Back to Search Start Over

Study on anti-BmNPV mechanism of branched-chain amino acid aminotransferases in silkworm.

Authors :
Chen, Can
Chen, Liang
Liu, Xiaoyong
Ma, Shangshang
Chen, Keping
Source :
Developmental & Comparative Immunology. Jul2024, Vol. 156, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Bombyx mori nucleopolyhedrovirus (BmNPV) is the most important virus that threatens sericulture industry. At present, there is no effective treatment for BmNPV infection in silkworms, and lncRNA plays an important role in biological immune response and host-virus interaction, but there are relatively few studies in silkworms. In this study, the four midgut tissue samples of the resistance strain NB (NB) and susceptible strain 306 (306) and the NB and 306 continuously infected with BmNPV for 96 h are used for whole transcriptome sequencing to analyze the differences in the genetic background of NB and 306 and the differences after inoculation of BmNPV, and the significantly different mRNA, miRNA and lnRNA between NB and 306 after BmNPV inoculation were screened. By comparing NB and 306, 2651 significantly different mRNAs, 57 significantly different miRNAs and 198 significantly different lncRNAs were screened. By comparing NB and 306 after BmNPV inoculation, 2684 significantly different mRNAs, 39 significantly different miRNAs and 125 significantly different lncRNAs were screened. According to the significantly different mRNA, miRNA and lncRNA screened from NB and 306 and NB and 306 after virus inoculation, the mRNA-miRNA-lncRNA regulatory network was constructed before and after virus inoculation, and the BmBCAT-Bomo_chr7_8305-MSTRG.3236.2 regulatory axis was screened from them, and it was found that BmBCAT was not Bomo_chr7_8305 regulated in the genetic background, after viral infection, MSTRG.3236.2 competes for binding Bomo_chr7_8305 regulates BmBCAT. The whole transcriptome sequencing results were verified by qPCR and the time-series expression analysis was performed to prove the reliability of the regulatory network. The BmBCAT-Bomo_chr7_8305-MSTRG.3236.2 regulatory axis may play a potential role in the interaction between silkworms and BmNPV. These results provide new insights into the interaction mechanism between silkworms and BmNPV. • At present, there have been studies on small RNA regulation by using sensitive silkworm varieties, but no studies have conducted whole transcriptome analysis by comparing resistant and sensitive silkworm strans inoculated with virus. • The mRNA-miRNA-lncRNA ceRNA regulatory network was constructed, from which the BmBCAT-Bomo_chr7_8305-MSTRG.3236.2 regulatory axis was screened, and the whole transcriptome sequencing results were verified by qPCR and the time-series expression analysis was performed to prove the reliability of the regulatory network. • From the perspective of lncRNA to explain the significantly different genes, our research results may provide new clues to the molecular mechanism that reveals the interaction between silkworm and virus. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0145305X
Volume :
156
Database :
Academic Search Index
Journal :
Developmental & Comparative Immunology
Publication Type :
Academic Journal
Accession number :
176899670
Full Text :
https://doi.org/10.1016/j.dci.2024.105183