真菌走了一条独特的多细胞进化路线:真菌多细胞生活的七个关键挑战

IF 5.7 2区 生物学 Q1 MYCOLOGY Fungal Biology Reviews Pub Date : 2020-12-01 DOI:10.1016/j.fbr.2020.07.002
László G. Nagy , Torda Varga , Árpád Csernetics , Máté Virágh
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引用次数: 23

摘要

多细胞生物的进化是生命史上的重大转变之一。与动物和植物相比,真菌的多细胞是如何进化的,以及它与从更广泛研究的模型系统中提炼出来的一般原理相比如何,很少受到关注。本文综述了真菌的多细胞功能及其进化。我们专注于真菌如何解决与多细胞生物进化相关的一些共同挑战,以及真菌独特的丝状生长形式带来的独特挑战。我们确定并讨论了真菌多细胞生长的七个关键挑战:根尖生长、区隔化、长距离质量运输、控制突变负荷、细胞间通讯、分化和粘附。其中一些是所有多细胞转变的特征,而另一些则是真菌所特有的。我们希望这篇综述将有助于解释真菌多细胞性与其他多细胞谱系的比较,并将促进进一步研究真菌如何在其进化史上的一个重大转变中解决基本挑战。
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Fungi took a unique evolutionary route to multicellularity: Seven key challenges for fungal multicellular life

The evolution of multicellularity has been one of the major transitions in the history of life. In contrast to animals and plants, how multicellularity evolved in fungi and how it compares to the general principles distilled from the study of more widely studied model systems, has received little attention. This review broadly discusses multicellular functioning and evolution in fungi. We focus on how fungi solved some of the common challenges associated with the evolution of multi-celled organisms and what unique challenges follow from the peculiar, filamentous growth form of fungi. We identify and discuss seven key challenges for fungal multicellular growth: apical growth, compartmentalization, long-distance mass transport, controlling mutational load, cell-to-cell communication, differentiation and adhesion. Some of these are characteristic of all multicellular transitions, whereas others are unique to fungi. We hope this review will facilitate the interpretation of fungal multicellularity in comparison with that of other multicellular lineages and will prompt further research into how fungi solved fundamental challenges in one of the major transitions in their evolutionary history.

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来源期刊
CiteScore
10.60
自引率
0.00%
发文量
36
期刊介绍: Fungal Biology Reviews is an international reviews journal, owned by the British Mycological Society. Its objective is to provide a forum for high quality review articles within fungal biology. It covers all fields of fungal biology, whether fundamental or applied, including fungal diversity, ecology, evolution, physiology and ecophysiology, biochemistry, genetics and molecular biology, cell biology, interactions (symbiosis, pathogenesis etc), environmental aspects, biotechnology and taxonomy. It considers aspects of all organisms historically or recently recognized as fungi, including lichen-fungi, microsporidia, oomycetes, slime moulds, stramenopiles, and yeasts.
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