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Disruption of phenylalanine hydroxylase reduces adult lifespan and fecundity, and impairs embryonic development in parthenogenetic pea aphids

机译:苯丙氨酸羟化酶的破坏会降低成虫的寿命和繁殖力,并损害孤雌豌豆蚜虫的胚胎发育

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摘要

Phenylalanine hydroxylase (PAH) is a key tyrosine-biosynthetic enzyme involved in neurological and melanin-associated physiological processes. Despite extensive investigations in holometabolous insects, a PAH contribution to insect embryonic development has never been demonstrated. Here, we have characterized, for the first time, the PAH gene in a hemimetabolous insect, the aphid Acyrthosiphon pisum. Phylogenetic and sequence analyses confirmed that ApPAH is closely related to metazoan PAH, exhibiting the typical ACT regulatory and catalytic domains. Temporal expression patterns suggest that ApPAH has an important role in aphid developmental physiology, its mRNA levels peaking at the end of embryonic development. We used parental dsApPAH treatment to generate successful knockdown in aphid embryos and to study its developmental role. ApPAH inactivation shortens the adult aphid lifespan and considerably affects fecundity by diminishing the number of nymphs laid and impairing embryonic development, with newborn nymphs exhibiting severe morphological defects. Using single nymph HPLC analyses, we demonstrated a significant tyrosine deficiency and a consistent accumulation of the upstream tyrosine precursor, phenylalanine, in defective nymphs, thus confirming the RNAi-mediated disruption of PAH activity. This study provides first insights into the role of PAH in hemimetabolous insects and demonstrates that this metabolic gene is essential for insect embryonic development.
机译:苯丙氨酸羟化酶(PAH)是一种重要的酪氨酸生物合成酶,参与神经和黑色素相关的生理过程。尽管对全代谢昆虫进行了广泛研究,但从未证明多环芳烃对昆虫胚胎发育的贡献。在这里,我们首次表征了半代谢昆虫蚜虫Acyrthosiphon pisum中的PAH基因。系统发育和序列分析证实,ApPAH与后生动物PAH密切相关,表现出典型的ACT调节和催化结构域。时间表达模式表明ApPAH在蚜虫发育生理中具有重要作用,其mRNA水平在胚胎发育结束时达到峰值。我们使用了父母亲dsApPAH处理来在蚜虫胚胎中产生成功的敲低并研究其发育作用。 ApPAH失活会缩短成虫的寿命,并减少成虫的数量并损害胚胎发育,从而显着影响繁殖力,而新生若虫则表现出严重的形态缺陷。使用单个若虫HPLC分析,我们证明了缺陷性若虫中存在明显的酪氨酸缺乏和上游酪氨酸前体苯丙氨酸的持续积累,从而证实了RNAi介导的PAH活性破坏。这项研究提供了对PAH在半代谢昆虫中的作用的初步见解,并证明了该代谢基因对于昆虫胚胎发育至关重要。

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