首页> 外文期刊>Insect Molecular Biology >Anterior development in the parthenogenetic and viviparous form of the pea aphid, Acyrthosiphon pisum: hunchback and orthodenticle expression. (Special Issue: The aphid genome.)
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Anterior development in the parthenogenetic and viviparous form of the pea aphid, Acyrthosiphon pisum: hunchback and orthodenticle expression. (Special Issue: The aphid genome.)

机译:豌豆蚜虫单性生殖和胎生形式的前发育:驼背和正齿科表达。 (特刊:蚜虫基因组。)

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摘要

In the dipteran Drosophila, the genes bicoid and hunchback work synergistically to pattern the anterior blastoderm during embryogenesis. bicoid, however, appears to be an innovation of the higher Diptera. Hence, in some non-dipteran insects, anterior specification instead relies on a synergistic interaction between maternally transcribed hunchback and orthodenticle. Here we describe how orthologues of hunchback and orthodenticle are expressed during oogenesis and embryogenesis in the parthenogenetic and viviparous form of the pea aphid, Acyrthosiphon pisum. A. pisum hunchback (Aphb) mRNA is localized to the anterior pole in developing oocytes and early embryos prior to blastoderm formation - a pattern strongly reminiscent of bicoid localization in Drosophila. A. pisum orthodenticle (Apotd), on the other hand, is not expressed prior to gastrulation, suggesting that it is the asymmetric localization of Aphb, rather than synergy between Aphb and Apotd, that regulates anterior specification in asexual pea aphids.
机译:在二翅果蝇中,基因 bicoid 和驼背协同工作,从而在胚胎发生过程中形成前胚盘。然而, bicoid 似乎是更高双翅目的一种创新。因此,在某些非双翅类昆虫中,前规范依赖于母本转录的驼背和原齿之间的协同相互作用。在这里,我们描述了豌豆蚜虫单性生殖和胎生的形式,在成卵和胚胎发生过程中, chuckback 和 orthodenticle 的直向同源物是如何表达的。 A。 pisum hunchback ( Aphb )mRNA在胚盘形成之前位于发育中的卵母细胞和早期胚胎的前极-这种模式强烈地让人联想到 bicoid i>果蝇。 A。另一方面,pisum orthodenticle ( Apotd )在胃造胃之前未表达,表明它是 Aphb 的不对称定位,而不是两者之间的协同作用。 Aphb 和 Apotd 调节无性豌豆蚜的前部规格。

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