Ferguson Moira M
Department of Zoology, University of Montana, Missoula, MT, 59812.
Evolution. 1986 Mar;40(2):323-330. doi: 10.1111/j.1558-5646.1986.tb00474.x.
I compare the developmental stability of first generation hybrids between hatchery strains of rainbow trout (Salmo gairdneri) to that of the three pure parental strains raised in a common environment. Two of three reciprocal hybrid pairs show significantly less fluctuating asymmetry of four meristic characters than is found in parental strains. In contrast, the third hybrid pair shows reduced but not significantly lower developmental stability compared to pure strains. These hybrids had previously been found to develop slower than their maternal parental strains, indicating divergence of parental regulatory mechanisms controlling early ontogeny. A significant positive association between the degree of relative delay in hybrid developmental rate and their degree of developmental instability supports this view. For example, the only hybrid pair with decreased developmental stability also had the largest relative delay in development time of all hybrids. Neither absolute developmental rate nor enzyme heterozygosity at 42 loci alone can explain the degree of fluctuating asymmetry in these hybrids. The developmental stability of hybrids is apparently a result of the interaction between the developmental divergence between parental strains and their genomic heterozygosity due to hybridization.
我将虹鳟(Salmo gairdneri)孵化场品系的第一代杂交种与在共同环境中培育的三个纯亲本品系的发育稳定性进行了比较。三对正反交杂交组合中有两对在四个分节特征上表现出的波动不对称性明显低于亲本品系。相比之下,第三对杂交组合与纯系相比发育稳定性降低,但差异不显著。此前发现这些杂交种的发育速度比其母本品系慢,这表明控制早期个体发育的亲本调控机制存在差异。杂交发育速率的相对延迟程度与其发育不稳定性程度之间存在显著的正相关,支持了这一观点。例如,唯一发育稳定性降低的杂交组合在所有杂交种中发育时间的相对延迟也最大。单独的绝对发育速率或42个基因座处的酶杂合性都无法解释这些杂交种的波动不对称程度。杂交种的发育稳定性显然是亲本品系之间发育差异与其杂交导致的基因组杂合性相互作用的结果。