了17-羟基香叶樟醇二萜苷在生态模式植物烟叶中的生物合成及其作用机制,并对其他双组分pms中已知的食后修饰进行了综述。我们提出,将植物天然产物生物合成途径与昆虫同一植物组织的摄食后代谢(“跨体体”)进行平行比较,将有助于识别这些有效化学防御的分子靶点,有助于阐明昆虫肠道中摄食后代谢物的相互作用,并预测由psm激发的对杀虫剂抗性的快速进化。我们强调在整个代谢组水平上进行这些平行研究的价值,以便包括天然产物生物合成及其摄取后处理中的多种相互作用途径。我们介绍了将强大的正向遗传方法与交叉体学相结合的草代谢物QTL (fmQTL)分析的概念,并建议在自然生境中采用昆虫引导的高通量正向和反向遗传方法,将促进我们对PSM生物合成和功能的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Harmonizing biosynthesis with post-ingestive modifications to understand the ecological functions of plant natural products

Harmonizing biosynthesis with post-ingestive modifications to understand the ecological functions of plant natural products

Covering: up to 2022

The recent dramatic advances in our understanding of the biosynthetic pathways that produce diverse bouquets of plant-derived natural products have far surpassed our understanding of the function of these compounds for plants: how they influence a plant's Darwinian fitness in nature. Our understanding of their mechanisms, the life-processes targeted by these compounds, is similarly poorly resolved. Many plant specialized metabolites (PSMs) are further modified after ingestion by herbivores, and these post-ingestive modifications are frequently essential for PSM function. Here we summarize the biosynthesis and functional mechanisms of 17-hydroxygeranyllinalool diterpene glycosides in the ecological model plant Nicotiana attenuata, and summarize the post-ingestive modifications known from other two-component PSMs. We propose that parallel comparisons of plant natural product biosynthetic pathways and insect post-ingestive metabolism of the same plant tissues (“frassomics”) will facilitate the often-elusive identification of the molecular targets of these effective chemical defenses, contribute to elucidations of post-ingestive metabolite interactions in insect guts, and predicate the rapid evolutions of resistance against insecticides inspired by PSMs. We highlight the value of conducting these parallel investigations at the level of the entire metabolome so as to include the multiple interacting pathways in both natural product biosynthesis as well as their post-ingestive processing. We introduce the concept of frass metabolite QTL (fmQTL) analysis that integrates powerful forward genetic approaches with frassomics, and suggest that insect-guided high-throughput forward- and reverse-genetics approaches in natural habitats will advance our understanding of PSM biosynthesis and function.

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来源期刊
Natural Product Reports
Natural Product Reports 化学-生化与分子生物学
CiteScore
21.20
自引率
3.40%
发文量
127
审稿时长
1.7 months
期刊介绍: Natural Product Reports (NPR) serves as a pivotal critical review journal propelling advancements in all facets of natural products research, encompassing isolation, structural and stereochemical determination, biosynthesis, biological activity, and synthesis. With a broad scope, NPR extends its influence into the wider bioinorganic, bioorganic, and chemical biology communities. Covering areas such as enzymology, nucleic acids, genetics, chemical ecology, carbohydrates, primary and secondary metabolism, and analytical techniques, the journal provides insightful articles focusing on key developments shaping the field, rather than offering exhaustive overviews of all results. NPR encourages authors to infuse their perspectives on developments, trends, and future directions, fostering a dynamic exchange of ideas within the natural products research community.
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