Gene Transmission, Growth, and Exogeneous Growth Hormone Expression of G2 Transgenic Betta Fish (Betta imbellis)

Q4 Agricultural and Biological Sciences Jurnal Ilmiah Perikanan dan Kelautan Pub Date : 2021-06-19 DOI:10.20473/JIPK.V13I2.25870
Nadia Ayuningthias, H. Nasrullah, Dinar Tri Soelistiyowati, Eni Kusrini, A. Alimuddin
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Abstract

Highlight ResearchThe F2 of GH-transgenic B. imbellis was successfully producedThe transgene inheritance by the F2 fish was more than 90%The growth and body size of transgenic fish was significantly higher than controlF2 fish reached a larger body size in a shorter period compared to the F1 AbstractIn our previous research, we had successfully produced G0 and G1 Pangasianodon hypophthalmus growth hormone (PhGH) transgenic B. imbellis, native ornamental betta from Indonesia, which its giant-sized variant has valuable price for the breeders. The G0 and G1 transgenic (TG) fish showed higher growth rate and body size compared to the non-transgenic (NT) fish. The study was aimed to produce and evaluate the consistencies of transgene transmission and expression in G2 generation. The growth rate and body size between TG and NT fish was also compared. The G2 generation was produced using crosses between TG and NT G1 fish: ♂TG × ♀TG, ♂TG × ♀NT, ♂NT × ♀TG, and ♂NT ×♀ NT. Fish were reared for 12 weeks, and transgene detection was performed using the polymerase chain reaction method (PCR) on isolated DNA from the caudal fin clips. The endogenous and exogenous GH expression analysis was conducted using the quantitative real-time PCR (qPCR) method. The results showed that the inheritance of the GH transgene by the G2 fish was more than 90% in all transgenic crosses. Endogenous GH was expressed at the same levels in the brain of TG and NT fish, but the exogenous GH expression was highly detected only in the TG fish. The G2 transgenic fish had a higher specific growth rate, up to 31%, compared to the control. The body length of TG crosses were 23−35% higher and had 111−135% higher body weight compared to NT fish. These results showed a promising approached in mass-producing stable lines of giant-sized betta using the GH-transgenic technology.
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G2转基因斗鱼(Betta imbellis)的基因传递、生长及外源生长激素表达
短句来源重点研究成功培育出了转gh基因的红鲌F2,其转基因遗传率达90%以上,转基因鱼的生长和体型均显著高于对照,F2鱼在较短的时间内达到了比F1更大的体型。摘要在我们前期的研究中,我们成功培育出了G0和G1型转PhGH基因的红鲌,这是印度尼西亚的一种原生观赏鱼。它的巨型变种对育种者来说价值不菲。G0和G1转基因(TG)鱼的生长速度和体大小均高于非转基因(NT)鱼。本研究旨在建立和评价转基因在G2代中传递和表达的一致性。并比较了TG鱼和NT鱼的生长速度和体型。用TG与NT G1鱼杂交产生G2代:♂TG ×♀TG、♂TG ×♀NT、♂NT ×♀TG和♂NT ×♀NT。饲养12周,用聚合酶链反应法(PCR)对尾鳍片段分离的DNA进行转基因检测。采用实时荧光定量PCR (quantitative real-time PCR, qPCR)方法进行内源和外源GH表达分析。结果表明,在所有转基因杂交中,G2鱼的GH基因遗传率均在90%以上。内源性GH在TG鱼和NT鱼的大脑中表达水平相同,但外源性GH只在TG鱼中高表达。与对照相比,G2转基因鱼的特定生长率更高,可达31%。TG杂交体长比NT高23 ~ 35%,体重比NT高111 ~ 135%。这些结果表明,利用gh转基因技术大批量生产稳定的巨型斗鱼系是一条有希望的途径。
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来源期刊
Jurnal Ilmiah Perikanan dan Kelautan
Jurnal Ilmiah Perikanan dan Kelautan Agricultural and Biological Sciences-Food Science
CiteScore
1.60
自引率
0.00%
发文量
35
审稿时长
8 weeks
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