14CONFAP From Comparative genomics to Phylogenomics: uncovering the genomic complexity and evolutionary adaptations of twenty species of protozoa
14CONFAP From Comparative genomics to Phylogenomics: uncovering the genomic complexity and evolutionary adaptations of twenty species of protozoa
批准号:
BB/M029239/1
负责人:
Matthew Clark
金额:
$5.59万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2015
资助国家:
英国
项目状态:
已结题
起止时间:
2015 至 --
中文摘要
在具有细胞的生物体(如我们自己的细胞)(真核生物)和不含细胞核的细菌细胞之间存在一种基本的分裂。绝大多数真核生物物种是单细胞生物或原生动物,显示出巨大的遗传多样性,导致生物学上的巨大变化,无数的形式和功能。只有少数原生动物群体出现了寄生动物(如人类)的能力。动质体和双单胞菌就是这样的两类原生动物,它们被认为是在最后一个真核生物共同祖先(接近真核生物树的根)之后不久从动物谱系中分化出来的。在这两个群体中,都有重要但被忽视的人类病原体-引起致命的媒介传播的锥虫病和利什曼病的病原体;引起水媒的迪亚霍里亚病、贾第虫病和各种其他致病物种以及自由生活而不是寄生的自由生活物种的病原体。比较这些群体的致病性和非致病性成员的基因组将突出显示编码蛋白质的基因组的进化,这些蛋白质的作用是规避动物宿主的防御,这些生物体的致病性和毒力取决于这些蛋白质。这类基因也是疫苗接种、药物和单克隆疗法的关键目标,该提案汇集了来自巴西FioCruz研究所、TGAC和联合王国东安格利亚大学的寄生虫学家、原生动物学家、进化生物学家、基因组生物学家和生物信息学家的专家小组。该项目承诺提供第一批高质量的基因组序列的20个动质体和pneumonad基因组。选定的基因组将涵盖这些群体遗传多样性的广度,并将与关键致病物种的现有基因组数据一起进行分析。所涉及的技术是最先进的,并不断升级,期望产生的基因组和转录组将具有最高的质量。双方将相互交流专业知识,通过主要人员和学生的互访促进技术和分析技术的双向知识转移。我们的基本策略是培养微生物,利用欧胜新兴病原体实验室培养该组的致病成员。我们将使用离液缓冲液收集和纯化核酸,以破坏细胞和用于核酸纯化的二氧化硅亲和力。我们将使用混合的方法和技术来组装高质量的基因组,包括全基因组测序和基因组的光学图谱和RNA-seq来划定转录组。最后,我们将联合收割机的数据集为每个血统推断细节基因组的复杂性有关的进化适应寄生生活方式。在这样做的过程中,我们将建立英国和巴西的研究人员之间的可持续合作,这将导致出版物,并在该领域的新的合作,可以建立未来的projects.Overall的实质性进展,这些分析的目的是增加洞察功能生物学的两组不同的鞭毛原生动物,独立地从自由生活的有机体演变为主要的人类和动物病原体。每个群体在生物学上都是独特的,并且通过细胞和分子生物学中的特性来定义-阐明这些特性如何进化并继续发展,以及它们对这些不同谱系中寄生虫进化的贡献是基础生物学,也将是这项工作的主要目标。
英文摘要
A fundamental schism exists between organisms with cells such as our own which contain nuclei (eukaryotes), and bacterial cells which do not. The vast majority of eukaryote species are single celled organisms or protozoa displaying enormous genetic diversity leading to huge variation in biology, myriad form and function. In just a few groups of protozoa the ability to parasitize animals such as ourselves has arisen. Kinetoplastids and Diplomonads are two such groups of protozoa which are believed to have diverged from the animal lineage not long after the last eukaryotic common ancestor (close to the root of the eukaryotic tree). Within both groups are important but neglected pathogens of humans - those which cause the deadly vector-borne trypanosomiases and leishmanias; and those that cause the waterborne diahorrea, giardiasis and a variety of other pathogenic species and free living species which are free living rather than parasitic. Comparison of the genomes from pathogenic and apathogenic members of these groups will highlight the evolution of groups of genes encoding proteins which act to circumvent the defences of animal hosts and upon which the pathogenicity and virulence of these organisms depends. Such genes are also key targets for vaccination, drug and monoclonal therapeutics.The proposal brings together an expert team of parasitologists, protozoologists, evolutionary biologists, genome biologists and bioinformaticians from the FioCruz Institute in Brazil and from TGAC and the University of East Anglia in the United Kingdom. The project undertakes to deliver the first high quality genome sequences of twenty kinetoplastid and diplomonad genomes. The genomes selected will span the breadth of the genetic diversity in these groups and will be analysed in concert with existing genomic data from the key pathogenic species. The technology involved is state of the art and constantly upgraded and the expectation is that the genomes and transcriptomes produced will be of the highest possible quality. There will be a reciprocal exchange of expertise, with bidirectional knowledge transfer of technical and analytical techniques facilitated by exchange visits of key personnel and students.Our basic strategy will be to culture the organisms, making use of the Wolfson laboratory for emerging pathogens at UEA for the culture of the pathogenic members of the group. We will harvest and purify the nucleic acid using a chaotropic buffer to disrupt the cells and silica affinity for nucleic acid purification. Will we use a mixture of methods and technologies to assemble high quality genomes including whole genome sequencing and optical mapping for the genomes and RNA-seq to delimit the transcriptome. Finally, we will combine the data sets for each lineage to infer details from the genomic complexity relating to evolutionary adaptations for parasitic lifestyle. In so doing we will establish sustainable collaborations between UK and Brazilian researchers that will lead to publications, and substantial advances in the field upon which the new collaborations can build future projects.Overall, the purpose of these analyses is to add insight into the functional biology of two groups of divergent flagellated protozoans which have independently evolved from free living organisms to major human and animal pathogens. Each group is biologically distinctive and famously defined by peculiarities in cell and molecular biology - elucidating how these peculiarities have evolved and continue to do and their contribution to the evolution of parasitism in these distinct lineages is fundamental biology and will be the primary objective of this work.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1093/gbe/evx152
发表时间:
2017-08-01
期刊:
Genome biology and evolution
影响因子:
3.3
作者:
[Kelly S, Ivens A, Mott GA, O'Neill E, Emms D, Macleod O, Voorheis P, Tyler K, Clark M, Matthews J, Matthews K, Carrington M]
通讯作者:
Carrington M
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