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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Trehalose metabolism in the blue crab Callinectes sapidus: Isolation of multiple structural cDNA isoforms of trehalose-6-phosphate synthase and their expression in muscles
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Trehalose metabolism in the blue crab Callinectes sapidus: Isolation of multiple structural cDNA isoforms of trehalose-6-phosphate synthase and their expression in muscles

机译:蓝蟹Callinectes sapidus中的海藻糖代谢:海藻糖6-磷酸合酶的多种结构cDNA亚型的分离及其在肌肉中的表达

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摘要

Adult blue crab Callinectes sapidus exhibit behavioral and ecological dimorphisms: females migrating from the low salinity water to the high salinity area vs. males remaining in the same areas. The flesh basal muscle of the swimming paddle shows a dimorphic color pattern in that levator (Lev) and depressor (Dep) of females tend to be much darker than those of males, while both genders have the same light colored remoter (Rem) and promoter (Pro). The full-length cDNA sequence of four structural isoforms of trehalose-6-phosphate synthase (TPS) is isolated from chela muscles of an adult female, C. sapidus. Two isoforms of the C. sapidus TPS encode functional domains of TPS and trehalose-6-phosphorylase (TPP) in tandem as a fused gene product of Escherichia coli Ost A and Ost B. The other two isoforms contain only a single TPS domain. In both males and females, the darker (Lev. +. Dep) muscles exhibit greater amounts of trehalose, TPS and trehalase activities than the light colored (Rem. +. Pro). The fact that adult females show higher levels of trehalase activity in the basal muscles and of glucose in Lev. +. Dep than those of adult males suggests that there may be a metabolic dimorphism. Moreover, the involvement of trehalose in energy metabolism that was examined under the condition of strenuous swimming activity mimicked in adult females demonstrates the intrinsic trehalose metabolism in Lev. +. Dep, which subsequently results in hemolymphatic hyperglycemia and hyperlactemia. Our data support that trehalose serves as an additional carbohydrate source of hemolymphatic hyperglycemia in this species. Behavioral and ecological dimorphisms of C. sapidus adults may be supported by a functional dimorphism in energy metabolism.
机译:成年蓝蟹Callinectes sapidus表现出行为和生态上的差异:雌性从低盐度水迁移到高盐度区域,而雄性则留在相同区域。游泳桨的肉基肌表现出双态的颜色模式,雌性的提肌(Lev)和压抑物(Dep)比雄性的深色得多,而雌性和雌性的提肌(Rem)和启动子的颜色相同。 (专业版)。海藻糖6-磷酸合酶(TPS)的四个结构同工型的全长cDNA序列是从成年雌性C. sapidus的螯肌中分离得到的。沙棘衣原体TPS的两个同工型作为大肠杆菌Ost A和Ost B的融合基因产物串联编码TPS和海藻糖6-磷酸化酶(TPP)的功能域。其他两个同工型仅包含一个TPS域。在男性和女性中,较深色的(Lev。+。Dep)肌肉比浅色的(Rem。+。Pro)肌肉具有更多的海藻糖,TPS和海藻糖酶活性。成年雌性在基底肌中显示出较高的海藻糖酶活性水平,而在列夫中则显示出较高的葡萄糖水平。 +。 Dep比成年男性的Dep暗示可能存在代谢二态性。此外,在成年女性模仿的剧烈游泳活动的条件下检查的海藻糖参与能量代谢证明了Lev中固有的海藻糖代谢。 +。 Dep,随后导致淋巴高血糖症和高乳酸血症。我们的数据支持海藻糖可作为该物种血淋巴高血糖的另一种碳水化合物来源。在能量代谢中,功能性双态性可能支持臭sa成虫的行为和生态双态性。

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