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Brain transcriptome sequencing and assembly of three songbird model systems for the study of social behavior

机译:脑转录组测序和三种用于社会行为研究的鸣禽模型系统的组装

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摘要

Emberizid sparrows (emberizidae) have played a prominent role in the study of avian vocal communication and social behavior. We present here brain transcriptomes for three emberizid model systems, song sparrow Melospiza melodia, white-throated sparrow Zonotrichia albicollis, and Gambel’s white-crowned sparrow Zonotrichia leucophrys gambelii. Each of the assemblies covered fully or in part, over 89% of the previously annotated protein coding genes in the zebra finch Taeniopygia guttata, with 16,846, 15,805, and 16,646 unique BLAST hits in song, white-throated and white-crowned sparrows, respectively. As in previous studies, we find tissue of origin (auditory forebrain versus hypothalamus and whole brain) as an important determinant of overall expression profile. We also demonstrate the successful isolation of RNA and RNA-sequencing from post-mortem samples from building strikes and suggest that such an approach could be useful when traditional sampling opportunities are limited. These transcriptomes will be an important resource for the study of social behavior in birds and for data driven annotation of forthcoming whole genome sequences for these and other bird species.
机译:灰雀麻雀(emberizidae)在鸟类的声音交流和社会行为研究中发挥了重要作用。我们在这里展示了三种栓塞模型系统的脑转录组,即歌雀麻雀Melospiza melodia,白喉麻雀Zonotrichia albicollis和Gambel白冠麻雀Zonotrichia leucophrys gambelii。每个装配体全部或部分覆盖了斑马雀Taeniopygia guttata中超过89%的先前注释的蛋白质编码基因,分别在歌曲,白喉和白冠麻雀中分别具有16,846、15,805和16,646个独特的BLAST匹配。 。与以前的研究一样,我们发现起源组织(听觉前脑与下丘脑和整个大脑)是整体表达谱的重要决定因素。我们还演示了从建筑物罢工的事后采样中成功分离出RNA和RNA序列的方法,并建议在传统采样机会有限的情况下,这种方法可能会有用。这些转录组将是研究鸟类的社会行为以及这些和其他鸟类物种即将到来的全基因组序列的数据驱动注释的重要资源。

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