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1.
Functional genomics of wood quality and properties   总被引:1,自引:0,他引:1  
Genomics promises to enrich the investigations of biology and biochemistry. Current advancements in genomics have major implications for genetic improvement in animals, plants, and microorganisms, and for our understanding of cell growth, development, differentiation, and communication. Significant progress has been made in the understanding of plant genomics in recent years, and the area continues to  相似文献   

2.
微生物基因数据库在氮循环功能基因注释中的应用   总被引:5,自引:2,他引:3  
张博雅  余珂 《微生物学通报》2020,47(9):3021-3038
氮循环是微生物和化学过程介导的生物地球化学循环。利用基因测序技术研究环境中参与氮循环的微生物群落、微生物及功能基因,是环境基因组学和微生物生态学的重要研究热点。近年来,各种类型的数据库被开发并应用到功能分析中。本文结合时下最新研究成果,聚焦由微生物引起的同化硝酸盐还原作用、异化硝酸盐还原作用、反硝化作用、固氮作用、硝化作用(包括完全氨氧化作用)和厌氧氨氧化作用等6种无机氮循环途径的功能基因,对比了National Center for Biotechnology Information (NCBI)、Integrated Microbial Genomes (IMG)、Universal Protein (UniProt)、Kyoto Encyclopedia of Genes and Genomes (KEGG)、Protein Families (Pfam)、Functional Gene (FunGene)、Clusters of Orthologous Groups (COG)和NCycDB等数据库的设计理念和功能特点,并结合环境介质、表征基因、分析方法和比对方法等影响因素,分析了以上数据库在氮循环功能基因注释中的选择及应用方式,展望了未来氮循环基因数据库的发展方向,以期为研究人员了解氮循环基因家族和选择合适的数据分析平台提供参考。  相似文献   

3.
徐晓宇  刘和 《微生物学通报》2007,34(4):0765-0768
功能基因组学以揭示基因组的功能及调控机制为目标,是21世纪最热门的研究领域之一。近来功能基因组学领域的研究被用于工业微生物的研究中,该文对功能基因组学在工业微生物中的应用做了简单综述。  相似文献   

4.
小麦的比较基因组学和功能基因组学   总被引:12,自引:1,他引:11  
小麦是异源多倍体植物,具有大的染色体组,并且基因组中重复序列所占比例较高,这些特征限制了小麦基因组研究的进展。比较基因组学方法为运用模式植物进行小麦基因组学研究提供了一个操作平台。功能基因组学的研究集中于基因组中转录表达的部分,基因功能的确定是功能基因组学研究的主要内容。对比较基因组学在小麦基因组研究中的应用和小麦功能基因组学的研究内容和方法进行了综述。  相似文献   

5.
Functional genomics has revolutionised the way that scientists approach biological questions, allowing for the comprehensive characterisation of the function of related proteins encoded in a genome. The sequencing of the genome of the model system Arabidopsis thaliana has enabled the beginning of functional genomics and the study of protein kinase families in plants. The large family of genes encoding protein kinases is a primary target of functional genomics studies in plants due to their importance in diverse physiological processes. This paper describes the functional genomics tools used to study the families of protein kinases in Arabidopsis, as well as progress in uncovering the functions of these proteins.  相似文献   

6.
Functional genomics provides new opportunities to address issues of fundamental interest in evolutionary biology and suggests many new research directions that are ripe for evolutionary investigation. New types of data, and the ability to study biological processes from a whole genome perspective, are likely to have a profound impact on evolutionary biology and ecology. To illustrate, we discuss how genomewide gene expression studies can be used to reformulate questions about trade-offs and pleiotropy. We then touch on some of the new research opportunities that the application of functional genomics affords to evolutionary biologists. We end with some brief notes about how evolutionary biology and comparative approaches will probably have an impact on functional genomics.  相似文献   

7.
植物功能基因组学研究进展   总被引:9,自引:0,他引:9  
植物功能基因组学是从整体水平研究基因的功能及表达规律的科学。对植物功能基因组学的研究将助于我们对基因功能的理解和对植物性状的定性改造和利用。本文简要介绍了植物功能基因组学的概念、研究方法和最新研究进展。  相似文献   

