No need for speed: slow development of fungi in extreme environments

IF 5.7 2区 生物学 Q1 MYCOLOGY Fungal Biology Reviews Pub Date : 2022-03-01 DOI:10.1016/j.fbr.2021.11.002
Cene Gostinčar, Polona Zalar, Nina Gunde-Cimerman
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引用次数: 18

Abstract

Microbial growth under extreme conditions is often slow. This is partly because large amounts of energy are diverted into cellular mechanisms that allow survival under hostile conditions. Because this challenge is universal and diversity in extreme environments is low compared to non-extreme environments, slow-growing microorganisms are not overgrown by other species. In some cases, especially when nutrients are scarce, slow growth was even shown to increase stress tolerance. And in at least some species of extremotolerant and extremophilic fungi, growth rate appears to be coupled with their very unusual morphologies, which in turn may be an adaptation to extreme conditions. However, there is more than one strategy of survival in extreme environments. Fungi that thrive in extremes can be divided into (i) ubiquitous and polyextremotolerant generalists and (ii) rarely isolated specialists with narrow ecological amplitudes. While generalists can compete with mesophilic species, specialists cannot. When adapting to extreme conditions, the risk of an evolutionary trade-off in the form of reduced fitness under mesophilic conditions may limit the maximum stress tolerance achievable by polyextremotolerant generalists. At the same time, specialists are rarely found in mesophilic environments, which allows them to evolve to ever greater extremotolerance, since a reduction of mesophilic fitness is likely to have little impact on their evolutionary success.

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不需要速度:真菌在极端环境中生长缓慢
微生物在极端条件下的生长通常是缓慢的。这在一定程度上是因为大量的能量被转移到细胞机制中,使它们能够在恶劣的条件下生存。由于这一挑战是普遍存在的,而且与非极端环境相比,极端环境中的多样性较低,因此生长缓慢的微生物不会被其他物种过度生长。在某些情况下,特别是在营养匮乏的情况下,缓慢的生长甚至可以增加耐受性。至少在一些极端耐受性和嗜极性真菌的物种中,生长速度似乎与它们非常不寻常的形态相结合,这反过来可能是对极端条件的适应。然而,在极端环境中生存的策略不止一种。在极端环境中茁壮成长的真菌可分为(i)无处不在且多极端耐受的通才型真菌和(ii)具有狭窄生态幅度的罕见孤立的专才型真菌。通才可以与中嗜性物种竞争,而专才则不行。当适应极端条件时,中温环境下适应性降低的进化权衡风险可能会限制多极端耐受性通才所能达到的最大应力耐受性。与此同时,在中温环境中很少发现专家,这使得它们能够进化到更强的极端耐受性,因为中温适应性的降低可能对它们的进化成功几乎没有影响。
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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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