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Identification of 20-hydroxyecdysone-inducible genes from larval brain of the silkworm, bombyx mori, and their expression analysis

机译:家蚕幼虫脑内20-羟基蜕皮激素诱导基因的鉴定及其表达分析

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摘要

The insect brain secretes prothoracicotropic hormone (PTTH), which stimulates the prothoracic gland to synthesize ecdysone. The active metabolite of ecdysone, 20-hydroxyecdysone (20E), works through ecdysone receptor (EcR) and ultraspiracle (USP) to initiate molting and metamorphosis by regulating downstream genes. Previously, we found that EcR was expressed in the PTTH-producing neurosecretory cells (PTPCs) in larval brain of the silkworm Bombyx mori, suggesting that PTPCs function as the master cells of development under the regulation of 20E. To gain a better understanding of the molecular mechanism of the 20E control of PTPCs, we performed a comprehensive screening of genes induced by 20E using DNA microarray with brains of day-2 fifth instar silkworm larvae. Forty-one genes showed greater than twofold changes caused by artificial application of 20E. A subsequent semiquantitative screening identified ten genes upregulated by 20E, four of which were novel or not previously identified as 20E-response genes. Developmental profiling determined that two genes, UP4 and UP5, were correlated with the endogenous ecdysteroid titer. Whole-mount in situ hybridization showed exclusive expression of these two genes in two pairs of cells in the larval brain in response to 20E-induction, suggesting that the cells are PTPCs. BLAST searches revealed that UP4 and UP5 are Bombyx homologs of vrille and tarsal-less, respectively. The present study identifies 20E-induced genes that may be involved in the ecdysone signal hierarchies underlying pupal-adult development and/or the 20E regulation of PTPCs. © 2012 Zoological Society of Japan.
机译:昆虫的大脑分泌促前列腺激素(PTTH),该激素刺激胸腺合成蜕皮激素。蜕皮激素的活性代谢产物20-羟基蜕皮激素(20E)通过蜕皮激素受体(EcR)和超螺旋体(USP)起作用,通过调节下游基因启动蜕皮和变态。以前,我们发现EcR在家蚕幼虫大脑中产生PTTH的神经分泌细胞(PTPC)中表达,表明PTPC在20E的调节下作为发育的主要细胞。为了更好地了解PTPC的20E控制的分子机制,我们使用DNA微阵列对第2天第五龄家蚕幼虫的大脑进行了20E诱导基因的全面筛选。 41个基因显示出人工施加20E引起的大于两倍的变化。随后的半定量筛选确定了20E上调的十个基因,其中四个是新的或以前未鉴定为20E反应基因。发育谱分析确定了两个基因UP4和UP5与内生蜕皮甾体滴度相关。整体原位杂交表明,响应20E诱导,这两个基因在幼虫大脑的两对细胞中排他性表达,表明这些细胞是PTPC。 BLAST搜索表明,UP4和UP5分别是Vrille和Tars-less的Bombyx同源物。本研究确定了20E诱导的基因,其可能参与signal成人发育和/或PTPC的20E调节所依据的蜕皮激素信号层次。 ©2012日本动物学会。

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