Kientega Mahamadi, Kranjc Nace, Traoré Nouhoun, Kaboré Honorine, Soma Dieudonné Diloma, Morianou Ioanna, Namountougou Moussa, Belem Adrien Marie Gaston, Diabaté Abdoulaye
Institut de Recherche en Sciences de la Santé (IRSS), Bobo-Dioulasso 01 BP 545, Burkina Faso.
Laboratoire de Santé Animale Tropicale, Institut du Développement Rural, Université Nazi Boni, Bobo-Dioulasso 01 BP 1091, Burkina Faso.
Insects. 2022 Nov 13;13(11):1048. doi: 10.3390/insects13111048.
Targeting genes involved in sexual determinism, for vector or pest control purposes, requires a better understanding of their polymorphism in natural populations in order to ensure a rapid spread of the construct. By using genomic data from An. gambiae s.l., we analyzed the genetic variation and the conservation score of the fru gene in 18 natural populations across Africa. A total of 34,339 SNPs were identified, including 3.11% non-synonymous segregating sites. Overall, the nucleotide diversity was low, and the Tajima’s D neutrality test was negative, indicating an excess of low frequency SNPs in the fru gene. The allelic frequencies of the non-synonymous SNPs were low (freq < 0.26), except for two SNPs identified at high frequencies (freq > 0.8) in the zinc-finger A and B protein domains. The conservation score was variable throughout the fru gene, with maximum values in the exonic regions compared to the intronic regions. These results showed a low genetic variation overall in the exonic regions, especially the male sex-specific exon and the BTB-exon 1 of the fru gene. These findings will facilitate the development of an effective gene drive construct targeting the fru gene that can rapidly spread without encountering resistance in wild populations.
为了进行媒介或害虫控制,针对参与性别决定的基因,需要更好地了解它们在自然种群中的多态性,以确保构建体能够快速传播。通过使用冈比亚按蚊复合组的基因组数据,我们分析了非洲18个自然种群中fru基因的遗传变异和保守评分。共鉴定出34339个单核苷酸多态性(SNP),其中包括3.11%的非同义分离位点。总体而言,核苷酸多样性较低,Tajima's D中性检验呈阴性,表明fru基因中低频SNP过多。非同义SNP的等位基因频率较低(频率<0.26),但在锌指A和B蛋白结构域中鉴定出的两个SNP频率较高(频率>0.8)。fru基因的保守评分在整个基因中各不相同,与内含子区域相比,外显子区域的保守评分最高。这些结果表明,外显子区域总体遗传变异较低,尤其是fru基因的雄性特异性外显子和BTB-外显子1。这些发现将有助于开发一种有效的靶向fru基因的基因驱动构建体,该构建体能够在野生种群中快速传播而不会遇到抗性。