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曲霉属中的化学多样性。

Chemodiversity in the genus Aspergillus.

作者信息

Frisvad Jens C, Larsen Thomas O

机构信息

Section for Eukaryotic Biotechnology, Department of Systems Biology, Technical University of Denmark, Søltofts Plads Building 221, DK-2800 Kgs, Lyngby, Denmark,

出版信息

Appl Microbiol Biotechnol. 2015 Oct;99(19):7859-77. doi: 10.1007/s00253-015-6839-z. Epub 2015 Aug 5.

Abstract

Isolates of Aspergillus species are able to produce a large number of secondary metabolites. The profiles of biosynthetic families of secondary metabolites are species specific, whereas individual secondary metabolite families can occur in other species, even those phylogenetically and ecologically unrelated to Aspergillus. Furthermore, there is a high degree of chemo-consistency from isolate to isolate in a species even though certain metabolite gene clusters are silenced in some isolates. Genome sequencing projects have shown that the diversity of secondary metabolites is much larger in each species than previously thought. The potential of finding even further new bioactive drug candidates in Aspergillus is evident, despite the fact that many secondary metabolites have already been structure elucidated and chemotaxonomic studies have shown that many new secondary metabolites have yet to be characterized. The genus Aspergillus is cladistically holophyletic but phenotypically polythetic and very diverse and is associated to quite different sexual states. Following the one fungus one name system, the genus Aspergillus is restricted to a holophyletic clade that include the morphologically different genera Aspergillus, Dichotomomyces, Phialosimplex, Polypaecilum and Cristaspora. Secondary metabolites common between the subgenera and sections of Aspergillus are surprisingly few, but many metabolites are common to a majority of species within the sections. We call small molecule extrolites in the same biosynthetic family isoextrolites. However, it appears that secondary metabolites from one Aspergillus section have analogous metabolites in other sections (here also called heteroisoextrolites). In this review, we give a genus-wide overview of secondary metabolite production in Aspergillus species. Extrolites appear to have evolved because of ecological challenges rather than being inherited from ancestral species, at least when comparing the species in the different sections of Aspergillus. Within the Aspergillus sections, secondary metabolite pathways seem to inherit from ancestral species, but the profiles of these secondary metabolites are shaped by the biotic and abiotic environment. We hypothesize that many new and unique section-specific small molecule extrolites in each of the Aspergillus will be discovered.

摘要

曲霉属的分离物能够产生大量次生代谢产物。次生代谢产物生物合成家族的谱图具有物种特异性,而个别次生代谢产物家族也可能出现在其他物种中,甚至是那些在系统发育和生态上与曲霉无关的物种。此外,即使某些代谢物基因簇在一些分离物中沉默,同一物种内不同分离物之间的化学一致性程度仍然很高。基因组测序项目表明,每个物种中次生代谢产物的多样性比以前认为的要大得多。尽管许多次生代谢产物的结构已经阐明,并且化学分类学研究表明仍有许多新的次生代谢产物有待表征,但在曲霉中发现更多新型生物活性药物候选物的潜力仍然很大。曲霉属在系统发育上是单系的,但在表型上是多系的且非常多样,并且与截然不同的有性状态相关。遵循“一种真菌一个名称”系统,曲霉属被限制在一个单系类群中,该类群包括形态上不同的曲霉属、二分霉属、瓶梗单胞霉属、多粘霉属和脊孢霉属。曲霉亚属和组之间共有的次生代谢产物出奇地少,但许多代谢产物在组内的大多数物种中都很常见。我们将同一生物合成家族中的小分子外排物称为异外排物。然而看起来来自曲霉一个组的次生代谢产物在其他组中具有类似的代谢产物(这里也称为异源异外排物)。在本综述中,我们对曲霉属物种次生代谢产物的产生进行了全属范围的概述。外排物似乎是由于生态挑战而进化而来,而不是从祖先物种遗传而来,至少在比较曲霉不同组中的物种时是这样。在曲霉组内,次生代谢产物途径似乎是从祖先物种遗传而来,但这些次生代谢产物的谱图受到生物和非生物环境的影响。我们推测,在每个曲霉属中都将发现许多新的、独特的组特异性小分子外排物。

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