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硬骨鱼卵膜厚度的比较及其与ZP蛋白合成位点的关系。

Comparison of Egg Envelope Thickness in Teleosts and its Relationship to the Sites of ZP Protein Synthesis.

作者信息

Sano Kaori, Kawaguchi Mari, Katano Keita, Tomita Kenji, Inokuchi Mayu, Nagasawa Tatsuki, Hiroi Junya, Kaneko Toyoji, Kitagawa Takashi, Fujimoto Takafumi, Arai Katsutoshi, Tanaka Masaru, Yasumasu Shigeki

机构信息

Department of Chemistry, Faculty of Science, Josai University, Sakado, Saitama, Japan.

Department of Materials and Life Sciences, Faculty of Science and Technology, Sophia University, Chiyoda-ku, Tokyo, Japan.

出版信息

J Exp Zool B Mol Dev Evol. 2017 May;328(3):240-258. doi: 10.1002/jez.b.22729. Epub 2017 Feb 23.

Abstract

Teleost egg envelope generally consists of a thin outer layer and a thick inner layer. The inner layer of the Pacific herring egg envelope is further divided into distinct inner layers I and II. In our previous study, we cloned four zona pellucida (ZP) proteins (HgZPBa, HgZPBb, HgZPCa, and HgZPCb) from Pacific herring, two of which (HgZPBa and HgZPCa) were synthesized in the liver and two (HgZPBb and HgZPCb) in the ovary. In this study, we raised antibodies against these four proteins to identify their locations using immunohistochemistry. Our results suggest that inner layer I is constructed primarily of HgZPBa and Ca, whereas inner layer II consists primarily of HgZPBa. HgZPBb and Cb were minor components of the envelope. Therefore, the egg envelope of Pacific herring is primarily composed of liver-synthesized ZP proteins. A comparison of the thickness of the fertilized egg envelopes of 55 species suggested that egg envelopes derived from liver-synthesized ZP proteins tended to be thicker in demersal eggs than those in pelagic eggs, whereas egg envelopes derived from ovarian-synthesized ZP proteins had no such tendency. Our comparison suggests that the prehatching period of an egg with a thick egg envelope is longer than that of an egg with a thin egg envelope. We hypothesized that acquisition of liver-synthesized ZP proteins during evolution conferred the ability to develop a thick egg envelope, which allowed species with demersal eggs to adapt to mechanical stress in the prehatching environment by thickening the egg envelope, while pelagic egg envelopes have remained thin.

摘要

硬骨鱼的卵膜通常由一层薄的外层和一层厚的内层组成。太平洋鲱鱼卵膜的内层进一步分为不同的内层I和内层II。在我们之前的研究中,我们从太平洋鲱鱼中克隆了四种透明带(ZP)蛋白(HgZPBa、HgZPBb、HgZPCa和HgZPCb),其中两种(HgZPBa和HgZPCa)在肝脏中合成,另外两种(HgZPBb和HgZPCb)在卵巢中合成。在本研究中,我们制备了针对这四种蛋白的抗体,以便使用免疫组织化学方法确定它们的位置。我们的结果表明,内层I主要由HgZPBa和Ca构成,而内层II主要由HgZPBa组成。HgZPBb和Cb是卵膜的次要成分。因此,太平洋鲱鱼的卵膜主要由肝脏合成的ZP蛋白组成。对55个物种的受精卵膜厚度进行比较后发现,源自肝脏合成的ZP蛋白的卵膜在底栖卵中往往比在浮游卵中更厚,而源自卵巢合成的ZP蛋白的卵膜则没有这种趋势。我们的比较表明,卵膜厚的卵的孵化前期比卵膜薄的卵更长。我们推测,在进化过程中获得肝脏合成的ZP蛋白赋予了形成厚卵膜的能力,这使得产底栖卵的物种能够通过加厚卵膜来适应孵化前环境中的机械应力,而浮游卵的卵膜则一直保持较薄。

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