Department of Neurobiology, University of Massachusetts Medical School, 364 Plantation Street, Worcester, MA 01605, USA.
Cell. 2011 Nov 23;147(5):1171-85. doi: 10.1016/j.cell.2011.09.052.
We present the draft 273 Mb genome of the migratory monarch butterfly (Danaus plexippus) and a set of 16,866 protein-coding genes. Orthology properties suggest that the Lepidoptera are the fastest evolving insect order yet examined. Compared to the silkmoth Bombyx mori, the monarch genome shares prominent similarity in orthology content, microsynteny, and protein family sizes. The monarch genome reveals a vertebrate-like opsin whose existence in insects is widespread; a full repertoire of molecular components for the monarch circadian clockwork; all members of the juvenile hormone biosynthetic pathway whose regulation shows unexpected sexual dimorphism; additional molecular signatures of oriented flight behavior; microRNAs that are differentially expressed between summer and migratory butterflies; monarch-specific expansions of chemoreceptors potentially important for long-distance migration; and a variant of the sodium/potassium pump that underlies a valuable chemical defense mechanism. The monarch genome enhances our ability to better understand the genetic and molecular basis of long-distance migration.
我们呈现了迁徙性黑脉金斑蝶(Danaus plexippus)的 2.73 亿碱基对基因组草图和 16866 个编码蛋白的基因。同源性特征表明,鳞翅目是迄今为止研究过的进化最快的昆虫目。与家蚕(Bombyx mori)相比,黑脉金斑蝶的基因组在同源性内容、微同线性和蛋白家族大小方面具有显著的相似性。黑脉金斑蝶的基因组揭示了一种类似于脊椎动物的视蛋白,这种视蛋白在昆虫中广泛存在;一个完整的黑脉金斑蝶生物钟的分子组成部分;所有的保幼激素生物合成途径的成员,其调节表现出出乎意料的性别二态性;定向飞行行为的其他分子特征;在夏季和迁徙性蝴蝶之间表达存在差异的 microRNAs;黑脉金斑蝶特有的化感器可能对长距离迁徙很重要的扩展;以及一种钠离子/钾离子泵的变体,这种变体是一种有价值的化学防御机制的基础。黑脉金斑蝶的基因组提高了我们理解长距离迁徙的遗传和分子基础的能力。
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