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Uncovering genes contributing to exceptional longevity and immunity in bats by comparative genomic analysis across all bat families

Uncovering genes contributing to exceptional longevity and immunity in bats by comparative genomic analysis across all bat families
通过对所有蝙蝠家族进行比较基因组分析,发现有助于蝙蝠超长寿命和免疫力的基因
批准号:
429315656
负责人:
Professor Dr. Michael Hiller
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
翻译
蝙蝠是唯一进化出动力飞行的哺乳动物,并表现出在其他哺乳动物中很少发现的特征。蝙蝠的平均寿命是不飞行的哺乳动物的三倍,在校正身体尺寸后,它们很少患癌症。对人类致命的病毒感染在蝙蝠中通常是无症状的,因为它们的免疫系统能够有效地抑制炎症免疫反应。因此,蝙蝠是健康衰老和增强对肿瘤发生和传染病的抵抗力的重要模型,这与人类衰老,癌症和炎症相关疾病有关。然而,蝙蝠长寿和免疫力的分子机制仍不清楚。为了对蝙蝠长寿和免疫力相关基因提供新的见解,我们将对所有21个已知蝙蝠家族的高质量基因组进行全面的比较分析。为此,我们将使用最大证据的方法,整合同源性为基础的,从头和转录组为基础的基因预测生成所有21个家庭的代表性物种的基因注释。为了揭示可能有助于长寿和免疫的基因,我们将系统地揭示蝙蝠中表现出突变丧失或获得功能特征的基因。具体来说,在建立比较基因组学方法的基础上,我们将筛选蝙蝠中失活的祖先基因,在宽松或积极选择下进化的基因,这种前所未有的对所有蝙蝠家族的基因组分析将为蝙蝠的进化和非凡长寿和免疫力的基因组基础提供新的见解,并有望揭示未来有希望的目标。实验测试21个蝙蝠家族的高质量参考基因注释代表了具有长期价值的重要资源,因为它们能够在未来测序的数百只蝙蝠中进行比较基因注释。
英文摘要
Bats are the only mammals that evolved powered flight and exhibit traits that are rarely found in other mammals. Bats live on average three-times longer than non-flying mammals after correcting for body size and they rarely get cancer. Infections with viruses that are deadly for humans is often asymptomatic in bats, because their immune system is able to efficiently dampen inflammatory immune responses. Thus, bats are important models for healthy aging and enhanced resistance to tumorigenesis and infectious diseases, which is relevant for human senescence, cancer, and inflammation-related disorders. However, the molecular mechanisms underlying their exceptional longevity and unique immunity remain elusive.To provide novel insights into the genes that are involved in exceptional longevity and immunity of bats, we will conduct a comprehensive comparative analysis of high-quality genomes of all 21 recognized bat families. To this end, we will generate gene annotations for representative species of all 21 families using a maximum evidence approach that integrates homology-based, de novo and transcriptome-based gene predictions. To reveal genes that likely contribute to longevity and immunity, we will systematically uncover genes that exhibit mutational loss- or gain-of-function signatures in bats. Specifically, building on established comparative genomics approaches, we will screen for ancestral genes that are inactivated in bats, genes that evolved under relaxed or positive selection, and novel genes that arose in bats.This unprecedented genomic analysis across all bat families will provide new insights into the evolution and the genomic basis of exceptional longevity and immunity in bats and is expected to reveal promising targets for future experimental tests. The generated high-quality reference gene annotations of 21 bat families represent an important resource of long term value as they enable comparative gene annotation in hundreds of bats that will be sequenced in future.
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A comparative approach to discover the genomic determinants of natural adaptations to a sugar-rich diet in nectarivorous birds
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Combining computational and experimental methods of analyze gene expression divergence by loss of conserved non-coding elements
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    81917623
  • 项目类别:
    Research Fellowships
  • 资助金额:
    $0.0万
  • 财政年份:
    2008
  • 负责人:
    Professor Dr. Michael Hiller
  • 依托单位:
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  • 批准号:
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  • 项目类别:
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  • 资助金额:
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    30870897
  • 项目类别:
    面上项目
  • 资助金额:
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    60871014
  • 项目类别:
    面上项目
  • 资助金额:
    35.0万元
  • 批准年份:
    2008
  • 负责人:
    王进科
  • 依托单位: