Research Institute of Applied Biology, Shanxi University, Taiyuan, Shanxi, 030006, China.
Research Institute of Applied Biology, Shanxi University, Taiyuan, Shanxi, 030006, China; Institute of Plant Protection, Shanxi Academy of Agricultural Science, Taiyuan, Shanxi, 030031, China.
Insect Biochem Mol Biol. 2018 Oct;101:124-130. doi: 10.1016/j.ibmb.2018.09.001. Epub 2018 Sep 6.
Chitinases, key enzymes involved in degradation of chitin, have been repeatedly shown to play an indispensable role during insect post-embryonic molting processes at stage transitions. However, how chitinases affect insect embryonic development remains to be analyzed. In this study, we investigated the role of chitinase 5-1 (LmCht5-1) during embryonic development of the hemimetabolous insect Locusta migratoria. LmCht5-1 transcript levels were high in pro-nymphs during late embryogenesis. The respective protein localized to both the pro-nymphal and, to a much lesser extent, the newly formed nymphal cuticle. After injection of double stranded RNA against LmCht5-1 into 8 days old embryos, LmCht5-1 transcripts were strongly reduced. Most of dsLmCht5-1-injected pro-nymphs failed to develop to first-instar nymphs and died at or before hatching. Histological analyzes showed that degradation of the pro-nymph cuticle was blocked in these animals. At the ultra-structural level, we found that LmCht5-1 was needed for the degradation of the lamellar procuticle, while the separation of the procuticle from the epicuticle and epidermis (apolysis) was independent of LmCht5-1 function. Taken together, our results indicate that LmCht5-1 and other yet unknown degrading enzymes act in parallel at distinct positions of the cuticle during molting of the pro-nymph to the first-instar nymph during locust embryogenesis.
几丁质酶是参与几丁质降解的关键酶,在昆虫胚胎后发育的蜕皮过程中,在各个龄期的转变中起着不可或缺的作用。然而,几丁质酶如何影响昆虫胚胎发育仍有待分析。在这项研究中,我们研究了半变态昆虫飞蝗几丁质酶 5-1(LmCht5-1)在胚胎发育过程中的作用。LmCht5-1 的转录本水平在胚胎后期的若虫中较高。相应的蛋白质定位于若虫和新形成的若虫表皮,尽管程度较低。用针对 LmCht5-1 的双链 RNA 注射 8 天大的胚胎后,LmCht5-1 的转录本被强烈减少。大多数 dsLmCht5-1 注射的若虫未能发育成第一龄若虫,并在孵化时或之前死亡。组织学分析表明,这些动物的若虫表皮的降解被阻断。在超微结构水平上,我们发现 LmCht5-1 是降解层状原表皮所必需的,而原表皮与表皮(表皮分离)的分离不依赖于 LmCht5-1 功能。总之,我们的结果表明,在飞蝗胚胎发育过程中,LmCht5-1 和其他未知的降解酶在若虫向第一龄若虫蜕皮过程中在表皮的不同位置平行作用。