Department of Entomology, College of Agriculture, Food and Environment, University of Kentucky, Lexington, KY 40546.
Proc Natl Acad Sci U S A. 2024 Dec 3;121(49):e2411286121. doi: 10.1073/pnas.2411286121. Epub 2024 Nov 26.
Broad complex (Br-C) and eip93F (E93) transcription factors promote insect metamorphosis from larva to pupa and from pupa to adult, respectively. Recently, chronologically inappropriate morphogenesis (Chinmo) has been proposed as a larval specifier in r. However, whether Chinmo is required for larval maintenance in lepidopteran insects, the underlying mechanisms involved in maintaining the larval stage, and its interactions with the JH signaling pathway are not well understood. Here, we used a binary transgenic CRISPR/Cas9 system to knockout and (primary response gene in the JH signaling pathway) in the fall armyworm (FAW). knockout induced premature metamorphosis only after L5 (penultimate), whereas and double knockout induced premature metamorphosis in L3. Sequencing and differential gene expression (DEG) analysis of RNA isolated from mutants and single-cell multiome ATAC analysis of , , and and double knockout Sf9 cells revealed that Chinmo participates in chromatin modifications that prevent the promoter accessibility and expression of metamorphosis promoting genes. These results suggest that Chinmo is a larval specifier that plays a major role in preventing metamorphosis in early larval stages by controlling chromatin accessibility near the promoters of genes such as and required for pupal and adult development.
广泛复杂 (Br-C) 和 eip93F (E93) 转录因子分别促进昆虫从幼虫到蛹和从蛹到成虫的变态。最近,有人提出时序不当形态发生 (Chinmo) 是 r 中的幼虫决定因素。然而,Chinmo 是否需要在鳞翅目昆虫中维持幼虫阶段,维持幼虫阶段所涉及的潜在机制,以及它与 JH 信号通路的相互作用尚不清楚。在这里,我们使用了一种二进制转基因 CRISPR/Cas9 系统来敲除家蚕 (FAW) 中的 和 (JH 信号通路中的主要反应基因)。 敲除仅在 L5(倒数第二)后诱导过早变态,而 和 双敲除在 L3 诱导过早变态。从突变体中分离的 RNA 的测序和差异基因表达 (DEG) 分析和 和 双敲除 Sf9 细胞的单细胞多组 ATAC 分析表明,Chinmo 参与了染色质修饰,防止了促进变态的基因的启动子可及性和表达。这些结果表明,Chinmo 是一种幼虫决定因素,通过控制如 和 等蛹和成虫发育所需基因的启动子附近的染色质可及性,在早期幼虫阶段主要发挥阻止变态的作用。