刺胞菌的分子生物学和发育生物学——基本方面和系统发育意义。

Australian journal of biotechnology Pub Date : 1990-10-01
D J Miller, P Harrison
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引用次数: 0

摘要

刺胞动物通常被认为是最原始的真生动物。因此,它们对后生动物的发育和进化的比较研究具有相当大的兴趣。分子技术在刺胞动物中的应用可以为刺胞动物门和真生动物之间的发育过程和系统发育关系提供重要的见解。本文综述了针叶珊瑚分子生物学和发育生物学的最新研究进展,重点介绍了大堡礁地区的热带硬核珊瑚和软珊瑚。组蛋白基因簇的核苷酸测序明确表明刺胞动物是典型的真生动物。重复序列分析已应用于鹿角珊瑚,并暗示了一个主要的分歧,这与精子超微结构的差异相对应。最近对珊瑚的发育研究表明,一些物种有一种不寻常的胚层形成方法。与这一过程以及其他重要发育阶段相关的分子事件目前正在研究中。其他目前的研究兴趣领域,包括以pcr为基础的刺针动物系统发育研究的目标,被强调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular and developmental biology of the Cnidaria--basic aspects and phylogenetic implications.

Cnidarians are generally considered to be the most primitive group of eumetazoans. They are therefore of considerable interest for comparative studies of metazoan development and evolution. The application of molecular techniques to cnidarians can provide important insights into developmental processes and phylogenetic relationships both within the phylum Cnidaria and among the eumetazoa. This paper reviews current knowledge of molecular and developmental biology of cinidarians with particular emphasis on tropical scleractinian corals and soft corals from the Great Barrier Reef region. Nucleotide sequencing of the histone gene cluster has unequivocally established that cnidarians are typical eumetazoans. Repeated sequence analysis has been applied to the staghorn corals, and implies a major divergence within this group, which corresponds with differences in sperm ultrastructure. Recent developmental studies of corals have indicated that some species have an unusual method of germ layer formation. Molecular events associated with this process, and with other important developmental stages, are currently under investigation. Other areas of current research interest, including targets for PCR-based investigations into cnidarian phylogeny, are highlighted.

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