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虹鳟(Oncorhynchus mykiss)胚胎发育过程中,前促生长抑素和生长抑素受体编码mRNA的差异表达与生长激素-胰岛素样生长因子系统的关系

Differential expression of preprosomatostatin- and somatostatin receptor-encoding mRNAs in association with the growth hormone-insulin-like growth factor system during embryonic development of rainbow trout (Oncorhynchus mykiss).

作者信息

Malkuch Heidi, Walock Chad, Kittilson Jeffery D, Raine Jason C, Sheridan Mark A

机构信息

Department of Biological Sciences, North Dakota State University, Stevens Hall, Fargo, ND 58105, USA.

出版信息

Gen Comp Endocrinol. 2008 Nov-Dec;159(2-3):136-42. doi: 10.1016/j.ygcen.2008.08.005. Epub 2008 Aug 26.

Abstract

Rainbow trout were used to evaluate the relationship between the somatostatin (SS) signaling and the growth hormone (GH)-insulin-like growth factor (IGF) systems during pre-hatch and post-hatch embryonic development. The expression of preprosomatostatins (PPSS), SS receptors (SSTR), GH receptors (GHR), IGF-1, IGF-2, and IGF type 1 receptors (IGFR1) was examined in various regions at the eyed-egg (29 days post-fertilization, dpf;), post-hatch (53dpf), swim-up (68dpf), and complete yolk-absorbed (90dpf) stages. In head, PPSSI mRNA abundance increased during development while that of PPSSII' decreased and that of PPSSII'' remained unchanged. In body and tail, mRNA abundance of all PPSSs remained unchanged except that of PPSSII'' which declined in the tail. SSTR expression increased as development progressed in all regions with the exception of SSTR1A mRNA which remained unchanged. mRNA levels of GHR1 declined in all regions of post-hatch embryos, whereas those of GHR2 remained unchanged. Expression of IGF-1 and IGF-2 in head and tail regions increased immediately after hatching, and then declined, whereas the expression of neither IGF changed during development in the body. The expression of IGFR1 mRNAs declined in all regions, reaching their lowest levels at 90dpf, with the exception of IGFR1A mRNA in the body which remained unchanged. The general decline in the expression of GH-IGF system components during development appears inversely related to a general increase in the expression of SS system elements, and suggests that these two systems interact to regulate the tissue expansion and tissue regression of embryogenesis.

摘要

虹鳟鱼被用于评估孵化前和孵化后胚胎发育过程中生长抑素(SS)信号与生长激素(GH)-胰岛素样生长因子(IGF)系统之间的关系。在眼点期(受精后29天,dpf)、孵化后(53dpf)、上浮期(68dpf)和卵黄完全吸收期(90dpf)的各个区域检测前生长抑素原(PPSS)、SS受体(SSTR)、GH受体(GHR)、IGF-1、IGF-2和IGF 1型受体(IGFR1)的表达。在头部,PPSSI mRNA丰度在发育过程中增加,而PPSSII'的丰度下降,PPSSII''的丰度保持不变。在身体和尾部,所有PPSS的mRNA丰度保持不变,但PPSSII''在尾部下降。除SSTR1A mRNA保持不变外,SSTR表达在所有区域随着发育进程而增加。孵化后胚胎所有区域的GHR1 mRNA水平下降,而GHR2的水平保持不变。头部和尾部区域的IGF-1和IGF-2表达在孵化后立即增加,然后下降,而身体中这两种IGF的表达在发育过程中均未改变。IGFR1 mRNA的表达在所有区域下降,在90dpf时达到最低水平,但身体中的IGFR1A mRNA保持不变。发育过程中GH-IGF系统成分表达的普遍下降似乎与SS系统元件表达的普遍增加呈负相关,这表明这两个系统相互作用以调节胚胎发生的组织扩张和组织退化。

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