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The Effects of Destruxin A on Relish and Rel Gene Regulation to the Suspected Immune-Related Genes of Silkworm

机译:Destruxin A对家蚕疑似免疫相关基因的风味和Rel基因调控的影响

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Destruxin A (DA), a cyclodepsipeptidic mycotoxin of entomopathogenic fungus, Metarhizium anisopliae , has anti-immunity activity against insects, but the mechanism of immune regulation is not clear yet. In our previous experiment, the significant expression changes of Bm_nscaf2838_045 , Bm_nscaf2674_066 , and Bm_nscaf2767_133 genes in a silkworm’s hemocytes were found, which suggested that these genes might be involved in insect’s innate immunity. In the current experiment, the silkworm cell line Bm12 was used to survey the expression levels of these genes after the cells were treated with DA and the transcription factors BmRel , BmRelish1 and BmRelish2 were silenced by specific siRNA. The results indicated that, after the cells were treated by DA, the gene expression level of BmRelish2 was significantly downregulated, but BmRel and BmRelish1 were not changed. The results also showed that the gene expression levels of Bm_nscaf2838_045 and Bm_nscaf2674_066 had similar phenomena, i.e., downregulation with individual BmRelish1 gene silence or DA treatment, upregulation with combination of BmRelish1 gene silence and DA treatment, upregulation with individual BmRelish2 gene silence, and downregulation with combination of BmRelish2 gene silence plus DA treatment, but no changes in the BmRel gene silence combined with DA treatment. For the Bm_nscaf2767_133 gene, the downregulated expressions were found in individual BmRelish2 gene silence or DA treatment, upregulation in the combination treatment of BmRelish2 gene silence plus DA, and the individual treatment of BmRel or BmRelish1 silence. It is suggested that expressions of the Bm_nscaf2838_045 and Bm_nscaf2674_066 genes are closely related to the Imd signal pathway, but Bm_nscaf2767_133 genes might involve in both Toll and Imd pathways. Furthermore, the BmRelish1 gene acts as an activator and the BmRelish2 gene acts as a repressor for both Bm_nscaf2838_045 and Bm_nscaf2674_066 gene expressions. It also implies that DA may participate in the splicing process of BmRelish where BmRelish2 was promoted. Our research will provide new insights on the understanding of the activity mechanisms of destruxins.
机译:昆虫病原真菌环孢霉菌的环二肽真菌毒素Destruxin A(DA)具有抗昆虫免疫活性,但免疫调节的机制尚不清楚。在我们之前的实验中,发现了Bm_nscaf2838_045,Bm_nscaf2674_066和Bm_nscaf2767_133基因在蚕的血细胞中有明显的表达变化,这表明这些基因可能与昆虫的先天免疫力有关。在目前的实验中,用家蚕细胞系Bm12进行DA处理并用特异性siRNA沉默转录因子BmRel,BmRelish1和BmRelish2后,观察这些基因的表达水平。结果表明,DA处理后,BmRelish2的基因表达水平显着下调,而BmRel和BmRelish1未改变。结果还表明,Bm_nscaf2838_045和Bm_nscaf2674_066的基因表达水平具有相似的现象,即单个BmRelish1基因沉默或DA处理下调,BmRelish1基因沉默和DA处理联合上调,单个BmRelish2基因沉默组合上调,与BmRelish2基因沉默组合上调。 BmRelish2基因沉默加DA治疗联合使用,但BmRel基因沉默联合DA治疗无变化。对于Bm_nscaf2767_133基因,在单独的BmRelish2基因沉默或DA处理,在联合处理BmRelish2基因沉默和DA以及单独处理BmRel或BmRelish1沉默中发现表达下调。提示Bm_nscaf2838_045和Bm_nscaf2674_066基因的表达与Imd信号通路密切相关,但Bm_nscaf2767_133基因可能同时参与Toll和Imd通路。此外,BmRelish1基因充当激活子,而BmRelish2基因充当Bm_nscaf2838_045和Bm_nscaf2674_066基因表达的阻遏物。这也意味着DA可能参与了BmRelish2推广的BmRelish的剪接过程。我们的研究将提供对了解destruxins的活动机制的新见解。

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