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Identification and functional characterization of the sex-determining gene doublesex in the sawfly Athalia rosae (Hymenoptera: Tenthredinidae)

机译:锯齿蝇(Athalia rosae)中决定性别的基因doublesex的鉴定和功能表征(膜翅目:天蛾科)

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摘要

Sexual fate of the sawfly, Athalia rosae (Hymenoptera: Tenthredinidae) is determined by the complementary sex determination (CSD) mechanism as is the case in honeybees. However, to date, genes involved in sex determination have not been identified in this species. In this study, we attempted to identify orthologs of complementary sex-determiner (csd), feminizer (fem), and doublesex (dsx) from the A. rosae genome, all of which are crucial components of the sex determination cascade in the honeybee. As a result, we identified a sawfly ortholog of dsx (designated as Ardsx). Rapid amplification of cDNA ends (RACE) using total RNA extracted from male and female larvae identified three male-specific variants and three female-specific variants. Comparison between the full-length Ardsx cDNAs and the genomic sequence revealed that exon 5 was differentially spliced between the male- and female-specific variants. RT-PCR analysis demonstrated that Ardsx pre-mRNA was spliced alternatively in a sex-dependent manner at almost all the developmental stages. RNAi-mediated knockdown of Ardsx in males caused severe defects in the reproductive organs and, notably, induced development of the ovipository apparatus containing the dorsal pair of blades and the sheath. These males also showed abnormalities in testes and seminal vesicles and lacked mature sperm. The present study provides the first direct evidence that dsx is essential for sexual development in hymenopteran species.
机译:像蜜蜂一样,锯齿蝇Athalia rosae(膜翅目:Tenthredinidae)的性缘决定于互补性决定(CSD)机制。然而,迄今为止,尚未在该物种中鉴定出涉及性别决定的基因。在这项研究中,我们试图从A.rosae基因组中鉴定互补性决定簇(csd),女性化因子(fem)和doublesex(dsx)的直系同源物,它们都是蜜蜂性别决定级联的关键组成部分。结果,我们确定了dsx的锯齿直系同源物(指定为Ardsx)。使用从雄性和雌性幼虫中提取的总RNA快速扩增cDNA末端(RACE),鉴定出三个雄性特异性变体和三个雌性特异性变体。全长Ardsx cDNA与基因组序列的比较表明,外显子5在雄性和雌性特异性变体之间有不同的剪接。 RT-PCR分析表明,Ardsx pre-mRNA在几乎所有发育阶段都以性别依赖性方式被剪接。 RNAi介导的Ardsx在雄性中的敲低导致生殖器官严重缺陷,特别是引起包含背侧刀片和鞘的排卵装置的发育。这些男性还表现出睾丸和精囊异常,并且缺乏成熟的精子。本研究提供了第一个直接证据,证明dsx对于膜翅目物种的性发育至关重要。

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