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鹅膏毒肽生物合成基因和新型环肽在……中的差异表达

Differential Expression of Amanitin Biosynthetic Genes and Novel Cyclic Peptides in .

作者信息

Lüli Yunjiao, Zhou Shengwen, Li Xuan, Chen Zuohong, Yang Zhuliang, Luo Hong

机构信息

Yunnan Key Laboratory for Fungal Diversity and Green Development, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China.

CAS Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China.

出版信息

J Fungi (Basel). 2021 May 14;7(5):384. doi: 10.3390/jof7050384.

Abstract

is a basal species of lethal and intrigues the field because it does not produce discernable α-amanitin when inspected by High Performance Liquid Chromatography (HPLC), which sets it apart from all known amanitin-producing (lethal) species. In order to study the underlining genetic basis of the phenotype, we sequenced this species through PacBio and Illumina RNA-Seq platforms. In total, 17 genes of the "" family (named after the first five amino acid residues of the precursor peptides) were found in the genome and 11 of them were expressed at the transcription level. The expression pattern was not even but in a differential fashion: two of the s were highly expressed (FPKM value > 100), while the majority were expressed at low levels (FPKM value < 1). Prolyl oligopeptidease B (POPB) is the key enzyme in the amanitin biosynthetic pathway, and high expression of this enzyme was also discovered (FPKM value > 100). The two s with highest transcription further translated into two novel cyclic peptides, the structure of which is distinctive from all known cyclic peptides. The result illustrates the correlation between the expression and the final peptide products. In contrast to previous HPLC result, the genome of harbors α-amanitin genes (three copies), but the product was in trace amount indicated by MS. Overall, transcription of s encoding major toxins (α-amanitin, β-amanitin, phallacidin and phalloidin) were low, showing that these toxins were not actively synthesized at the stage. Collectively, our results indicate that the amanitin biosynthetic pathway is highly active at the mature fruiting body stage in , and due to the differential expression of genes, the pathway produces only a few cyclic peptides at the time.

摘要

是一种致死性的基础物种,因其在高效液相色谱(HPLC)检测中不产生可识别的α-鹅膏菌素,这使其在该领域备受关注,与所有已知产生鹅膏菌素(致死性)的物种不同。为了研究该表型的潜在遗传基础,我们通过PacBio和Illumina RNA-Seq平台对该物种进行了测序。在基因组中总共发现了17个“”家族的基因(以前体肽的前五个氨基酸残基命名),其中11个在转录水平表达。表达模式并不均匀,而是呈差异表达:其中两个基因高表达(FPKM值>100),而大多数基因低表达(FPKM值<1)。脯氨酰寡肽酶B(POPB)是鹅膏菌素生物合成途径中的关键酶,也发现该酶高表达(FPKM值>100)。转录水平最高的两个基因进一步翻译成两种新型环肽,其结构与所有已知环肽不同。结果说明了表达与最终肽产物之间的相关性。与之前的HPLC结果相反,该物种的基因组中含有α-鹅膏菌素基因(三个拷贝),但质谱显示产物含量微量。总体而言,编码主要毒素(α-鹅膏菌素、β-鹅膏菌素、鬼笔环肽和鬼笔毒环肽)的基因转录水平较低,表明这些毒素在该阶段未被积极合成。总的来说,我们的结果表明,鹅膏菌素生物合成途径在该物种的成熟子实体阶段高度活跃,并且由于基因的差异表达,该途径在此时仅产生少数环肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/812c/8156247/d1d0a8504c99/jof-07-00384-g001.jpg

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