International Journal of Molecular Sciences (Sep 2019)

Study on the Role of <i>Cytc</i> in Response to BmNPV Infection in Silkworm, <i>Bombyx mori</i> (Lepidoptera)

  • Xue-Yang Wang,
  • Kang-Hui Wu,
  • Hui-Lin Pang,
  • Ping-Zhen Xu,
  • Mu-Wang Li,
  • Guo-Zheng Zhang

DOI
https://doi.org/10.3390/ijms20184325
Journal volume & issue
Vol. 20, no. 18
p. 4325

Abstract

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Bombyx mori nucleopolyhedrovirus (BmNPV) is one of the primary pathogens of the silkworm. Cytochrome c (cytc) showed a significant response to BmNPV infection in our previous transcriptome study. However, little is known about the role of Bombyx mori cytc (Bmcytc) in resistance to BmNPV infection. In this study, the expression levels analysis of Bmcytc showed stable expression levels in selected tissues of the resistant strain AN following BmNPV infection, while there was downregulation in the susceptible strain p50, except in the malpighian tubule. To further study the role of Bmcytc in viral infection, Bmcytc was knocked down with siRNA in vitro, resulting in significant downregulation of selected downstream genes of the mitochondrial pathway, including Bmapaf, Bmcaspase-Nc, and Bmcaspase-1; this was also confirmed by overexpression of Bmcytc using the pIZT/V5-His-mCherry insect vector, except Bmcaspase-1. Moreover, knockdown of Bmcytc significantly promoted the infection process of BmNPV in vitro, while the infection was inhibited by overexpression of Bmcytc at the early stage and subsequently increased rapidly. Based on these results, we concluded that Bmcytc plays a vital role in BmNPV infection by regulating the mitochondrial apoptosis pathway. Our work provides valuable data for the clarification of the mechanism of silkworm resistance to BmNPV infection.

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