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Single‐nucleus RNA sequencing reveals midgut cellular heterogeneity and transcriptional profiles in Bombyx mori cytoplasmic polyhedrosis virus infection.

Authors :
Fei, Shigang
Awais, Mian Muhammad
Zou, Jinglei
Xia, Junming
Wang, Yeyuan
Kong, Yibing
Feng, Min
Sun, Jingchen
Source :
Insect Science. Nov2024, p1. 14p. 7 Illustrations.
Publication Year :
2024

Abstract

The gut is not only used by insects as an organ for the digestion of food and absorption of nutrients but also as an important barrier against the invasion and proliferation of pathogenic microorganisms. <italic>Bombyx mori</italic> cytoplasmic polyhedrosis virus (BmCPV), an insect‐specific virus, predominantly colonizes the midgut epithelial cells of the silkworm, thereby jeopardizing its normal growth. However, there is limited knowledge of the cellular immune responses to viral infection and whether the infection is promoted or inhibited by different types of cells in the silkworm midgut. In this study, we used single‐nucleus RNA sequencing to identify representative enteroendocrine cells, enterocytes, and muscle cell types in the silkworm midgut. In addition, by analyzing the transcriptional profiles of various subpopulations in the infected and uninfected groups, we found that BmCPV infection suppresses the response of the antiviral pathways and induces the expression of <italic>BmHSP70</italic>, which plays a role in promoting BmCPV replication. However, certain immune genes in the midgut of the silkworm, such as <italic>BmLebocin3</italic>, were induced upon viral infection, and downregulation of <italic>BmLEB3</italic> using RNA interference promoted BmCPV replication in the midgut of <italic>B. mori</italic>. These results suggest that viral immune evasion and active host resistance coexist in BmCPV‐infected silkworms. We reveal the richness of cellular diversity in the midgut of <italic>B. mori</italic> larvae by single‐nucleus RNA sequencing analysis and provide new insights into the complex interactions between the host and the virus at the single‐cell level. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16729609
Database :
Academic Search Index
Journal :
Insect Science
Publication Type :
Academic Journal
Accession number :
180762084
Full Text :
https://doi.org/10.1111/1744-7917.13464