USDA, Agricultural Research Service, Center for Grain and Animal Health Research, Manhattan, KS 66502, United States.
Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, NC 27695, United States.
J Insect Physiol. 2018 May-Jun;107:104-109. doi: 10.1016/j.jinsphys.2018.03.004. Epub 2018 Mar 15.
The Tribolium castaneum vermilion gene encodes tryptophan 2,3-dioxygenase, a pivotal enzyme in the ommochrome pathway that is required for proper pigmentation of the eye. A white-eyed mutant strain of T. castaneum, vermilion (v), lacks eye pigmentation due to a deletion of unknown size that removes all but the 3'-end of the vermilion gene. To create a more defined mutation in vermilion, the CRISPR/Cas9-nuclease system was used to target wild type vermilion in preblastoderm T. castaneum embryos. As adults, all injected beetles had wild type (black) eye pigmentation; however, when outcrossed to v mates, one cross produced 19% white-eyed offspring. When the vermilion locus of these offspring was analyzed by target-site sequencing, it was determined that white-eyed individuals had a 2 bp deletion that resulted in a frame-shift mutation, presumably producing a nonfunctional enzyme. Interestingly, some of their black-eyed siblings also had a small deletion of 6 bp, but the resultant loss of two amino acids had no apparent impact on enzyme function. To establish a mutant strain homozygous for the CRISPR-induced knock-out allele, a CRISPR positive G male was crossed to wild type females. Their progeny were self-crossed, and white-eyed progeny were used to establish the new strain. This mutant strain is herein named vermilion and will be used in future work in addition to or in place of v.
赤拟谷盗 vermilion 基因编码色氨酸 2,3-双加氧酶,这是一种在眼色素形成过程中至关重要的酶,对于眼睛的正常色素沉着是必需的。赤拟谷盗的一个白眼突变体品系 vermilion(v),由于未知大小的缺失,除了 vermilion 基因的 3'端之外,所有基因都被删除,因此缺乏眼色素。为了在 vermilion 中创建一个更明确的突变,使用了 CRISPR/Cas9 核酸酶系统来靶向野生型赤拟谷盗胚胎的前原肠胚期的 vermilion。作为成虫,所有注射的甲虫都具有野生型(黑色)的眼色素;然而,当与 v 交配的个体进行杂交时,有 19%的后代是白眼。当对这些后代的 vermilion 基因座进行靶向测序分析时,发现白眼个体有 2bp 的缺失,导致移码突变,可能产生无功能的酶。有趣的是,它们的一些黑眼睛兄弟姐妹也有 6bp 的小缺失,但缺失的两个氨基酸对酶功能没有明显影响。为了建立一个纯合 CRISPR 诱导敲除等位基因的突变体品系,将一个 CRISPR 阳性 G 雄性与野生型雌性杂交。它们的后代进行自交,然后选择白眼后代建立新的品系。这个突变体品系命名为 vermilion,将在未来的工作中与 v 一起使用,或者替代 v 使用。