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铂类 TALEN 靶向突变兰尼碱受体导致东方蓝鳍金枪鱼(Thunnus orientalis)游动缓慢。

Targeted mutagenesis of the ryanodine receptor by Platinum TALENs causes slow swimming behaviour in Pacific bluefin tuna (Thunnus orientalis).

机构信息

Seikai National Fisheries Research Institute, Japan Fisheries Research and Education Agency, Nagasaki, 851-2213, Japan.

Kamiura Station, National Research Institute of Aquaculture, Japan Fisheries Research and Education Agency, Saiki, Oita, 879-2602, Japan.

出版信息

Sci Rep. 2019 Sep 25;9(1):13871. doi: 10.1038/s41598-019-50418-3.

Abstract

In bluefin tuna aquaculture, high mortalities of hatchery-reared juveniles occur in sea cages owing to wall collisions that are caused by high-speed swimming in panic due to changes in illuminance. Here, we report that targeted gene mutagenesis of the ryanodine receptor (RyR1b), which allows the sarcoplasmic reticulum to release Ca in fast skeletal muscle, using highly active Platinum TALENs caused slow swimming behaviour in response to external stimuli in Pacific bluefin tuna (PBT) larvae. This characteristic would be a useful trait to prevent wall collisions in aquaculture production. A pair of Platinum TALENs targeting exons 2 and 43 of the PBT ryr1b gene induced deletions in each TALEN target site of the injected embryos with extremely high efficiency. In addition, ryr1b expression was significantly decreased in the mutated G0 larvae at 7 days after hatching (DAH). A touch-evoked escape behaviour assay revealed that the ryr1b-mutated PBT larvae swam away much less efficiently in response to mechanosensory stimulation at 7 DAH than did the wild-type larvae. Our results demonstrate that genome editing technologies are effective tools for determining the functional characterization of genes in a comparatively short period, and create avenues for facilitating genetic studies and breeding of bluefin tuna species.

摘要

在金枪鱼养殖业中,由于光照变化导致幼鱼惊慌失措高速游动而发生的撞网死亡,是养殖厂中海笼中幼鱼死亡率高的主要原因。在这里,我们报告称,使用高效的 Platinum TALEN 对肌浆网钙释放通道蛋白 1 型受体(ryanodine receptor 1b,RyR1b)基因进行靶向基因诱变,可导致快速生长的太平洋蓝鳍金枪鱼(Pacific bluefin tuna,PBT)幼鱼对外部刺激的反应变得缓慢。这一特性可用于防止水产养殖中的撞网事故。一对 Platinum TALEN 靶向 PBT ryr1b 基因的外显子 2 和 43,可在注射胚胎的每个 TALEN 靶点上诱导高效的缺失。此外,在孵化后 7 天(DAH)的突变 G0 幼虫中, ryr1b 的表达显著降低。触诱发应逃避行为分析表明,与野生型幼虫相比,突变的 PBT 幼虫在 7 DAH 时对机械感觉刺激的反应速度明显较慢。我们的结果表明,基因组编辑技术是在相对较短的时间内确定基因功能特征的有效工具,并为蓝鳍金枪鱼物种的遗传研究和繁殖开辟了新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e54/6761128/343b2b4d996e/41598_2019_50418_Fig1_HTML.jpg

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