神奇蘑菇(Psilocybe subaeruginosa)的基因组测序后代确定了裸盖菇素途径中的四极交配和基因复制

IF 2.4 3区 生物学 Q3 GENETICS & HEREDITY
Alistair R. McTaggart , Timothy Y. James , Jason C. Slot , Caine Barlow , Nigel Fechner , Louise S. Shuey , André Drenth
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引用次数: 5

摘要

育种系统和遗传多样性的知识对于选择和组合所需的性状,在农业和园艺中推广新品种至关重要。生产裸盖菇素(神奇蘑菇)的蘑菇可能用于治疗和健康行业,并将从基因改良中受益。我们研究了亚芥子Psilocybe subaeruginosa的单倍体兄弟姐妹,以解决交配兼容性背后的遗传学问题,并提高育种知识。我们的结果表明,P.subaeruginosa的交配是四极的,在HD1和HD2各有一个拷贝的同源结构域基因座和STE3受体基因的四个同源物的信息素/受体基因座上具有兼容性。另外两个与STE3同源的信息素/受体基因座似乎不调节交配兼容性。裸盖菇素基因簇中的等位基因在五个兄弟姐妹中没有变化,很可能在亲本中是纯合的。Psilocybe subaeruginosa及其亲属有三个PsiH基因拷贝,但它们对裸盖菇素及其类似物生产的影响尚不清楚。Psilocybe的遗传改良将需要从不同物种的起源中心获得遗传多样性,识别性状背后的基因,以及避免近亲繁殖抑制的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genome sequencing progenies of magic mushrooms (Psilocybe subaeruginosa) identifies tetrapolar mating and gene duplications in the psilocybin pathway

Knowledge of breeding systems and genetic diversity is critical to select and combine desired traits that advance new cultivars in agriculture and horticulture. Mushrooms that produce psilocybin, magic mushrooms, may potentially be used in therapeutic and wellness industries, and stand to benefit from genetic improvement. We studied haploid siblings of Psilocybe subaeruginosa to resolve the genetics behind mating compatibility and advance knowledge of breeding. Our results show that mating in P. subaeruginosa is tetrapolar, with compatibility controlled at a homeodomain locus with one copy each of HD1 and HD2, and a pheromone/receptor locus with four homologs of the receptor gene STE3. An additional two pheromone/receptor loci homologous to STE3 do not appear to regulate mating compatibility. Alleles in the psilocybin gene cluster did not vary among the five siblings and were likely homozygous in the parent. Psilocybe subaeruginosa and its relatives have three copies of PsiH genes but their impact on production of psilocybin and its analogues is unknown. Genetic improvement in Psilocybe will require access to genetic diversity from the centre of origin of different species, identification of genes behind traits, and strategies to avoid inbreeding depression.

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来源期刊
Fungal Genetics and Biology
Fungal Genetics and Biology 生物-遗传学
CiteScore
6.20
自引率
3.30%
发文量
66
审稿时长
85 days
期刊介绍: Fungal Genetics and Biology, formerly known as Experimental Mycology, publishes experimental investigations of fungi and their traditional allies that relate structure and function to growth, reproduction, morphogenesis, and differentiation. This journal especially welcomes studies of gene organization and expression and of developmental processes at the cellular, subcellular, and molecular levels. The journal also includes suitable experimental inquiries into fungal cytology, biochemistry, physiology, genetics, and phylogeny. Fungal Genetics and Biology publishes basic research conducted by mycologists, cell biologists, biochemists, geneticists, and molecular biologists. Research Areas include: • Biochemistry • Cytology • Developmental biology • Evolutionary biology • Genetics • Molecular biology • Phylogeny • Physiology.
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