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LEXEN: Biodiversity of Microorganisms in Ancient Polar Ice

LEXEN: Biodiversity of Microorganisms in Ancient Polar Ice
LEXEN:古代极地冰中微生物的生物多样性
批准号:
9808676
负责人:
Scott Rogers
金额:
$37.5万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-10-01 至 2001-09-30

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中文摘要
翻译
从格陵兰岛和南极洲的极地冰的深核样本中可以发现数量惊人、种类繁多的微生物,这些微生物可能可以追溯到25万年前。尽管最近在这些古老的冰的样本中发现了丝状真菌、酵母菌、细菌和一种植物病毒——这些冰被小心地保护起来,不受现代污染物的污染——但还没有对这些核心进行系统的微生物调查。这些发现证实了冰川(极地)冰是一种天然的空气采样机制,它在地质时代中捕获了风运输的微生物。这些生物(代表极地地区特有的分类群,以及来自温带和热带地区的外来物种)起源于海浪作用产生的气溶胶、风传播的花粉和土壤颗粒、受感染的植物表面以及许多其他来源。因此,冰川冰提供了一个独特的全球微生物来源,呈现了当代和古代真菌,细菌的观点!以及病毒的多样性。这项工作的主要目标是在真菌、细菌和病毒的古代群落中描述微生物的生物多样性,以便与当代物种进行比较研究。具体目标是:查明和鉴定困在冰川冰中的地方性和外来真菌、细菌和病毒;在格陵兰岛和南极洲的同一年代的冰中识别出那些;并研究选择的持久性物种的系统发育和寿命。本研究的一个潜在目标是利用上述剖面来比较各种真菌、细菌和病毒的相对比例,并将它们与每个时间点的环境特征(气候条件、火山活动等)联系起来。需要验证的假设是:首先,感染人类、动物、植物和细菌的病毒是存在的,并且可以在极地冰中检测到。其次,同样的真菌、细菌和病毒出现在来自格陵兰岛和南极洲的相同年代的冰中。第三,特定的真菌、细菌和病毒(或它们的核酸)在冰中长期存在。从格陵兰岛和南极洲收集的岩心中陆续获得的更古老的冰层剖面将被用来检验这些假设。提出的时间和空间分析将把微生物多样性的评估扩展到地质时间框架。如果能够在从两极地区收集的年龄相近的冰中发现相同的微生物物种,作为全球分布的证据,那么它们就可以在随后的研究中用作全球气候变化、地质和人类活动的生物指标。因此,双相情感障碍研究是必不可少的。开发和测试的方案可能有助于未来在火星极地冰或最近发现的月球冰中寻找微生物。因此,为了便于比较,了解古代地球冰中存在哪些微生物是至关重要的。
英文摘要
ABSTRACTRogers, Scott9808676A surprising number and variety of microorganisms can be recovered from the interior of deep-core samples of polar ice in Greenland and Antarctica, perhaps dating back 250, 000 years. Although filamentous fungi, yeast, bacteria, and a plant virus have recently been detected in samples of this ancient ice--carefully protected from modern contaminants--systematic surveys of these cores for microbes have not been conducted These discoveries confirm the opinion that glacial (polar) ice is a natural air-sampling mechanism, which has trapped wind-transported microorganisms through geological epochs. These organisms (representing taxa that are endemic to the polar regions, as well as exotics from temperate and tropical regions) originated from aerosols generated by sea wave action, wind-borne pollen and soil particles, infected plant surfaces, and many other sources. Thus, glacial ice provides a unique global source of microorganisms that presents a view of both contemporary and ancient fungal, bacteria!, and viral diversity.The main goal of this work is to characterize microbial biodiversity within ancient communities of fungi, bacteria, and viruses for comparative studies with contemporary species. Specific objectives are to: identify and characterize endemic and exotic fungi, bacteria, and viruses entrapped in glacial ice; identify those in ice of the same age from both Greenland and Antarctica; and study phylogeny and longevity in selected persistent species. A potential objective of this study is to use the above profiles to compare the relative proportions of the various fungi, bacteria, and viruses, and to correlate these with environmental characteristics (climatic conditions, vulcanism, etc.) at each of the time points. Hypotheses to be tested are: First, viruses that infect humans, animals, plants, and bacteria are present and can be detected in polar ice. Second, identical fungi, bacteria, and viruses occur in ice of the same age from Greenland and Antarctica. Third, specific fungi, bacteria, and viruses (or their nucleic acids) persist in ice over long periods of time.Profiles of successively older ice strata from cores collected in Greenland and Antarctica will be utilized to test the hypotheses. The proposed temporal and spatial analyses will extend the assessment of microbial biodiversity to geologic timeframes. If identical microbial species can be detected in ice of similar age collected from both polar regions, as evidence of global distribution, they might then be utilized in subsequent studies as bioindicators of global changes in climate, and geologic and human activity. Thus, bipolar studies are essential. The protocols developed and tested may contribute to future searches for microorganisms in Martian polar ice or recently discovered lunar ice. Therefore, for comparative purposes it will be essential to know what microorganisms are present in ancient Earth ice.
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会议论文
Comprehensive Biological Study of Vostok Accretion Ice
  • 批准号:
    0536870
  • 项目类别:
    Standard Grant
  • 资助金额:
    $15.54万
  • 财政年份:
    2005
  • 负责人:
    Scott Rogers
  • 依托单位:
Life in Ancient Ice: A Workshop
  • 批准号:
    0196481
  • 项目类别:
    Standard Grant
  • 资助金额:
    $5.59万
  • 财政年份:
    2001
  • 负责人:
    Scott Rogers
  • 依托单位:
Life in Ancient Ice: A Workshop
海外基金