Osanai-Futahashi M, Tatematsu K-I, Futahashi R, Narukawa J, Takasu Y, Kayukawa T, Shinoda T, Ishige T, Yajima S, Tamura T, Yamamoto K, Sezutsu H
Transgenic Silkworm Research Unit, National Institute of Agrobiological Sciences, Tsukuba, Japan.
Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan.
Heredity (Edinb). 2016 Feb;116(2):135-45. doi: 10.1038/hdy.2015.74. Epub 2015 Sep 2.
Ommochromes are major insect pigments involved in coloration of compound eyes, eggs, epidermis and wings. In the silkworm Bombyx mori, adult compound eyes and eggs contain a mixture of the ommochrome pigments such as ommin and xanthommatin. Here, we identified the gene involved in ommochrome biosynthesis by positional cloning of B. mori egg and eye color mutant pink-eyed white egg (pe). The recessive homozygote of pe has bright red eyes and white or pale pink eggs instead of a normal dark coloration due to the decrease of dark ommochrome pigments. By genetic linkage analysis, we narrowed down the pe-linked region to ~258 kb, containing 17 predicted genes. RNA sequencing analyses showed that the expression of one candidate gene, the ortholog of Drosophila haem peroxidase cardinal, coincided with egg pigmentation timing, similar to other ommochrome-related genes such as Bm-scarlet and Bm-re. In two pe strains, a common missense mutation was found within a conserved motif of B. mori cardinal homolog (Bm-cardinal). RNA interference-mediated knockdown and transcription activator-like effector nuclease (TALEN)-mediated knockout of the Bm-cardinal gene produced the same phenotype as pe in terms of egg, adult eye and larval epidermis coloration. A complementation test of the pe mutant with the TALEN-mediated Bm-cardinal-deficient strain showed that the mutant phenotype could not be rescued, indicating that Bm-cardinal is responsible for pe. Moreover, knockdown of the cardinal homolog in Tribolium castaneum also induced red compound eyes. Our results indicate that cardinal plays a major role in ommochrome synthesis of holometabolous insects.
眼色素是参与复眼、卵、表皮和翅膀着色的主要昆虫色素。在家蚕中,成虫复眼和卵含有诸如眼色素和黄蝶呤等眼色素的混合物。在此,我们通过对家蚕卵和眼色突变体粉眼白卵(pe)进行定位克隆,鉴定了参与眼色素生物合成的基因。pe的隐性纯合子由于深色眼色素减少,具有鲜红色眼睛和白色或浅粉红色的卵,而非正常的深色。通过遗传连锁分析,我们将与pe连锁的区域缩小到约258 kb,包含17个预测基因。RNA测序分析表明,一个候选基因(果蝇血红素过氧化物酶主基因的直系同源基因)的表达与卵色素沉着时间一致,类似于其他与眼色素相关的基因,如Bm-scarlet和Bm-re。在两个pe品系中,在家蚕主基因同源物(Bm-cardinal)的保守基序内发现了一个常见的错义突变。RNA干扰介导的敲低和转录激活样效应核酸酶(TALEN)介导的Bm-cardinal基因敲除在卵、成虫眼和幼虫表皮着色方面产生了与pe相同的表型。pe突变体与TALEN介导的Bm-cardinal缺陷品系的互补试验表明,突变体表型无法得到挽救,表明Bm-cardinal是pe的致病原因。此外,敲低赤拟谷盗中的主基因同源物也诱导了红色复眼。我们的结果表明,主基因在全变态昆虫的眼色素合成中起主要作用。