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新型快速生长型斑马鱼的特性:生长激素转基因的新方法。

Characterization of a novel fast-growing zebrafish: a new approach to growth hormone transgenesis.

机构信息

Department of Animal Sciences, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Front Endocrinol (Lausanne). 2024 Apr 2;15:1369043. doi: 10.3389/fendo.2024.1369043. eCollection 2024.

Abstract

The manipulation of the somatotropic axis, governing growth, has been a focus of numerous transgenic approaches aimed at developing fast-growing fish for research, medicine and aquaculture purposes. However, the excessively high growth hormone (GH) levels in these transgenic fish often result in deformities that impact both fish health and consumer acceptance. In an effort to mitigate these issues and synchronize exogenous GH expression with reproductive processes, we employed a novel transgenic construct driven by a tilapia luteinizing hormone (LH) promoter. This approach was anticipated to induce more localized and lower exogenous GH secretion. In this study, we characterized the growth and reproduction of these transgenic LHp-GH zebrafish using hormonal and physiological parameters. Our findings reveal that LHp-GH fish exhibited accelerated growth in both length and weight, along with a lower feed conversion ratio, indicating more efficient feed utilization, all while maintaining unchanged body proportions. These fish demonstrated higher expression levels of LH and GH in the pituitary and elevated IGF-1 levels in the liver compared to wild-type fish. An examination of reproductive function in LHp-GH fish unveiled lower pituitary LH and FSH contents, smaller follicle diameter in female gonads, and reduced relative fecundity. However, in transgenic males, neither the distribution of spermatogenesis stages nor sperm concentrations differed significantly between the fish lines. These results suggest that coupling exogenous GH expression with endogenous LH expression in females directs resource investment toward somatic growth at the expense of reproductive processes. Consequently, we conclude that incorporating GH under the LH promoter represents a suitable construct for the genetic engineering of commercial fish species, providing accelerated growth while preserving body proportions.

摘要

调控生长的生长激素轴的调控一直是许多旨在开发用于研究、医学和水产养殖目的的快速生长鱼类的转基因方法的重点。然而,这些转基因鱼中过高的生长激素 (GH) 水平常常导致畸形,影响鱼类健康和消费者接受度。为了减轻这些问题并使外源 GH 表达与生殖过程同步,我们使用了一种由罗非鱼促黄体激素 (LH) 启动子驱动的新型转基因构建体。预计这种方法会诱导更局部和更低的外源 GH 分泌。在这项研究中,我们使用激素和生理参数来表征这些转基因 LHp-GH 斑马鱼的生长和繁殖。我们的研究结果表明,LHp-GH 鱼在长度和体重上都表现出加速生长,同时饲料转化率更低,表明饲料利用率更高,同时保持身体比例不变。与野生型鱼相比,这些鱼的垂体中 LH 和 GH 的表达水平更高,肝脏中的 IGF-1 水平也更高。对 LHp-GH 鱼生殖功能的检查显示,垂体中 LH 和 FSH 的含量较低,雌性性腺中卵泡直径较小,相对繁殖力降低。然而,在转基因雄性中,两条鱼线的精子发生阶段分布和精子浓度均无显著差异。这些结果表明,在外源 GH 表达与内源性 LH 表达偶联时,雌性将资源投资导向体细胞生长,而牺牲生殖过程。因此,我们得出结论,将 GH 置于 LH 启动子下代表了商业鱼类遗传工程的一种合适的构建体,可提供加速生长,同时保持身体比例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1093/11018968/57a57c514d73/fendo-15-1369043-g001.jpg

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