Evolution of plant metabolism: the state-of-the-art.

IF 5.4 2区 生物学 Q1 BIOLOGY Philosophical Transactions of the Royal Society B: Biological Sciences Pub Date : 2024-11-18 Epub Date: 2024-09-30 DOI:10.1098/rstb.2023.0347
Alisdair R Fernie, Sophie de Vries, Jan de Vries
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Abstract

Immense chemical diversity is one of the hallmark features of plants. This chemo-diversity is mainly underpinned by a highly complex and biodiverse biochemical machinery. Plant metabolic enzymes originated and were inherited from their eukaryotic and prokaryotic ancestors and further diversified by the unprecedentedly high rates of gene duplication and functionalization experienced in land plants. Unlike prokaryotic microbes, which display frequent horizontal gene transfer events and multiple inputs of energy and organic carbon, land plants predominantly rely on organic carbon generated from CO2 and have experienced relatively few gene transfers during their recent evolutionary history. As such, plant metabolic networks have evolved in a stepwise manner using existing networks as a starting point and under various evolutionary constraints. That said, until recently, the evolution of only a handful of metabolic traits had been extensively investigated and as such, the evolution of metabolism has received a fraction of the attention of, the evolution of development, for example. Advances in metabolomics and next-generation sequencing have, however, recently led to a deeper understanding of how a wide range of plant primary and specialized (secondary) metabolic pathways have evolved both as a consequence of natural selection and of domestication and crop improvement processes. This article is part of the theme issue 'The evolution of plant metabolism'.

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植物新陈代谢的进化:最新进展。
巨大的化学多样性是植物的标志性特征之一。这种化学多样性主要由高度复杂和生物多样性的生物化学机制支撑。植物代谢酶起源于真核生物和原核生物的祖先,并从它们那里继承下来,陆生植物的基因复制和功能化速度之快前所未有,从而使植物代谢酶进一步多样化。原核微生物经常发生横向基因转移事件,并有多种能量和有机碳输入,而陆生植物则不同,它们主要依赖二氧化碳产生的有机碳,在最近的进化史中经历的基因转移相对较少。因此,植物代谢网络是以现有网络为起点,在各种进化限制条件下逐步进化而来的。尽管如此,直到最近,只有少数几种代谢特征的进化得到了广泛的研究,因此,代谢进化得到的关注度仅为发育进化等的一小部分。然而,最近代谢组学和下一代测序技术的进步使人们更深入地了解了各种植物初级和特化(次级)代谢途径是如何在自然选择、驯化和作物改良过程中发生进化的。本文是主题 "植物新陈代谢的进化 "的一部分。
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CiteScore
11.80
自引率
1.60%
发文量
365
审稿时长
3 months
期刊介绍: The journal publishes topics across the life sciences. As long as the core subject lies within the biological sciences, some issues may also include content crossing into other areas such as the physical sciences, social sciences, biophysics, policy, economics etc. Issues generally sit within four broad areas (although many issues sit across these areas): Organismal, environmental and evolutionary biology Neuroscience and cognition Cellular, molecular and developmental biology Health and disease.
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