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Morphological and histological examination of polyphenic wing formation in the pea aphid Acyrthosiphon pisum (Hemiptera, Hexapoda)

机译:豌豆蚜虫蚜虫(半翅目,六足纲)中多翅翅形成的形态和组织学检查

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摘要

Aphids display divergent adult phenotypes, depending on environmental conditions experienced during their embyonic and nymphal stages in their complex life cycles. The plastic developmental mode is an extreme case of phenotypic plasticity, so-called "polyphenism", in which discrete multiple phenotypes are produced based on a single genome. For example, winged and wingless adult females are derived from a single genotype. However, the developmental mechanisms producing these polyphenic traits according to the extrinsic stimuli, such as density conditions, still remain unknown. In this study, to analyze the developmental processes underlying the wing polyphenism, we extensively observed and compared wing development in the winged and wingless individuals in parthenogenetic generations of the aphid Acyrthosiphon pisum (Harris), using scanning electron microscopy and histological sectioning. At the first-instar stage, the wing primordia were observed both in the future winged (W) and wingless (WL) nymphs. Developmental differences can be seen from the second-instar stage, when wing primordia degenerate in the WL nymphs, while they develop and become more thickened in the W nymphs, suggesting that the developmental programs should be launched prior to this stage. Furthermore, during the third- to fifth-instar stages, wing buds and flight muscles were well developed in the W nymphs, while wing primordia completely disappeared in the WL ones. In addition, the observation on the detailed developmental process of wing primordia during the third-instar W nymphs showed that the wing buds become swollen especially at the basal part, even during the intermolt period. This was caused by the development of wing epithelia under the cuticle of this instar nymph. Actually on the surface of the cuticle of wing-bud bases, there were numerous furrows, which gradually expand during the intermolt period. The similar situation was also observed at the forth-instar nymphs, in which the wings are formed in the complicated manner inside the wing pads. Furthermore, the developmental process of flight muscles was also described in detail. These dynamic developmental differences between the wing morphs should be regulated under the gene expression cascades that switch according to environmental stimuli.
机译:蚜虫表现出不同的成年表型,这取决于它们复杂的生命周期在其胚胎和若虫阶段经历的环境条件。可塑性发育模式是表型可塑性的极端情况,即所谓的“多态性”,其中基于单个基因组产生离散的多个表型。例如,有翅和无翅成年雌性来源于单一基因型。但是,根据外部刺激(例如密度条件)产生这些多态性状的发育机制仍然未知。在这项研究中,为了分析翅膀多态性的潜在发育过程,我们使用扫描电子显微镜和组织学切片法广泛观察并比较了蚜虫Acyrthosiphon pisum(Harris)单性生殖世代中有翅和无翅个体的翅发育。在初生阶段,在未来的有翼(W)和无翼(WL)若虫中都观察到了翅原基。从二龄阶段可以看到发育差异,当机翼原虫在WL若虫中退化时,而它们在W若虫中发育并变得更加浓密,这表明应该在该阶段之前启动发育程序。此外,在第三至第五龄阶段,W若虫的翅芽和飞行肌肉发育良好,而WL原翅完全消失。另外,对三龄幼虫若虫翅膀原基的详细发育过程的观察表明,即使在蜕皮期,翅芽也变得肿胀,特别是在基部。这是由该龄若虫的表皮下翼状上皮细胞的发育引起的。实际上,在翼状芽茎基部的表皮的表面上,有许多沟,它们在蜕皮期逐渐扩大。在四龄若虫中也观察到了类似的情况,其中机翼在机翼垫内部以复杂的方式形成。此外,还详细描述了飞行肌肉的发育过程。机翼形态之间的这些动态发育差异应在根据环境刺激而切换的基因表达级联下进行调节。

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