首页> 外文期刊>Journal of Applied Aquaculture >General Method for the Production of Developmentally-Arrested Bivalve Trochophore Larvae as a Potential Food for Marine Fish Larvae
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General Method for the Production of Developmentally-Arrested Bivalve Trochophore Larvae as a Potential Food for Marine Fish Larvae

机译:将杂草捕获的杂草幼虫生产的一般方法作为海洋鱼类幼虫的潜在食物

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摘要

Bivalve trochophore larvae are of an appropriate size (40-60 um) for first-feeding marine fish larvae. Unfortunately, the trochophore stage is of short duration and the next stage develops a shell, which may hinder consumption and digestion by larvae.A general method from reviewed literature and the author's experience for arresting development at, or prior to, the trochophore stage by genetic modification is presented. Briefly, bivalve sperm are exposed to ultraviolet radiation (254 nm) for a shortduration before being used to inseminate the eggs. Ultraviolet radiation alters the sperm DNA structure and results in developmental arrest at, or prior to, the trochophore stage thereby extending the useful life of the trochophore as a live food. The general utility of the method is that it is easy, inexpensive, and can be used on any bivalve species in which sperm or eggs are retrievable and can be kept viable in vitro.
机译:双血管司幼虫对于第一喂养海洋鱼类幼虫,具有适当的大小(40-60μm)。 不幸的是,横跨持续时间短,下一阶段开发出壳,这可能妨碍幼虫的消费和消化。从遗传学中审查文献的一般方法和作者的逮捕经验,或之前的杂志阶段 提出了修改。 简而言之,在使用之前将双抗体精子暴露于紫外线辐射(254nm),以便在使用卵子后。 紫外线辐射改变了精子DNA结构并导致跨跨位阶段或之前的发育停滞,从而将横冲的使用寿命作为活食物延长。 该方法的一般效用是它很容易,廉价,并且可以用于任何双抗体种类,其中精子或鸡蛋可以在体外保持活力。

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