摘要
重编程在植物组织培养和干细胞治疗等领域有潜在的应用价值。目前,影响陆生植物重编程的分子机制还不清楚,而且缺少从进化-发育角度对重编程的研究。通过建立模式生物小立碗藓的再生体系,研究共有因子Pp CSP1/Lin28调控高等植物重编程的作用机制,并对今后的研究进行展望。
Reprogramming has potential applications value in plant tissue culture and stem cell therapy,but its molecular mechanism is still un-known in land plants,and there is a lack of research on reprogramming from evolution-developmental perspective.In this paper,the regulation mechanism of the co-factor PpCSP1 /Lin28 on reprogramming of higher plant was studied by establishing the regenerative system of Physcomitrel-la patens,and the future research was prospected.
出处
《安徽农业科学》
CAS
2017年第28期148-150,共3页
Journal of Anhui Agricultural Sciences
基金
浙江省公益技术应用研究分析测试项目“药用苔藓植物生物活性测试”(2106C37060)
湖北省卫生计生委立项项目(WJ2017F068)
湖北医药学院人才启动金项目(2016QDJZR11,2016QDJZR14)
关键词
细胞重编程
小立碗藓
拟南芥
冷激蛋白
Cellular reprogramming
Physcomitrella patens
Arabidopsis thaliana
Cold-shock domain protein