桑蚕停经诱导的光周期现象

IF 0.9 4区 生物学 Q3 ZOOLOGY Zoological Science Pub Date : 2024-04-01 DOI:10.2108/zs230036
Isamu Shimizu
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引用次数: 0

摘要

家蚕具有诱导胚胎停育的光周期反应(PR)。本文全面综述了有关家蚕光周期反应的文献,从早期的种群研究到近期的分子机制研究。Makita Kogure(1933 年)对 PR 进行了广泛的研究,发表了一篇关于昆虫光周期的开创性论文。20 世纪 70 年代和 80 年代,人工饲料被开发出来,营养对 PR 的影响得到了很好的记录。对家蚕的光周期感光器进行了从器官到分子水平的研究。培养实验证明,光周期诱导可在分离的脑(Br)-食管下神经节(SG)复合体(CC-Corpora allata,CA)中进行编程。PR 需要食物中的维生素 A,这表明光周期接收过程中涉及到了光蛋白色素,并从脑中克隆出了编码光蛋白色素(Boceropsin)的 cDNA。在家蚕中,有关产生和分泌休眠激素(DH)的效应系统也得到了广泛的研究。DH 在 SG 的一对后部细胞中产生,通过心神经细胞运送到 CC,并最终释放到血淋巴中。有研究认为,GABA能和Corazonin(Crz)信号通路可能参与了DH分泌的控制。GABA转运体(GAT)和昼夜节律时钟基因的敲除(KO)实验表明,GAT通过昼夜节律控制在PR中发挥着关键作用。提出了一个从母体光周期光接收到 DH 分泌的 PR 机制模型。
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Photoperiodism of Diapause Induction in the Silkworm, Bombyx mori.
The silkworm Bombyx mori exhibits a photoperiodic response (PR) for embryonic diapause induction. This article provides a comprehensive review of literature on the silkworm PR, starting from early works on population to recent studies uncovering the molecular mechanism. Makita Kogure (1933) conducted extensive research on the PR, presenting a pioneering paper on insect photoperiodism. In the 1970s and 80s, artificial diets were developed, and the influence of nutrition on PR was well documented. The photoperiodic photoreceptor has been investigated from organ to molecular level in the silkworm. Culture experiments demonstrated that the photoperiodic induction can be programmed in an isolated brain (Br)-subesophageal ganglion (SG) complex with corpora cardiaca (CC)-corpora allata (CA). The requirement of dietary vitamin A for PR suggests the involvement of opsin pigment in the photoperiodic reception, and a cDNA encoding an opsin (Boceropsin) was cloned from the brain. The effector system concerning the production and secretion of diapause hormone (DH) has also been extensively investigated in the silkworm. DH is produced in a pair of posterior cells of SG, transported to CC by nervi corporis cardiaci, and ultimately released into the hemolymph. Possible involvement of GABAergic and corazonin (Crz) signal pathways was suggested in the control of DH secretion. Knockout (KO) experiments of GABA transporter (GAT) and circadian clock genes demonstrated that GAT plays a crucial role in PR through circadian control. A model outlining the PR mechanism, from maternal photoperiodic light reception to DH secretion, has been proposed.
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来源期刊
Zoological Science
Zoological Science 生物-动物学
CiteScore
1.70
自引率
11.10%
发文量
59
审稿时长
1 months
期刊介绍: Zoological Science is published by the Zoological Society of Japan and devoted to publication of original articles, reviews and editorials that cover the broad field of zoology. The journal was founded in 1984 as a result of the consolidation of Zoological Magazine (1888–1983) and Annotationes Zoologicae Japonenses (1897–1983), the former official journals of the Zoological Society of Japan. Each annual volume consists of six regular issues, one every two months.
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