SEQUENCING THE MICROBIAL COMMUNITY AT THE WESTERN CHANNEL OBSERVATORY / SEASONAL CHANGES IN DIVERSITY AND FUNCTION
SEQUENCING THE MICROBIAL COMMUNITY AT THE WESTERN CHANNEL OBSERVATORY / SEASONAL CHANGES IN DIVERSITY AND FUNCTION
批准号:
NE/F00138X/1
负责人:
Sohail Ali
金额:
$1.63万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2008
资助国家:
英国
项目状态:
已结题
起止时间:
2008 至 --
中文摘要
海洋生态系统对地球系统的运作至关重要。它在改变气候方面起着至关重要的作用,它们占地球上每年初级生产的一半,我们星球上大约三分之二的商品和服务是由沿海和开放海洋生态系统提供的。这些环境以细菌和古细菌等微生物为主,它们驱动所有全球生物地球化学循环,并通过产生化学活性生物气体对大气产生直接影响。因此,海洋的生物地球化学是微生物活动的结果,了解地球系统需要对海洋微生物进行大量的研究。大量的微生物及其巨大的代谢多样性表明,遗传多样性和功能远远高于迄今为止所研究的。Craig Venter (Venter et al., 2004)的研究首先证明了海洋环境中微生物多样性的巨大程度,他对几百升马尾藻海水产生的一个散弹枪克隆文库进行了桑格序列分析。这项极其昂贵的序列分析在1800种微生物中发现了120万个新基因,其中包括150种新的细菌。他们在马尾藻中发现的基因数量之多令人震惊,这进一步支持了海洋微生物生命比预期的要丰富和多样得多的观点。为了扩大这种多样性水平,将其与人类基因组中的基因数量进行比较是相关的/目前认为包括20,000 - 25,000个基因。该提案是为了扩大pgp资助的水生微生物宏基因组学项目的产出,因为它利用了最近可用的新型测序方法焦磷酸测序,该方法已由454生命科学公司(美国)开发。一次典型的焦磷酸测序从一个样本中产生大约400,000个序列。由于这是目前资助的PGP项目的延伸,我们不要求工资费用。我们要求指导委员会考虑提供100%的测序费用(目前NERC规则只允许80%)。我们建议使用新的高通量焦磷酸测序方法来分析nerc资助的西海峡天文台(WCO)的细菌和古细菌的遗传多样性和功能。我们将使用这种方法来评估以季节周期为特征的成分和功能的变化。所提出的焦磷酸测序方法的输出将产生大约320万个序列读取。基于250 bp的平均读取长度,这将产生大约8亿bp的遗传信息,包括大约200 - 400个细菌基因组当量。总之,重要的是要理解这个项目在两点上是新颖的。首先,该项目将首次大规模分析同一样品中存在的微生物的多样性和活性,并评估不同季节对两者的影响。其次,我们将采用的分子方法首次使用新的高通量焦磷酸测序技术来分析整个微生物群落的基因表达。
英文摘要
The marine ecosystem is crucial for the functioning of the Earth system. It plays an essential part in modifying the climate, they account for half of the annual primary production on the planet and about two thirds of goods and services from our planet are provided by coastal and open ocean ecosystems. These environments are dominated by microorganisms, such as bacteria and archaea, which drive all global biogeochemical cycles and have a direct influence on the atmosphere by the production of chemically-active biogases. Therefore the biogeochemistry of the oceans is the consequence of microbial activity and understanding the Earth System requires a significant research effort on marine microbes. The enormous number of microbes and their vast metabolic diversity, suggests that the genetic diversity and function is far higher than that investigated so far. The huge extent of the microbial diversity in the marine environment was first demonstrated by the study of Craig Venter (Venter et al., 2004) who used Sanger sequence analysis of a shot-gun clone library produced from of a few hundred litres of the Sargasso Sea water. This extremely expensive sequence analysis found 1.2 million new genes within 1800 species of microbes, including 150 new species of bacteria. The sheer number of genes they found in the Sargasso is astounding and further supports the notion that the microbial life in the ocean is far more abundant and diverse than expected. In order to scale this level of diversity it is relevant to compare it with the number of genes in the human genome / currently thought to comprise 20,000 - 25,000 genes. This proposal is to extent the output from the PGP-funded project on Aquatic Microbial Metagenomics in that it utilises on the recently available novel sequencing methodology of pyrosequencing, which has been developed by 454 Life Sciences, Inc. (USA). A typical pyrosequencing run generates ca. 400,000 sequences from one sample. As it is an extention of the currently funded PGP project we do not request salary costs. We request the steering committee to consider providing 100% of the sequencing costs (currently NERC rules only allow 80%). We propose to use the novel high-throughput pyrosequencing approach to analyse both the genetic diversity and function of the bacteria and archaea at the NERC-funded Western Channel Observatory (WCO). We will use this approach to assess the changes in the composition and function that are characterised by seasonal cycles. The output of the proposed pyrosequencing approach will generate some 3.2 million sequence reads. Based on an average read length of 250 bp, this will produce approximately 800 million bp of genetic information comprising approximately 200 - 400 bacterial genome equivalents. In conclusion, it is important to understand that this project is novel in two points. Firstly, and for the first time on a large scale this project will analyse both the diversity and the activity of the microbes present in the same sample, as well as assessing the influence of different seasons on both. And secondly, the molecular approach that we will employ uses for the first time the new high-throughput pyrosequencing technique to analyse the gene expression of a whole microbial community.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1371/journal.pone.0015545
发表时间:
2010-11-29
期刊:
PloS one
影响因子:
3.7
作者:
[Gilbert JA, Field D, Swift P, Thomas S, Cummings D, Temperton B, Weynberg K, Huse S, Hughes M, Joint I, Somerfield PJ, Mühling M]
通讯作者:
Mühling M
DOI:
10.1186/2042-5783-1-4
发表时间:
2011-06-14
期刊:
Microbial informatics and experimentation
影响因子:
--
作者:
[Larsen PE, Collart FR, Field D, Meyer F, Keegan KP, Henry CS, McGrath J, Quinn J, Gilbert JA]
通讯作者:
Gilbert JA
DOI:
10.4056/sigs.1202536
发表时间:
2010-10-27
期刊:
Standards in genomic sciences
影响因子:
--
作者:
[Gilbert JA, Meyer F, Schriml L, Joint IR, Mühling M, Field D]
通讯作者:
Field D
Integrated approach to cost effective production of biodiesel from photosynthetic microbes
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批准号:BB/H014233/1
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项目类别:Research Grant
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资助金额:$104.93万
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财政年份:2009
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负责人:Sohail Ali
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依托单位:
SeaScreen: expanding a bioprocess repertoire by smart marine microbe screening.
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批准号:DT/E011047/1
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项目类别:Research Grant
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资助金额:$33.35万
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财政年份:2007
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负责人:Sohail Ali
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依托单位:
国内基金
海外基金
水热炭的微生物陈化(Microbial-aged Hydrochar)及其对稻田氨挥发的影响机制
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批准号:41877090
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项目类别:面上项目
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资助金额:61.0万元
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批准年份:2018
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负责人:冯彦房
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依托单位: