Galarza Juan A
Dpartment of Biological and Environmental Science University of Jyväskylä Jyväskylä Finland.
Ecol Evol. 2021 May 2;11(12):7507-7517. doi: 10.1002/ece3.7581. eCollection 2021 Jun.
Coloration is perhaps one of the most prominent adaptations for survival and reproduction of many taxa. Coloration is of particular importance for aposematic species, which rely on their coloring and patterning acting as a warning signal to deter predators. Most research has focused on the evolution of warning coloration by natural selection. However, little information is available for color mutants of aposematic species, particularly at the genomic level. Here, I compare the transcriptomes of albino mutant caterpillars of the aposematic wood tiger moth () to those of their full sibs having their distinctive orange-black warning coloration. The results showed >290 differentially expressed genes genome-wide. Genes involved in the immune system, structural constituents of cuticular, and immunity were mostly downregulated in the albino caterpillars. Surprisingly, higher expression was observed in core melanin genes from albino caterpillars, suggesting that melanin synthesis may be disrupted in terminal ends of the pathway during its final conversion. Taken together, these results suggest that caterpillar albinism may not be due to a depletion of melanin precursor genes. In contrast, the albino condition may result from the combination of faulty melanin conversion late in its synthesis and structural deficiencies in the cuticular preventing its deposition. The results are discussed in the context of how albinism may impact individuals of aposematic species in the wild.
颜色或许是许多生物分类群生存和繁殖过程中最显著的适应性特征之一。对于警戒色物种而言,颜色尤为重要,它们依靠自身的颜色和图案作为警告信号来威慑捕食者。大多数研究都聚焦于自然选择对警戒色的进化作用。然而,关于警戒色物种的颜色突变体,尤其是在基因组层面的信息却很少。在此,我将具警戒色的木豹蛾白化突变体幼虫的转录组与其具有独特橙黑相间警戒色的全同胞幼虫的转录组进行了比较。结果显示,全基因组范围内有超过290个差异表达基因。在白化幼虫中,参与免疫系统、表皮结构成分和免疫的基因大多下调。令人惊讶的是,白化幼虫的核心黑色素基因表达更高,这表明黑色素合成在其最终转化过程中可能在途径的末端被破坏。综上所述,这些结果表明幼虫白化可能并非由于黑色素前体基因的缺失。相反,白化状况可能是由于黑色素合成后期转化错误以及表皮结构缺陷阻止其沉积共同导致的。本文在白化现象如何影响野生警戒色物种个体的背景下对结果进行了讨论。