Guangdong Provincial Key Laboratory of Insect Development Biology and Applied Technology, Institute of Insect Science and Technology, School of Life Sciences, South China Normal University, Guangzhou 510000, China.
Guangmeiyuan R&D Center, Guangdong Provincial Key Laboratory of Insect Developmental Biology and Applied Technology, South China Normal University, Meizhou 514000, China.
Development. 2024 Oct 15;151(20). doi: 10.1242/dev.202518. Epub 2024 May 20.
Ecdysone-induced protein 93 (E93), known as the 'adult-specifier' transcription factor in insects, triggers metamorphosis in both hemimetabolous and holometabolous insects. Although E93 is conserved in ametabolous insects, its spatiotemporal expression and physiological function remain poorly understood. In this study, we first discover that, in the ametabolous firebrat Thermobia domestica, the previtellogenic ovary exhibits cyclically high E93 expression, and E93 mRNA is broadly distributed in previtellogenic ovarioles. E93 homozygous mutant females of T. domestica exhibit severe fecundity deficiency due to impaired previtellogenic development of the ovarian follicles, likely because E93 induces the expression of genes involved in ECM (extracellular matrix)-receptor interactions during previtellogenesis. Moreover, we reveal that in the hemimetabolous cockroach Blattella germanica, E93 similarly promotes previtellogenic ovarian development. In addition, E93 is also essential for vitellogenesis that is necessary to guarantee ovarian maturation and promotes the vitellogenesis-previtellogenesis switch in the fat body of adult female cockroaches. Our findings deepen the understanding of the roles of E93 in controlling reproduction in insects, and of E93 expression and functional evolution, which are proposed to have made crucial contributions to the origin of insect metamorphosis.
蜕皮激素诱导蛋白 93(E93),在昆虫中被称为“成虫特化”转录因子,可触发半变态和完全变态昆虫的变态。尽管 E93 在无变态的昆虫中是保守的,但它的时空表达和生理功能仍然知之甚少。在这项研究中,我们首先发现,在无变态的嗜热昆虫 Thermobia domestica 中,卵前体卵巢表现出周期性的高 E93 表达,并且 E93 mRNA 在卵前体卵巢管中广泛分布。由于卵巢滤泡的卵前体发育受损,T. domestica 的 E93 纯合突变雌性表现出严重的生育能力缺陷,这可能是因为 E93 诱导了 ECM(细胞外基质)-受体相互作用的基因在卵前体发育过程中的表达。此外,我们揭示了在半变态的德国蟑螂 Blattella germanica 中,E93 同样促进卵前体卵巢的发育。此外,E93 对于卵黄发生也是必不可少的,这对于保证卵巢成熟以及促进成年雌性蟑螂的卵黄发生-卵前体发育转换是必要的。我们的发现加深了对 E93 在控制昆虫生殖中的作用的理解,以及 E93 表达和功能进化的理解,这些进化被认为对昆虫变态的起源做出了至关重要的贡献。