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在 Menidia menidia 从尺寸选择收获中恢复期间,血浆 IGF-I 的循环水平。

Circulating levels of plasma IGF-I during recovery from size-selective harvesting in Menidia menidia.

机构信息

School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, NY 11794-5000, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2013 Oct;166(2):222-7. doi: 10.1016/j.cbpa.2013.06.001. Epub 2013 Jun 7.

Abstract

Selection for growth-related traits in domesticated fishes often results in predictable changes within the growth hormone-insulin-like growth factor (GH-IGF-1) axis. Little is known about the mechanisms controlling changes in growth capacity resulting from fishery-induced evolution. We took advantage of a long-term study where Menidia menidia were selected for size at age over multiple generations to mimic fisheries-induced selection. This selection regime produced three populations with significant differences in intrinsic growth rate. These growth differences partially rebounded, but persisted even after selection was relaxed, resulting in fast, intermediate, and slow-growing lines. Plasma IGF-1 was measured in these populations as a potential target of selection on growth. IGF-1 was significantly correlated with current length and mass, and was positively correlated with growth rate (g d(-1)) in two lines, indicating it may be an appropriate indicator of growth capacity. The slow-growing line exhibited higher overall IGF-1 levels relative to the depressed IGF-1 seen in the fast-growing line, contrary to our prediction. We offer possible explanations for this unusual pattern and argue that somatic growth is likely to be under control of mechanism(s) downstream to IGF-1. IGF-1 provides an interesting basis for understanding endocrine control of growth in response to artificial selection and recovery.

摘要

在家养鱼类中选择与生长相关的特征通常会导致生长激素-胰岛素样生长因子 (GH-IGF-1) 轴的可预测变化。对于渔业引起的进化导致的生长能力变化的控制机制知之甚少。我们利用一项长期研究,该研究对多个世代的年龄大小进行了 Menidia menidia 的选择,以模拟渔业引起的选择。这种选择机制产生了三个内在生长率存在显著差异的种群。这些生长差异部分反弹,但即使在选择放松后仍然存在,导致生长速度快、中等和慢的品系。测量了这些种群中的血浆 IGF-1 作为对生长选择的潜在目标。IGF-1 与当前长度和质量显著相关,并且与两条线中的生长率 (g d(-1)) 呈正相关,表明它可能是生长能力的合适指标。与我们的预测相反,与生长速度较快的品系相比,生长速度较慢的品系表现出更高的总体 IGF-1 水平。我们为这种不寻常的模式提供了可能的解释,并认为躯体生长可能受到 IGF-1 下游机制的控制。IGF-1 为了解内分泌系统对人工选择和恢复过程中生长的控制提供了一个有趣的基础。

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