Institute of Laboratory Animals, Kyoto University Graduate School of Medicine, Yoshidakonoe-cho, Sakyo-ku, Kyoto 606-8501, Japan.
RIKEN BioResource Center, Tsukuba, Ibaraki, 305-0074, Japan.
Bioessays. 2018 Jun;40(6):e1700152. doi: 10.1002/bies.201700152. Epub 2018 Apr 6.
The endangered species Tokudaia osimensis has the unique chromosome constitution of 2n = 25, with an XO/XO sex chromosome configuration (2n = 25; XO). There is urgency to preserve this species and to elucidate the regulator(s) that can discriminate the males and females arising from the indistinguishable sex chromosome constitution. However, it is not realistic to examine this rare animal species by sacrificing individuals. Recently, true naïve induced pluripotent stem cells were successfully generated from a female T. osimensis, and the sexual plasticity of its germ cells was elucidated. This achievement constitutes the basis of an attractive research area, including embryonic fate determination, sex determination, and factor(s) that can replace the Y chromosome. In this essay, concrete strategies to conserve rare animal species and to reveal their specific characteristics using other compatible and abundant animals are proposed.
濒危物种 Tokudaia osimensis 的染色体组成为 2n=25,具有独特的 XO/XO 性染色体配置(2n=25;XO)。迫切需要保护这个物种,并阐明可以区分由难以区分的性染色体组成产生的雄性和雌性的调节剂。然而,通过牺牲个体来检查这种稀有动物物种是不现实的。最近,成功地从雌性 Tokudaia osimensis 中产生了真正的幼稚诱导多能干细胞,并阐明了其生殖细胞的性可塑性。这一成就构成了一个有吸引力的研究领域的基础,包括胚胎命运决定、性别决定以及可以替代 Y 染色体的因子。在本文中,提出了使用其他相容且丰富的动物来保护稀有动物物种并揭示其特定特征的具体策略。