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在小龙虾蜕皮周期中寻找肝胰腺蜕皮类固醇反应基因:从单个基因到多基因性

Search for hepatopancreatic ecdysteroid-responsive genes during the crayfish molt cycle: from a single gene to multigenicity.

作者信息

Shechter Assaf, Tom Moshe, Yudkovski Yana, Weil Simy, Chang Sharon A, Chang Ernest S, Chalifa-Caspi Vered, Berman Amir, Sagi Amir

机构信息

Department of Life Sciences, Ben-Gurion University of the Negev, PO Box 653, Beer-Sheva 84105, Israel.

出版信息

J Exp Biol. 2007 Oct;210(Pt 20):3525-37. doi: 10.1242/jeb.006791.

Abstract

The expression of the vitellogenin gene of the red-claw crayfish Cherax quadricarinatus (CqVg) was previously demonstrated in male crayfish during an endocrinologically induced molt cycle. The hypothesis that this expression is under the direct control of ecdysteroids was tested in this study both in vivo and in vitro. Unlike vitellogenin of insects, CqVg was not found to be ecdysteroid-responsive. Thus, a multigenic approach was employed for the identification of other hepatopancreatic ecdysteroid-responsive genes by a cDNA microarray. For the purposes of this study, a multi-parametric molt-staging technique, based on X-ray detection of gastrolith growth, was developed. To identify ecdysteroid-responsive genes during premolt, the molt cycle was induced by two manipulations, 20-hydroxyecdysone administration and X-organ-sinus gland complex removal; both resulted in significant elevation of ecdysteroids. Two clusters of affected genes (129 and 122 genes, respectively) were revealed by the microarray. It is suggested that only genes belonging to similarly responsive (up- or downregulated) gene clusters in both manipulations (102 genes) could be considered putative ecdysteroid-responsive genes. Some of these ecdysteroid-responsive genes showed homology to genes controlling chitin metabolism, proteases and other cellular activities, while 56.8% were unknown. The majority of the genes were downregulated, presumably by an energetic shift of the hepatopancreas prior to ecdysis. The effect of 20-hydroxyecdysone on representative genes from this group was confirmed in vitro using a hepatopancreas tissue culture. This approach for ecdysteroid-responsive gene identification could also be implemented in other tissues for the elucidation of ecdysteroid-specific signaling pathways during the crustacean molt cycle.

摘要

先前已证明,在红螯螯虾(Cherax quadricarinatus,CqVg)的内分泌诱导蜕皮周期中,雄性螯虾会表达卵黄蛋白原基因。在本研究中,通过体内和体外实验对该表达受蜕皮类固醇直接控制这一假设进行了验证。与昆虫的卵黄蛋白原不同,未发现CqVg对蜕皮类固醇有反应。因此,采用多基因方法,通过cDNA微阵列鉴定肝胰腺中其他对蜕皮类固醇有反应的基因。为了本研究的目的,开发了一种基于胃石生长的X射线检测的多参数蜕皮分期技术。为了鉴定蜕皮前期对蜕皮类固醇有反应的基因,通过两种操作诱导蜕皮周期,即施用20-羟基蜕皮酮和切除X器官-窦腺复合体;两者均导致蜕皮类固醇显著升高。微阵列揭示了两组受影响的基因(分别为129个和122个基因)。建议只有在两种操作中属于类似反应(上调或下调)基因簇的基因(102个基因)才能被视为假定的蜕皮类固醇反应基因。这些蜕皮类固醇反应基因中的一些与控制几丁质代谢、蛋白酶和其他细胞活动的基因具有同源性,而56.8%的基因未知。大多数基因被下调,可能是由于蜕皮前肝胰腺的能量转移。使用肝胰腺组织培养在体外证实了20-羟基蜕皮酮对该组代表性基因的影响。这种鉴定蜕皮类固醇反应基因的方法也可应用于其他组织,以阐明甲壳类动物蜕皮周期中蜕皮类固醇特异性信号通路。

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