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木质腐朽真菌中底物特异性基因表达和 RNA 编辑的演变。

Evolution of substrate-specific gene expression and RNA editing in brown rot wood-decaying fungi.

机构信息

Biology Department, Clark University, Worcester, MA, USA.

USDA Forest Products Laboratory, Madison, WI, USA.

出版信息

ISME J. 2019 Jun;13(6):1391-1403. doi: 10.1038/s41396-019-0359-2. Epub 2019 Feb 4.

Abstract

Fungi that decay wood have characteristic associations with certain tree species, but the mechanistic bases for these associations are poorly understood. We studied substrate-specific gene expression and RNA editing in six species of wood-decaying fungi from the 'Antrodia clade' (Polyporales, Agaricomycetes) on three different wood substrates (pine, spruce, and aspen) in submerged cultures. We identified dozens to hundreds of substrate-biased genes (i.e., genes that are significantly upregulated in one substrate relative to the other two substrates) in each species, and these biased genes are correlated with their host ranges. Evolution of substrate-biased genes is associated with gene family expansion, gain and loss of genes, and variation in cis- and trans- regulatory elements, rather than changes in protein coding sequences. We also demonstrated widespread RNA editing events in the Antrodia clade, which differ from those observed in the Ascomycota in their distribution, substitution types, and the genomic environment. Moreover, we found that substrates could affect editing positions and frequency, including editing events occurring in mRNA transcribed from wood-decay-related genes. This work shows the extent to which gene expression and RNA editing differ among species and substrates, and provides clues into mechanisms by which wood-decaying fungi may adapt to different hosts.

摘要

能分解木材的真菌与某些树种具有特征性的关联,但这些关联的机制基础还知之甚少。我们在浸没培养条件下,研究了来自多孔菌目(伞菌纲,担子菌门)“拟隔褶伞属”的六种木材分解真菌在三种不同木材基质(松木、云杉和白杨)上的基质特异性基因表达和 RNA 编辑。我们在每个物种中都鉴定出了数十到数百个对基质有偏倚的基因(即相对于其他两种基质,在一种基质中显著上调的基因),这些偏倚基因与它们的宿主范围相关。基质有偏倚基因的进化与基因家族的扩张、基因的获得和丧失以及顺式和反式调控元件的变化有关,而不是与蛋白质编码序列的变化有关。我们还在拟隔褶伞属中证实了广泛存在的 RNA 编辑事件,这些事件在分布、取代类型和基因组环境方面与在子囊菌纲中观察到的事件不同。此外,我们发现,基质可以影响编辑位置和频率,包括发生在与木材分解相关基因转录的 mRNA 上的编辑事件。这项工作表明了基因表达和 RNA 编辑在物种和基质之间存在差异的程度,并为木材分解真菌可能适应不同宿主的机制提供了线索。

相似文献

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Fungal RNA editing: who, when, and why?真菌 RNA 编辑:谁、何时以及为何?
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The evolution and adaptation of A-to-I RNA editing.A到I RNA编辑的进化与适应
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