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海鞘中的生殖细胞战争:一个物种的精子会干扰另一个物种的受精过程。

Germ-cell warfare in ascidians: sperm from one species can interfere with the fertilization of a second species.

作者信息

Lambert C C

机构信息

Department of Biological Science, California State University, Fullerton 92834-6850, USA.

出版信息

Biol Bull. 2000 Feb;198(1):22-5. doi: 10.2307/1542799.

Abstract

Ascidians (invertebrate chordates) are very abundant in many marine subtidal areas. They often live in dense multispecies clumps; thus, interspecific competition for space may be intense. Although most noncolonial species are broadcast spawners, their eggs can be fertilized only by sperm of the same species (1). Multiple fertilization is lethal and all animals have evolved blocks to polyspermy. Ascidian eggs block polyspermy by enzymatic (2) and electrical mechanisms (3). Sperm bind to N-acetylglucosamine groups on the vitelline coat (4, 5, 6, 7). Follice cells surrounding the vitelline coat release N-acetylglucosaminidase during egg activation (8), preventing the binding of all sperm but a few (2). I show here that this interaction is not species-specific; sperm from one species can cause glycosidase release from follicle cells of a second species. Furthermore, once glycosidase release has been induced, the subsequent addition of sperm from the egg-producing species fails to fertilize a substantial proportion of these eggs. This leads to the hypothesis that sperm from one species of ascidian can interfere with fertilization of a second species. While intraspecific sperm competition has been well documented in several taxa (9, 10), this is the first record of sperm competition between species, or interspecific sperm competition.

摘要

海鞘(无脊椎脊索动物)在许多潮下带海洋区域中数量众多。它们常常生活在密集的多物种群落中;因此,种间对空间的竞争可能很激烈。虽然大多数非群居物种是体外受精的,但它们的卵子只能被同种的精子受精(1)。多次受精是致命的,所有动物都进化出了防止多精受精的机制。海鞘卵子通过酶促机制(2)和电机制(3)来阻止多精受精。精子与卵黄膜上的N - 乙酰葡糖胺基团结合(4、5、6、7)。卵黄膜周围的滤泡细胞在卵子激活时释放N - 乙酰葡糖胺酶(8),阻止除少数精子外所有精子的结合(2)。我在此表明这种相互作用并非物种特异性的;一个物种的精子能促使另一个物种的滤泡细胞释放糖苷酶。此外,一旦诱导糖苷酶释放后,再加入产生卵子物种的精子,会导致相当比例的这些卵子无法受精。这就引出了一个假设,即一种海鞘的精子会干扰另一种海鞘的受精过程。虽然种内精子竞争在几个分类群中已有充分记录(9、10),但这是物种间精子竞争,即种间精子竞争的首次记录。

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