Jo Ick-Hyun, Kim Jaewook, An Hyejin, Lee Hwa-Yong, So Yoon-Sup, Ryu Hojin, Sung Gi-Ho, Shim Donghwan, Chung Jong-Wook
National Institute of Horticultural and Herbal Science, Rural Development Administration, Eumseong 27709, Korea.
Department of Biological Science, Chungnam National University, Daejeon 34134, Korea.
J Fungi (Basel). 2022 Aug 22;8(8):886. doi: 10.3390/jof8080886.
is one of the world's most popular edible mushrooms, including in South Korea. We performed de novo genome assembly with a South Korean white-colored cultivar of , KMCC00540. After generating a scaffold-level genomic sequence, we inferred chromosome-level assembly by genomic synteny analysis with the representative strains H97 and H39. The KMCC00540 genome had 13 pseudochromosomes comprising 33,030,236 bp mostly covering both strains. A comparative genomic analysis with cultivar H97 indicated that most genomic regions and annotated proteins were shared (over 90%), ensuring that our cultivar could be used as a representative genome. However, suffers from browning even from only a slight mechanical stimulus during transportation, which significantly lowers its commercial value. To identify which genes respond to a mechanical stimulus that induces browning, we performed a time-course transcriptome analysis based on the de novo assembled genome. Mechanical stimulus induces up-regulation in long fatty acid ligase activity-related genes, as well as melanin biosynthesis genes, especially at early time points. In summary, we assembled the chromosome-level genomic information on a Korean strain of and identified which genes respond to a mechanical stimulus, which provided key hints for improving the post-harvest biological control of .
是世界上最受欢迎的可食用蘑菇之一,在韩国也很受欢迎。我们对韩国白色栽培品种KMCC00540进行了从头基因组组装。在生成支架水平的基因组序列后,我们通过与代表性菌株H97和H39进行基因组共线性分析推断出染色体水平的组装。KMCC00540基因组有13条假染色体,包含33,030,236 bp,大部分覆盖了这两个菌株。与品种H97的比较基因组分析表明,大多数基因组区域和注释蛋白是共享的(超过90%),这确保了我们的品种可以用作代表性基因组。然而,即使在运输过程中仅受到轻微的机械刺激也会出现褐变,这显著降低了其商业价值。为了确定哪些基因对诱导褐变的机械刺激作出反应,我们基于从头组装的基因组进行了时间进程转录组分析。机械刺激会诱导长脂肪酸连接酶活性相关基因以及黑色素生物合成基因上调,尤其是在早期时间点。总之,我们组装了韩国菌株的染色体水平基因组信息,并确定了哪些基因对机械刺激作出反应,这为改善的采后生物控制提供了关键线索。