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Comparative Transcriptome Analysis Between a Spontaneous Albino Mutant and Its Sibling Strain of Cordyceps militaris in Response to Light Stress

机译:自发白化突变体及其Mut虫草对光胁迫响应的转录组比较分析

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摘要

Albinism has been used for new variety screening in some edible mushrooms and the underlying mechanisms are fascinating. Albino fruiting body of Cordyceps militaris, a well-known edible fungus and model organism for Cordyceps, has the potential to be a nutraceutical or functional food due to its high content of metabolites and antioxidant activities. In this study, a spontaneous albino mutant strain (505) of C. militaris was obtained. In comparison to its normal sibling strain (498), the albino strain stably remained white in response to light and had significantly decreased conidia and carotenoid production but accumulated more cordycepin. Transcriptome analysis of both strains revealed that all the seven photoreceptors were expressed similarly in response to light. However, many more genes in the albino strain were differentially expressed in response to light than its sibling strain. The significantly enriched pathways in 498L vs. 505L were mainly associated with replication and repair. Some secondary metabolite backbone genes including those encoding DMAT, two NRPS-like proteins, three NPRS, and lanosterol synthase were differentially expressed in the albino when compared with that of the normal strains. Transcriptome and real-time quantitative PCR analyses indicated that some cytochrome P450s and methyltransferases might be related to the phenotypic differences observed between the two strains. This study compared the genome-wide transcriptional responses to light irradiation in a spontaneous albino mutant and its normal sibling strain of an edible fungus, and these findings potentially pave the way for further investigation of the pigment biosynthetic pathway.
机译:白化病已被用于某些食用菌的新品种筛选,其潜在机理令人着迷。 mil虫草的白化子实体是一种著名的食用菌和冬虫夏草的典范生物,由于其代谢物含量高和抗氧化活性高,因此有可能成为营养食品或功能食品。在这项研究中,获得了自发的白变种C. militaris的白化突变株(505)。与正常兄弟姐妹菌株(498)相比,白化病菌株在光照下稳定地保持白色,分生孢子和类胡萝卜素的产生显着减少,但虫草素的积累更多。两种菌株的转录组分析显示,所有七个感光体在对光的响应中表达相似。但是,白化菌株比同胞菌株在对光的响应中差异表达的基因更多。 498L和505L的显着富集途径主要与复制和修复有关。与正常菌株相比,白化病中差异表达了一些次级代谢产物主链基因,包括编码DMAT的基因,两个NRPS样蛋白,三个NPRS和羊毛甾醇合酶。转录组和实时定量PCR分析表明,一些细胞色素P450和甲基转移酶可能与这两个菌株之间观察到的表型差异有关。这项研究比较了自发性白化突变体及其食用菌的正常同胞菌株对光照射的全基因组转录响应,这些发现可能为进一步研究色素生物合成途径铺平了道路。

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