Sekimoto Hiroyuki, Komiya Ayumi, Tsuyuki Natsumi, Kawai Junko, Kanda Naho, Ootsuki Ryo, Suzuki Yutaka, Toyoda Atsushi, Fujiyama Asao, Kasahara Masahiro, Abe Jun, Tsuchikane Yuki, Nishiyama Tomoaki
Division of Material and Biological Sciences, Graduate School of Science, Japan Women's University, 2-8-1 Mejirodai, Bunkyo-ku, Tokyo, 112-8681, Japan.
Department of Chemical and Biological Sciences, Faculty of Science, Japan Women's University, 2-8-1 Mejirodai, Bunkyo-ku, Tokyo, 112-8681, Japan.
New Phytol. 2023 Mar;237(5):1636-1651. doi: 10.1111/nph.18662. Epub 2023 Jan 9.
The Closterium peracerosum-strigosum-littorale complex (Closterium, Zygnematophyceae) has an isogamous mating system. Members of the Zygnematophyceae are the closest relatives to extant land plants and are distantly related to chlorophytic models, for which a genetic basis of mating type (MT) determination has been reported. We thus investigated MT determination in Closterium. We sequenced genomes representing the two MTs, mt+ and mt-, in Closterium and identified CpMinus1, a gene linked to the mt- phenotype. We analyzed its function using reverse genetics methods. CpMinus1 encodes a divergent RWP-RK domain-containing-like transcription factor and is specifically expressed during gamete differentiation. Introduction of CpMinus1 into an mt+ strain was sufficient to convert it to a phenotypically mt- strain, while CpMinus1-knockout mt- strains were phenotypically mt+. We propose that CpMinus1 is the major MT determinant that acts by evoking the mt- phenotype and suppressing the mt+ phenotype in heterothallic Closterium. CpMinus1 likely evolved independently in the Zygnematophyceae lineage, which lost an egg-sperm anisogamous mating system. mt- specific regions possibly constitute an MT locus flanked by common sequences that undergo some recombination.
尖针鼓藻-细纹鼓藻-滨海鼓藻复合体(针鼓藻,双星藻纲)具有同配交配系统。双星藻纲的成员是现存陆地植物的近亲,与绿藻模型亲缘关系较远,而对于绿藻模型,已有关于交配型(MT)决定的遗传基础的报道。因此,我们研究了针鼓藻中MT的决定机制。我们对代表针鼓藻两种MT(mt+和mt-)的基因组进行了测序,并鉴定出与mt-表型相关的基因CpMinus1。我们使用反向遗传学方法分析了它的功能。CpMinus1编码一种含有RWP-RK结构域的不同寻常的类转录因子,并且在配子分化过程中特异性表达。将CpMinus1导入mt+菌株足以使其转变为表型为mt-的菌株,而敲除CpMinus1的mt-菌株表型为mt+。我们提出,CpMinus1是主要的MT决定因素,它通过在异宗配合的针鼓藻中引发mt-表型并抑制mt+表型来发挥作用。CpMinus1可能在双星藻纲谱系中独立进化,该谱系失去了卵-精子异配交配系统。mt-特异性区域可能构成一个MT位点,两侧是经历一些重组的共同序列。