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多核蘑菇形成真菌中的核特异性表达揭示了不同的核调控程序。

Nucleus-specific expression in the multinuclear mushroom-forming fungus reveals different nuclear regulatory programs.

机构信息

Delft Bioinformatics Lab, Delft University of Technology, 2628XE Delft, The Netherlands;

Microbiology, Utrecht University, 3584CH Utrecht, The Netherlands.

出版信息

Proc Natl Acad Sci U S A. 2018 Apr 24;115(17):4429-4434. doi: 10.1073/pnas.1721381115. Epub 2018 Apr 11.

Abstract

Many fungi are polykaryotic, containing multiple nuclei per cell. In the case of heterokaryons, there are different nuclear types within a single cell. It is unknown what the different nuclear types contribute in terms of mRNA expression levels in fungal heterokaryons. Each cell of the mushroom contains two to 25 nuclei of two nuclear types originating from two parental strains. Using RNA-sequencing data, we assess the differential mRNA contribution of individual nuclear types and its functional impact. We studied differential expression between genes of the two nuclear types, P1 and P2, throughout mushroom development in various tissue types. P1 and P2 produced specific mRNA profiles that changed through mushroom development. Differential regulation occurred at the gene level, rather than at the locus, chromosomal, or nuclear level. P1 dominated mRNA production throughout development, and P2 showed more differentially up-regulated genes in important functional groups. In the vegetative mycelium, P2 up-regulated almost threefold more metabolism genes and carbohydrate active enzymes (cazymes) than P1, suggesting phenotypic differences in growth. We identified widespread transcriptomic variation between the nuclear types of Our method enables studying nucleus-specific expression, which likely influences the phenotype of a fungus in a polykaryotic stage. Our findings have a wider impact to better understand gene regulation in fungi in a heterokaryotic state. This work provides insight into the transcriptomic variation introduced by genomic nuclear separation.

摘要

许多真菌是多核的,每个细胞中含有多个细胞核。在异核体中,一个细胞内存在不同的核类型。目前尚不清楚真菌异核体中不同的核类型在 mRNA 表达水平方面有何贡献。蘑菇的每个细胞都包含两个到 25 个来自两个亲本菌株的两种核类型的细胞核。我们使用 RNA 测序数据来评估单个核类型的差异 mRNA 贡献及其功能影响。我们研究了在不同组织类型的蘑菇发育过程中,两种核类型 P1 和 P2 之间的基因差异表达。P1 和 P2 产生了特定的 mRNA 谱,这些谱随着蘑菇的发育而变化。差异调控发生在基因水平,而不是在基因座、染色体或核水平。在整个发育过程中,P1 主导着 mRNA 的产生,而 P2 在重要的功能组中显示出更多差异上调的基因。在营养菌丝体中,P2 上调的代谢基因和碳水化合物活性酶(CAZymes)几乎是 P1 的三倍,这表明在生长方面存在表型差异。我们发现了核类型之间广泛的转录组变异。我们的方法能够研究特定于核的表达,这可能会影响多细胞真菌的表型。我们的发现对更好地理解异核状态下真菌的基因调控具有更广泛的影响。这项工作为理解基因组核分离带来的转录组变异提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c18b/5924919/e726b513fd9f/pnas.1721381115fig01.jpg

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