Research Core for Interdisciplinary Sciences, Okayama University, 3-1-1, Tsushima-naka, Kita-ku, Okayama, 700-8530, Japan.
J Hered. 2011 Jul-Aug;102(4):448-57. doi: 10.1093/jhered/esr026. Epub 2011 Apr 27.
Developmental processes of organisms are programmed to proceed in a finely regulated manner and finish within a certain period of time depending on the ambient environmental conditions. Therefore, variation in the developmental period under controlled genetic and environmental conditions indicates innate instability of the developmental process. In this study, we aimed to determine whether a molecular machinery exists that regulates the canalization of the developmental period and, if so, to test whether the same mechanism also stabilizes a morphological trait. To search for regions that influence the instability of the developmental period, we conducted genome-wide deficiency mapping with 441 isogenic deficiency strains covering 65.5% of the Drosophila melanogaster genome. We found that 11 independent deficiencies significantly increased the instability of the developmental period and 5 of these also significantly increased the fluctuating asymmetry of wing shape although there was no significant correlation between the instabilities of developmental period and wing shape in general. These results suggest that canalization processes of the developmental period and morphological traits are at least partially independent. Our findings emphasize the potential importance of temporal variation in development as an indicator of developmental stability and canalization and provide a novel perspective for understanding the regulation of phenotypic variability.
生物体的发育过程是按照精细调控的方式进行的,并在一定的时间内完成,这取决于环境条件。因此,在受控的遗传和环境条件下,发育期的变化表明发育过程存在内在的不稳定性。在这项研究中,我们旨在确定是否存在一种分子机制来调节发育期的定型,并检验同一机制是否也稳定形态特征。为了寻找影响发育期不稳定性的区域,我们使用 441 个包含 65.5%黑腹果蝇基因组的同基因缺失株系进行了全基因组缺失作图。我们发现 11 个独立的缺失显著增加了发育期的不稳定性,其中 5 个缺失也显著增加了翅膀形状的波动性不对称,尽管发育期和翅膀形状的不稳定性之间通常没有显著相关性。这些结果表明,发育期和形态特征的定型过程至少部分是独立的。我们的发现强调了发育过程中的时间变化作为发育稳定性和定型的指标的潜在重要性,并为理解表型可变性的调节提供了新的视角。