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担子菌平菇双核体中的全基因组基因表达模式

Genome-wide gene expression patterns in dikaryon of the basidiomycete fungus Pleurotus ostreatus.

作者信息

Liu Tianxiang, Li Huiru, Ding Yatong, Qi Yuancheng, Gao Yuqian, Song Andong, Shen Jinwen, Qiu Liyou

机构信息

Henan Agricultural University, College of Life Sciences, Key Laboratory of Enzyme Engineering of Agricultural Microbiology, Zhengzhou, China.

Henan Agricultural University, College of Life Sciences, Key Laboratory of Enzyme Engineering of Agricultural Microbiology, Zhengzhou, China.

出版信息

Braz J Microbiol. 2017 Apr-Jun;48(2):380-390. doi: 10.1016/j.bjm.2016.12.005. Epub 2017 Jan 3.

Abstract

Dikarya is a subkingdom of fungi that includes Ascomycota and Basidiomycota. The gene expression patterns of dikaryon are poorly understood. In this study, we bred a dikaryon DK13×3 by mating monokaryons MK13 and MK3, which were from the basidiospores of Pleurotus ostreatus TD300. Using RNA-Seq, we obtained the transcriptomes of the three strains. We found that the total transcript numbers in the transcriptomes of the three strains were all more than ten thousand, and the expression profile in DK13×3 was more similar to MK13 than MK3. However, the genes involved in macromolecule utilization, cellular material synthesis, stress-resistance and signal transduction were much more up-regulated in the dikaryon than its constituent monokaryons. All possible modes of differential gene expression, when compared to constituent monokaryons, including the presence/absence variation, and additivity/nonadditivity gene expression in the dikaryon may contribute to heterosis. By sequencing the urease gene poure sequences and mRNA sequences, we identified the monoallelic expression of the poure gene in the dikaryon, and its transcript was from the parental monokaryon MK13. Furthermore, we discovered RNA editing in the poure gene mRNA of the three strains. These results suggest that the gene expression patterns in dikaryons should be similar to that of diploids during vegetative growth.

摘要

双核菌纲是真菌的一个亚界,包括子囊菌门和担子菌门。人们对双核体的基因表达模式了解甚少。在本研究中,我们通过将单核体MK13和MK3进行交配培育出了双核体DK13×3,这两个单核体来自糙皮侧耳TD300的担孢子。利用RNA测序技术,我们获得了这三个菌株的转录组。我们发现这三个菌株转录组中的转录本总数均超过一万个,并且DK13×3中的表达谱与MK13比与MK3更相似。然而,与组成它的单核体相比,参与大分子利用、细胞物质合成、抗逆性和信号转导的基因在双核体中上调程度更高。与组成它的单核体相比,双核体中所有可能的差异基因表达模式,包括存在/缺失变异以及加性/非加性基因表达,都可能导致杂种优势。通过对脲酶基因poure的序列和mRNA序列进行测序,我们确定了双核体中poure基因的单等位基因表达,并且其转录本来自亲本单核体MK13。此外,我们在这三个菌株的poure基因mRNA中发现了RNA编辑。这些结果表明,双核体在营养生长期间的基因表达模式应与二倍体相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c55b/5470450/7d235cd20cc1/gr1.jpg

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