Comparative Genomics of Papaya Chromosomes
Comparative Genomics of Papaya Chromosomes
批准号:
0553417
负责人:
Ray Ming
金额:
$0.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-10-01 至 2009-08-31
中文摘要
番木瓜(Carica Papaya L.)是世界热带和亚热带地区的主要水果作物。木瓜是夏威夷的主要出口商品,佛罗里达州、德克萨斯州的格兰德河谷和加利福尼亚州南部也有木瓜生产。种植木瓜树既是为了果实,也是为了木瓜酶,木瓜酶是一种商业价值很高的蛋白水解酶。木瓜是为数不多的全年结果的植物之一,在种植后短短9个月内就能结出成熟的果实。番木瓜树可以存活25年或更长时间,每叶腋生一个或多个果实。番木瓜有雄性、雌性和两性,具有原始的Y染色体,这为研究性染色体进化和性别决定提供了独特的机会。动物的性染色体是古老的--大约有3亿年的历史,而Y染色体在遗传上受到侵蚀。开花植物大约出现在1.3亿-2亿年前,而植物性染色体的进化则是最近的。据估计,Silene属具有2000-2500万年的祖先,通常被认为包含真核生物中已知的最新进化的XY系统。然而,Silene中90%的Y染色体退化并抑制了重组。最近在木瓜中发现的原始Y染色体具有一个很小的雄性专一性区域,仅占Y染色体的10%左右。这个男性特异区(MSY)表现出更温和的退化和重组抑制。因此,木瓜系统似乎是迄今为止已知的最新进化的XY系统,为性染色体是如何开始进化的问题提供了潜在的见解。揭示植物性别决定过程将直接应用于木瓜、芦笋、菠菜、黑胡椒、山药和开心果等农作物的生产。这个项目试图探索初级性染色体的本质。将对木瓜MSY和相应的X-特异区进行测序和特征分析。为了估计非重组区域的古老程度,将计算X和Y基因对沿该区域的分化程度,并特别关注性别决定的候选基因(S)。比较X和Y DNA序列及其周围环境将揭示染色体重排的类型和程度以及转座元件在MSY退变中的作用。MSY相对于原始Y染色体着丝粒的相对位置将通过粗线期和纤维荧光原位杂交(FISH)分析来确定。项目结果DNA序列数据和跟踪文件将保存在基因库中,项目数据将在夏威夷农业研究中心(http://www.hawaiiag.org/harc))和佐治亚大学(http://www.plantgenome.uga.edu/).)的网站上提供细菌人工染色体(BAC)克隆将由佐治亚大学的植物基因组图谱实验室分发,并保存在公共BAC分发中心。
英文摘要
Papaya (Carica papaya L.) is a principal fruit crop of tropical and subtropical regions worldwide. Papaya fruit is a major export commodity in Hawaii, and is also in production in Florida, the Rio Grande Valley of Texas, and southern California. Papaya trees are grown for both fruit and papain, a commercially valuable proteolytic enzyme. Papaya is one of the few plant species which fruit throughout the year and can produce ripe fruit in as little as nine months from planting. A papaya tree may live for 25 years or longer, bearing continuously with one or more fruit in each leaf axil.Papaya has male, female, and hermaphrodite sexes, with a primitive Y chromosome that provides a unique opportunity to study sex chromosome evolution and sex determination. Sex chromosomes in animals are ancient - about 300 million years old, and Y-chromosomes are genetically eroded. Flowering plants appeared about 130-200 million years ago and plant sex chromosomes evolved more recently. The Silene genus with its estimated 20 - 25 million-year ancestry has generally been thought to contain the most recently evolved XY system known in eukaryotes. Yet 90% of the Y chromosome in Silene is degenerated and suppressed for recombination. The recently discovered primitive Y chromosome in papaya has a small male specific region that comprises only about 10% of the Y chromosome. This male specific region (MSY) shows much more moderate degeneration and suppression of recombination. Thus the papaya system appears to be the most recently evolved XY system known to date, offering potential insights into the question of how evolution of the sex chromosome began. Unraveling plant sex determination processes will have direct applications in production of crop plants such as papaya, asparagus, spinach, black pepper, yam, and pistachio. This project seeks to explore the nature of incipient sex chromosomes. The papaya MSY and the corresponding X-specific region will be sequenced and characterized. To estimate the antiquity of the non-recombining region, the extent of divergence of X and Y gene pairs along the region will be calculated, giving special attention to candidate gene(s) for sex determination. Comparing the X and Y DNA sequences and their surroundings will reveal types and extent of chromosomal rearrangements and the role of transposable elements in the degeneration of MSY. The relative position of MSY to the centromere of the primitive Y chromosome will be clarified by pachytene and fiber Fluorescent In Situ Hybridization (FISH) analyses. It is expected that this project will generate candidate genes for sex determination and embryo lethality for the papaya research community.Access to project outcomesDNA sequence data and trace files will be deposited in GenBank, and project data made available at the websites of Hawaii Agriculture Research Center (http://www.hawaiiag.org/harc) and University of Georgia (http://www.plantgenome.uga.edu/). Bacterial Artificial Chromosome (BAC) clones will be distributed by the Plant Genome Mapping Laboratory at the University of Georgia and also deposited in a public BAC distribution center.
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会议论文
RESEARCH-PGR: Genomic mechanisms of domesticating a Y chromosome in papaya
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批准号:1546890
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项目类别:Continuing Grant
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资助金额:$216.6万
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财政年份:2016
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负责人:Ray Ming
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依托单位:
The Origin and Evolution of Y Chromosomes in Caricaceae
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批准号:0922545
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项目类别:Continuing Grant
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资助金额:$379.62万
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财政年份:2009
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负责人:Ray Ming
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依托单位:
Comparative Genomics of Papaya Chromosomes
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批准号:0421803
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项目类别:Continuing Grant
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资助金额:$289.69万
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财政年份:2004
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负责人:Ray Ming
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依托单位:
国内基金
海外基金
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批准号:32072711
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项目类别:面上项目
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资助金额:58.0万元
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批准年份:2020
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负责人:郭松长
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依托单位:
Journal of Genetics and Genomics
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批准号:31224803
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项目类别:专项基金项目
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资助金额:24.0万元
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批准年份:2012
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负责人:于昕
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依托单位: