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Evolution of Ovipositor Length in Drosophila suzukii Is Driven by Enhanced Cell Size Expansion and Anisotropic Tissue Reorganization

机译:通过增强的细胞尺寸膨胀和各向异性组织重组驱动果子杆菌舒杜氏素舒舒氏素的产卵长度的演变

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Morphological diversity is dominated by variation in body proportion [1], which can be described with scaling relationships and mathematical equations, following the pioneering work of D'Arcy Thompson [2] and Julian Huxley [3]. Yet, the cellular processes underlying divergence in size and shape of morphological traits between species remain largely unknown [4-8]. Here, we compare the ovipositors of two related species, Drosophila melanogaster and D. suzukii. D. suzukii has switched its egg-laying niche from rotting to ripe fruit [9]. Along with this shift, the D. suzukii ovipositor has undergone a significant change in size and shape [10]. Using an allometric approach, we find that, while adult ovipositor width has hardly changed between the species, D. suzukii ovipositor length is almost double that of D. melanogaster. We show that this difference mostly arises in a 6-h time window during pupal development. We observe that the developing ovipositors of the two species comprise an almost identical number of cells, with a similar profile of cell shapes and orientations. After cell division stops, we find that the ovipositor area continues to grow in both species through the isotropic expansion of cell apical area and the anisotropic cellular reorganization of the tissue. Remarkably, we find that the lengthening of the D. suzukii ovipositor compared to that of D. melanogaster results from the combination of the accelerated expansion of apical cell size and the enhanced anisotropic rearrangement of cells in the tissue. Therefore, the quantitative fine-tuning of morphogenetic processes can drive evolutionary changes in organ size and shape.
机译:通过体比例的变化来实现形态样,可以通过缩放关系和数学方程来描述,这是D'Arcy Thompson [2]和Julian Huxley [3]的开创性工作。然而,物种之间的形状性质的大小和形状的差异差异的细胞过程仍然很大程度上是未知的[4-8]。在这里,我们比较了两个相关物种的产卵ostors,果蝇黑素礁唑和D. suzukii。 D. Suzukii已将其鸡蛋铺设的鸡蛋放入成熟水果[9]。随着这种偏移,D.Suzukii产卵仪经历了大小和形状的显着变化[10]。使用各种方法,我们发现,在物种之间几乎没有改变成人的产卵宽度,D.Suzukii Ovipositor长度几乎是D. Melanogaster的两倍。我们表明,在蛹发育期间,这一差异主要是在6小时的时间窗口中出现。我们观察到两种物种的显影产卵剂包括几乎相同数量的细胞,具有类似的细胞形状和方向的型材。在细胞分裂停止之后,发现产卵区通过细胞顶点区域的各向同性扩展和组织的各向异性细胞重组的各种各样的膨胀在两种物种中继续生长。值得注意的是,我们发现D. Suzukii产卵器的延长与D. melanogaster的延长,从Apick细胞尺寸的加速膨胀和组织中细胞增强的各向异性重排的组合的组合。因此,形态发生过程的定量微调可以驱动器官尺寸和形状的进化变化。

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