He Qianyu, Zhang Yuanxi
Heilongjiang Provincial Key Laboratory of Environmental Microbiology and Recycling of Argo-Waste in Cold Region, College of Life Science and Biotechnology, Heilongjiang Bayi Agricultural University, Daqing, China.
Daqing Municipal Ecology and Environment Bureau, Daqing, China.
Front Physiol. 2022 Apr 27;13:905441. doi: 10.3389/fphys.2022.905441. eCollection 2022.
Insect life cycle is coordinated by hormones and their downstream effectors. Krüppel homolog1 (Kr-h1) is one of the crucial effectors which mediates the actions of the two critical hormones of insects, the juvenile hormone (JH) and 20-hydroxyecdysone (20E). It is a transcription factor with a DNA-binding motif of eight CH zinc fingers which is found to be conserved among insect orders. The expression of is fluctuant during insect development with high abundance in juvenile instars and lower levels in the final instar and pupal stage, and reappearance in adults, which is governed by the coordination of JH, 20E, and miRNAs. The dynamic expression pattern of is closely linked to its function in the entire life of insects. Over the past several years, accumulating studies have advanced our understanding of the role of during insect development. It acts as a universal antimetamorphic factor in both hemimetabolous and holometabolous species by directly inhibiting the transcription of 20E signaling genes () and (), and steroidogenic enzyme genes involved in ecdysone biosynthesis. Meanwhile, it promotes vitellogenesis and ovarian development in the majority of studied insects. In addition, Kr-h1 regulates insect behavioral plasticity and caste identity, neuronal morphogenesis, maturation of sexual behavior, as well as embryogenesis and metabolic homeostasis. Hence, Kr-h1 acts as a cornerstone regulator in insect life.
昆虫的生命周期由激素及其下游效应因子协调。Krüppel同源物1(Kr-h1)是关键效应因子之一,它介导昆虫两种关键激素,即保幼激素(JH)和20-羟基蜕皮激素(20E)的作用。它是一种转录因子,具有八个CH锌指的DNA结合基序,在昆虫目中发现是保守的。其表达在昆虫发育过程中呈波动变化,在幼虫龄期丰度高,在末龄幼虫和蛹期水平较低,在成虫期再次出现,这受JH、20E和微小RNA的协调控制。其动态表达模式与其在昆虫整个生命过程中的功能密切相关。在过去几年中,越来越多的研究增进了我们对其在昆虫发育过程中作用的理解。它在渐变态和全变态物种中均作为一种普遍的抗变态因子,通过直接抑制20E信号基因()和()以及参与蜕皮激素生物合成的类固醇生成酶基因的转录来发挥作用。同时,它在大多数已研究的昆虫中促进卵黄发生和卵巢发育。此外,Kr-h1调节昆虫的行为可塑性和品级特征、神经元形态发生、性行为成熟以及胚胎发生和代谢稳态。因此,Kr-h1在昆虫生命中起着基石调节因子的作用。