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代谢组学的最新突破有望揭示介导植物群落组成、特征演化和谱系多样化的隐秘化学特征。

Recent breakthroughs in metabolomics promise to reveal the cryptic chemical traits that mediate plant community composition, character evolution and lineage diversification.

机构信息

Smithsonian Tropical Research Institute, Apartado 0843-03092, Balboa, Ancón, Republic of Panama.

Center for Biodiversity and Drug Discovery, Instituto de Investigaciones Científicas y Servicios de Alta Tecnología, Apartado 0843-01103, Ciudad del Saber, Ancón, Republic of Panama.

出版信息

New Phytol. 2017 May;214(3):952-958. doi: 10.1111/nph.14438. Epub 2017 Jan 30.

Abstract

Contents 952 I. 952 II. 953 III. 955 IV. 956 V. 957 957 References 957 SUMMARY: Much of our understanding of the mechanisms by which biotic interactions shape plant communities has been constrained by the methods available to study the diverse secondary chemistry that defines plant relationships with other organisms. Recent innovations in analytical chemistry and bioinformatics promise to reveal the cryptic chemical traits that mediate plant ecology and evolution by facilitating simultaneous structural comparisons of hundreds of unknown molecules to each other and to libraries of known compounds. Here, I explore the potential for mass spectrometry and nuclear magnetic resonance metabolomics to enable unprecedented tests of seminal, but largely untested hypotheses that propose a fundamental role for plant chemical defenses against herbivores and pathogens in the evolutionary origins and ecological coexistence of plant species diversity.

摘要

目录

952 I. 952 II. 953 III. 955 IV. 956 V. 957

957 参考文献 957 摘要:在很大程度上,我们对生物相互作用塑造植物群落的机制的理解受到了研究定义植物与其他生物关系的多样次生化学物质的方法的限制。分析化学和生物信息学的最新创新有望揭示介导植物生态学和进化的隐蔽化学特征,方法是促进数百个未知分子彼此之间以及与已知化合物文库的同时结构比较。在这里,我探讨了质谱和核磁共振代谢组学的潜力,以能够对开创性但在很大程度上未经检验的假设进行前所未有的测试,这些假设提出了植物化学防御在植物物种多样性的进化起源和生态共存中对抗草食动物和病原体的基本作用。

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