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Tinkering: new embryos from old-rapidly and cheaply

机译:修补:来自旧速度和廉价的新胚胎

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Marine embryos and larvae reflect distinct life histories and body plans from their adults, and are relatively simple in morphology and genetic regulation. Evolution of development to produce highly modified larval forms can be rapid among closely related species. We have studied the mechanisms by which the non-feeding direct-developing larva of the sea urchin Heliocidaris erytbrogramma evolved from an indirect-developing feeding larva, the pluteus. H. erylbrogramma diverged within 4 million years from its sister species, H. tuberculata, which has a typical pluteus larva. Radical evolution of H. erytbrogramma early development allows it to reach metamorphosis in three to four days versus the several weeks required for the pluteus. We have used embryology, cross species hybrids, and manipulation of gene expression in embryos to dissect developmental changes and the genie controls that underlie these changes. Evolution of a new larval form resulted largely from several heterochronies in which conserved regulatory pathways are shifted in timing, producing new temporal relationships to other developmental events. Other changes in gene regulation also have contributed to rapid evolution of larval features, including the origin of unexpected and novel tissue identities that transcend changes within homologous features.
机译:海洋胚胎和幼虫反映了他们成年人的不同生活史和身体计划,在形态和遗传调节中相对简单。发展产生高度修饰的幼虫形式的发展的演变可以在密切相关的物种中快速。我们研究了海胆直接发展的机制,海胆皮中科学马的幼虫从间接发育饲养的幼虫涌出,灰泥。 H.Ferylbrogrogrogray从其姐妹种类的400万年内分歧,H. Tuberculata,具有典型的Pletyus幼虫。 H.ErytBrogrogrogrogrogray早期发展的激进演化使其在三到四天内达到变态与泥浆所需的几周。我们使用胚胎物种杂交种,并操纵胚胎中的基因表达,以对抗这些变化的发展变化和Genie管制。新的幼虫形式的演变主要来自几种异旋量,其中保守的监管途径在时间转移,产生与其他发育事件的新的时间关系。基因调节的其他变化也有助于幼虫特征的快速发展,包括超越同源特征内变化的意外和新型组织标识的起源。

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