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首页> 外文期刊>American Zoologist >Characterization of EcR and RXR gene homologs and receptor expressionduring the molt cycle in the crab, Uca pugilator
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Characterization of EcR and RXR gene homologs and receptor expressionduring the molt cycle in the crab, Uca pugilator

机译:Uca pugilator蜕皮周期中EcR和RXR基因同源物和受体表达的表征

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摘要

Crustaceans have the remarkable ability to regenerate limbs. Unlike insects, crustaceans also continue to increase in body size with age, and new limb regeneration must occur in concert with the growth and reproductive activities of the adult. In the fiddler crab, Uca pugilator, regeneration consists of the formation of a blastema (limb primordium) from cells migrating into the site of the wound. Over a time course related to the physiology and growth cycle of the animal, these cells proliferate and differentiate into an intact miniature limb, which will then increase in size and emerge as a functional appendage with the nest molting of the body exoskeleton In arthropods, changes in gene expression mediating both growth (e.g., cuticular molting) and differentiation (e.g., insect metamorphosis) are regulated by ecdysteroids. We hypothesize that ecdysteroids and their receptors are also involved in the regulation of limb regeneration in crabs. To investigate this hypothesis, clones representing the crustacean ecdysteroid receptor have been isolated and are providing the basis for the development of nucleic acid and immunological probes to identify, at the tissue level, the pattern of receptor expression relative to changes in hormone titer during all stages of regeneration. In support of this hypothesis, we have detected the expression of the nuclear receptor genes encoding the ecdysteroid receptor at the earliest stages of blastemal development. We hare also shown that receptor transcript synthesis can be influenced by external factors (retinoid exposure) which disrupt Uca blastemal differentiation. These studies allow us to identify and characterize putative ecdysteroid target tissues. They begin to address the goal of defining how a common signal (e.g, circulating hormones) can influence a variety of discrete developmental programs.
机译:甲壳类动物具有显着的四肢再生能力。与昆虫不同,甲壳类动物的体型也会随着年龄的增长而不断增加,新的肢体再生必须与成年动物的生长和生殖活动协调进行。在Uca pugilator小提琴蟹中,再生包括细胞迁移到伤口部位后形成的胚泡(肢原基)。在与动物的生理和生长周期有关的时间过程中,这些细胞增殖并分化为完整的微型肢体,然后其大小会增加,并随着身体外骨骼的巢蜕变而作为功能性附属物出现。蜕皮类固醇调节介导生长(例如表皮蜕皮)和分化(例如昆虫变态)的基因表达。我们假设蜕皮类固醇及其受体也参与了蟹肢再生的调节。为了研究该假说,已分离出代表甲壳类蜕皮甾类受体的克隆,这些克隆为开发核酸和免疫学探针奠定了基础,以在组织水平上识别在各个阶段相对于激素效价变化的受体表达模式再生。为了支持这一假设,我们在胚盘发育的最早阶段检测到编码蜕皮甾类受体的核受体基因的表达。我们还发现,受体转录物的合成可能受外部因素(类维生素A暴露)的影响,这些因素会破坏Uca胚芽分化。这些研究使我们能够鉴定和表征推定的蜕皮甾类靶组织。他们开始解决定义共同信号(例如循环激素)如何影响各种离散发育程序的目标。

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