Department of Molecular Biology, Colorado College, Colorado Springs, Colorado.
The Stefan Angelov Institute of Microbiology, Bulgarian Academy of Science, Sofia, Bulgaria.
Yeast. 2020 Feb;37(2):237-245. doi: 10.1002/yea.3446. Epub 2020 Jan 6.
The methylotrophic yeasts Ogataea (Hansenula) polymorpha and Komagataella phaffii (Pichia pastoris) have important industrial applications and are models for several biological processes including peroxisome biology and methanol metabolism. We examined the carbon source requirements for mating-type (MAT) switching and mating in both species. Haploid strains of O. polymorpha and K. phaffii are homothallic, and switch MAT by a flip/flop mechanism in which a chromosomal region containing the MAT genes undergoes an inversion. MAT switching is induced by nitrogen starvation in both species and can be detected 4-6 hr after induction. Both switching and mating require a utilizable carbon source that can be either fermentable or nonfermentable. We further observed that although methanol can be used as a sole carbon source in both species, it does not support the induction of MAT switching or mating. Our results provide insight into the nutritional cues that influence entry into sexual processes in methylotrophic yeasts that undergo flip/flop MAT switching.
甲醇营养型酵母异常汉逊酵母(汉逊酵母属)和毕赤酵母(巴斯德毕赤酵母)具有重要的工业应用价值,是几种生物学过程的模型,包括过氧化物酶体生物学和甲醇代谢。我们研究了这两种酵母的交配型(MAT)转换和交配所需的碳源。异常汉逊酵母和毕赤酵母的单倍体菌株是同宗配合的,通过一种倒位/易位机制来转换 MAT,其中包含 MAT 基因的染色体区域发生倒位。两种酵母的 MAT 转换都受氮饥饿诱导,可以在诱导后 4-6 小时检测到。MAT 转换和交配都需要可利用的碳源,该碳源可以是可发酵的也可以是非发酵的。我们还观察到,尽管甲醇可以作为这两种酵母的唯一碳源,但它不支持 MAT 转换或交配的诱导。我们的研究结果为影响经历倒位/易位 MAT 转换的甲醇营养型酵母进入有性过程的营养线索提供了见解。