生物
基因敲除
内复制
剪接体
细胞生物学
细胞周期
基因
卵母细胞
调节器
RNA剪接
基因表达
选择性拼接
基因表达调控
遗传学
RNA干扰
细胞
胞质分裂
适应(眼睛)
过渡(遗传学)
卵子发生
小RNA
昆虫
卵泡
作者
Haoli Gao,Xiaowei Yuan,Jiawen Du,Fumin Shi,Tianhong Xu,Tianshun He,Zewen Liu
标识
DOI:10.1111/1744-7917.70232
摘要
During insect oogenesis, follicular cells (FCs) typically undergo the endocycle to become polyploid, thereby supporting oocyte development. The brown planthopper (BPH, Nilaparvata lugens), one of the most destructive rice pests, exhibits remarkable fecundity. However, the polyploidization of FCs and its regulatory mechanisms remain poorly understood. Here, we demonstrate that 92.3% of FCs become binucleate via endomitosis at stage 4 of oogenesis, followed by a significant increase in DNA content through endoreplication at stage 5. Knockdown of fizzy-related protein (Fzr), a key regulator of the mitosis-to-endocycle transition, disrupted the expression of cell cycle-related genes and caused a marked reduction in both binucleate FC numbers and DNA content, resulting in ovarian malformation and impaired egg development. Gene expression analyses revealed that Fzr knockdown caused aberrant expression and alternative splicing of genes related to spliceosome function and energy metabolism. Furthermore, these alterations appear to be at least partially independent of the polyploidization process. Our findings reveal a two-step polyploidization mechanism in BPH reproduction, offering insights into the evolutionary adaptation of reproductive strategies in insect pests. Additionally, this work advances our understanding of the molecular mechanisms underlying cell cycle transitions and establishes a foundation for future studies on insect reproduction and pest management strategies.
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