Department of Animal Physiology and Ecotoxicology, Faculty of Biology and Environmental Protection, University of Silesia in Katowice, Katowice, Poland.
The Faculty of Veterinary Medicine, Wroclaw University of Environmental and Life Sciences, Wroclaw, Poland.
PLoS One. 2019 May 6;14(5):e0216281. doi: 10.1371/journal.pone.0216281. eCollection 2019.
Two eye-colour mutant strains, white (W) and yellow (Y) of house cricket Acheta domesticus were established in our laboratory. We phenotyped and genotyped the mutants, performed genetic crossings and studied the eye structure and pigment composition using light and electron microscopy and biochemical analysis. We show that W and Y phenotypes are controlled by a single autosomal recessive allele, as both traits are metabolically independent. The analysis of the mutants`eye structure showed a reduced number of dark pigment granules while simultaneously, and an increased amount of light vacuoles in white eye mutants was observed. Significant differences in eye pigment composition between strains were also found. The Y mutant had a lower number of ommochromes, while the W mutant had a lower number of ommochromes and pteridines. This indicates that mutated genes are involved in two different, independent metabolic pathways regulating tryptophan metabolism enzymes, pigment transporter granules or pigment granule formation.
我们实验室建立了两种眼色突变株,家蟋蟀 Acheta domesticus 的白色(W)和黄色(Y)。我们对突变体进行了表型和基因型分析,进行了遗传杂交,并使用光镜和电子显微镜以及生化分析研究了眼睛结构和色素组成。我们表明,W 和 Y 表型由单个常染色体隐性等位基因控制,因为这两种性状在代谢上是独立的。对突变体眼睛结构的分析表明,深色色素颗粒的数量减少,而同时,白眼突变体中光空泡的数量增加。还发现了两种品系之间眼睛色素组成的显著差异。Y 突变体的 ommochromes 数量较少,而 W 突变体的 ommochromes 和 pteridines 数量较少。这表明突变基因参与了两个不同的、独立的代谢途径,调节色氨酸代谢酶、色素转运颗粒或色素颗粒形成。