虫草素
拉伤
突变
突变体
酵母
腺苷
生物
腺苷激酶
生物化学
遗传学
基因
腺苷脱氨酶
解剖
作者
Muneyoshi Kanai,Norito Yasuda,Tomoko Morimoto,Satoko Yoshida,Nahoko Nishibori,Masaki Mizunuma,Tsutomu Fujii,Haruyuki Iefuji
标识
DOI:10.1080/09168451.2019.1571896
摘要
Adenosine kinase (ADO1)-deficient mutants can be obtained from cordycepin-resistant strains, and the disruption of ADO1 causes S-adenosylmethionine (SAM) accumulation. To breed a high-SAM-accumulating yeast strain without genetic manipulation for industrial purposes, we bred a cordycepin-resistant strain using sake yeast kyokai No. 9 as the parent strain with a mutation in adenosine kinase (ADO1) and acquired high-SAM-accumulating strain. In the bred strain (NY9-10), a single mutation (T258I) was present in the ADO1, and this mutation site is an ATP binding site and is highly conserved during evolution. Moreover, it was suggested that high accumulation of SAM and cordycepin resistance in NY9-10 was due to functional deficiency of ADO1 by this mutation. This strain is not a genetically-modified organism and can be employed for use in the food and medicine industry such as mass production and sake making.
科研通智能强力驱动
Strongly Powered by AbleSci AI