Huang Xinyi, Xu Ying, Zhang Yang, Liu Ji, Luo Shao, Wu Jinmei
College of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212018, China.
The Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang 212018, China.
Saudi J Biol Sci. 2018 Dec;25(8):1817-1825. doi: 10.1016/j.sjbs.2018.07.004. Epub 2018 Jul 9.
Insects, including silkworms, can protect themselves from exotic invasions by innate immune responses. In the immune response of Drosophila, the activation of Toll receptors is strictly dependent on the product of Spatzle. In this study, we cloned the 1567 bp BmSpz4 cDNA which contained a complete 1386 bp open reading frame, encoding 461 amino acids, out of which the forgoing 19 residues were signal peptide. The result of the cDNA sequencing showed that we found a longer transcript than the one included in large scale full-Length cDNA sequencing data by Yoshitaka Suetsugu et al. in 2013. Several spliced variants of BmSpz4 have been found, based on our preliminary results. It was shown by the RT-PCR that BmSpz4 was expressed highest in the head, lower in the integument and testis. The expression of BmSpz4 in the integument of silkworm was upregulated by formalin-inactivated Gram-positive bacteria and fungi but not by Gram-negative bacteria, when compared to the control group of PBS injection. This phenomenon was the same as the one found in the Toll signaling pathway of Drosophila. In addition, the result of double-stranded RNA interference of BmSpz4 also demonstrated that it had a corresponding interference effect on the expression of the integument antimicrobial peptides induced by bacillus and yeast. Thus, it may be concluded that BmSpz4 plays an important role in the innate immunity against microbe infection in the integument of silkworm, .
包括家蚕在内的昆虫可以通过先天免疫反应保护自己免受外来入侵。在果蝇的免疫反应中,Toll受体的激活严格依赖于Spatzle的产物。在本研究中,我们克隆了1567 bp的BmSpz4 cDNA,其包含一个完整的1386 bp开放阅读框,编码461个氨基酸,其中前19个残基为信号肽。cDNA测序结果表明,我们发现了一个比Yoshitaka Suetsugu等人在2013年大规模全长cDNA测序数据中包含的转录本更长的转录本。基于我们的初步结果,已发现BmSpz4的几种剪接变体。RT-PCR结果表明,BmSpz4在头部表达最高,在体壁和睾丸中表达较低。与注射PBS的对照组相比,家蚕体壁中BmSpz4的表达在经福尔马林灭活的革兰氏阳性菌和真菌刺激下上调,但在革兰氏阴性菌刺激下未上调。这种现象与在果蝇Toll信号通路中发现的现象相同。此外,BmSpz4的双链RNA干扰结果也表明,它对芽孢杆菌和酵母诱导的体壁抗菌肽的表达有相应的干扰作用。因此,可以得出结论,BmSpz4在蚕体壁对微生物感染的先天免疫中起重要作用。