Shang Junjun, Xu Sijia, Tang Lihua, Yang Ruiheng, Gong Ming, Li Yan, Wang Ying, Zou Gen, Wan Jianing, Bao Dapeng
Shanghai Key Laboratory of Agricultural Genetics and Breeding, Institute of Edible Fungi, Shanghai Academy of Agricultural Sciences, Shanghai, China.
College of Food Science, Shanghai Ocean University, Shanghai, China.
Microbiol Spectr. 2023 Mar 14;11(2):e0527222. doi: 10.1128/spectrum.05272-22.
Fruiting body formation is the most important developmental event in the edible mushroom life cycle; however, the genetic regulation of this process is not well understood. is a widely cultivated mushroom with high economic value. The mating of two monokaryons carrying compatible A and B mating-type genes is required for the development of fruiting bodies in . In this study, we showed that the monokaryons of transformed with compatible homeodomain (A mating type) and pheromone (B mating type) genes can complete fruiting body development but cannot form basidiospores. Transcriptional analyses revealed that expression of endogenous homeodomain and pheromone receptor genes and mating signaling pathways were activated by transferred homeodomain and pheromone genes in the transformants. Our findings provide a novel model for studying fruiting body development, which may accelerate the genetic breeding of edible mushrooms in the future. Fruiting bodies of edible mushrooms have high nutritional value. However, the fruiting body development of mushrooms is not well understood, and thus, many wild edible mushrooms of economic importance cannot be cultivated artificially. Moreover, variety among cultivatable mushrooms has improved marginally. Under natural conditions, fruiting body development can be initiated only in a dikaryon, the sexual mycelium obtained from mating two compatible monokaryons. The present work showed induction of fruiting body development in monokaryons by genetic manipulation. Gene expression analyses revealed key genes and signaling pathways involved in the fruiting body development of .
子实体形成是食用菌生命周期中最重要的发育事件;然而,这一过程的遗传调控尚不清楚。[某种蘑菇名称]是一种广泛栽培且具有高经济价值的蘑菇。在[该种蘑菇名称]中,子实体发育需要两个携带兼容A和B交配型基因的单核体进行交配。在本研究中,我们表明用兼容的同源结构域(A交配型)和信息素(B交配型)基因转化的[该种蘑菇名称]单核体能够完成子实体发育,但不能形成担孢子。转录分析表明,转化体中转移的同源结构域和信息素基因激活了内源性同源结构域和信息素受体基因的表达以及交配信号通路。我们的发现为研究子实体发育提供了一个新模型,这可能会在未来加速食用菌的遗传育种。食用菌的子实体具有很高的营养价值。然而,蘑菇子实体的发育尚不清楚,因此许多具有经济重要性的野生食用菌无法人工栽培。此外,可栽培蘑菇的品种改善甚微。在自然条件下,子实体发育只能在双核体中启动,双核体是通过两个兼容单核体交配获得的有性菌丝体。目前的工作表明通过基因操作可诱导[该种蘑菇名称]单核体的子实体发育。基因表达分析揭示了参与[该种蘑菇名称]子实体发育的关键基因和信号通路。