8.
Functional genomics has transformed from futuristic concept to well‐established scientific discipline during the last decade. Cotton functional genomics promise to enhance the understanding of fundamental plant biology to systematically exploit genetic resources for the improvement of cotton fibre quality and yield, as well as utilization of genetic information for germplasm improvement. However, determining the cotton gene functions is a much more challenging task, which has not progressed at a rapid pace. This article presents a comprehensive overview of the recent tools and resources available with the major advances in cotton functional genomics to develop elite cotton genotypes. This effort ultimately helps to filter a subset of genes that can be used to assemble a final list of candidate genes that could be employed in future novel cotton breeding programme. We argue that next stage of cotton functional genomics requires the draft genomes refinement, re‐sequencing broad diversity panels with the development of high‐throughput functional genomics tools and integrating multidisciplinary approaches in upcoming cotton improvement programmes.  相似文献   

9.
Functional annotation is routinely performed for large-scale genomics projects and databases. Researchers working on more specific problems, for instance on an individual pathway or complex, also need to be able to quickly, completely and accurately annotate sequences. The Bioverse sequence annotation server (http://bioverse.compbio.washington.edu) provides a web-based interface to allow users to submit protein sequences to the Bioverse framework. Sequences are functionally and structurally annotated and potential contextual annotations are provided. Researchers can also submit candidate genomes for annotation of all proteins encoded by the genome (proteome).  相似文献   

10.
基因组学研究随着模式生物基因组全序列测定的完成由结构基因组学阶段发展到功能基因组学阶段,基因组学成为当今最为活跃、最有影响的前沿学科.以结构基因组学的研究成果为基础,功能基因组学中各学科因其原理不同及其关键技术的特点和优势,具有各自的应用范畴和发展趋势.功能基因组学不断渗透入现代科学的各领域,促成了适用于不同研究目的新兴学科的诞生.  相似文献   

11.
林木基因组学研究进展   总被引:7,自引:0,他引:7  
林木基因组学研究进展迅速。结构基因组学方面,已构建了近40个主要造林树种的遗传连锁图谱,在不同树种中定位了30余个重要的数量性状位点,在部分树种中开展了基因组比较和综合图谱构建研究,杨树的全基因组测序已经完成,桉树的全基因组测序正在进行。功能基因组学方面,已分析了主要造林树种多种组织的转录组EST序列,对林木次生生长与木材形成、开花和抗寒性的形成等过程开展了功能基因组学研究。另外,探讨了林木基因组学研究的发展趋势,以期为我国林木基因组学研究提供有益的参考。  相似文献   

12.
13.
Stock centres for our animal models are as important as other scientific resources, such as the primary literature or genome databases. But they need forward planning, international cooperation and secure funding to keep pace with the explosion in functional genomics that relies so heavily on them.  相似文献   

14.
Molecular approaches for improvement of medicinal and aromatic plants   总被引:1,自引:0,他引:1  
Medicinal and aromatic plants (MAPs) are important sources for plant secondary metabolites, which are important for human healthcare. Improvement of the yield and quality of these natural plant products through conventional breeding is still a challenge. However, recent advances in plant genomics research has generated knowledge leading to a better understanding of the complex genetics and biochemistry involved in biosynthesis of these plant secondary metabolites. This genomics research also concerned identification and isolation of genes involved in different steps of a number of metabolic pathways. Progress has also been made in the development of functional genomics resources (EST databases and micro-arrays) in several medicinal plant species, which offer new opportunities for improvement of genotypes using perfect markers or genetic transformation. This review article presents an overview of the recent developments and future possibilities in genetics and genomics of MAP species including use of transgenic approach for their improvement.  相似文献   

15.
16.
The Functional Genomics Experiment data model (FuGE) has been developed to facilitate convergence of data standards for high-throughput, comprehensive analyses in biology. FuGE models the components of an experimental activity that are common across different technologies, including protocols, samples and data. FuGE provides a foundation for describing entire laboratory workflows and for the development of new data formats. The Microarray Gene Expression Data society and the Proteomics Standards Initiative have committed to using FuGE as the basis for defining their respective standards, and other standards groups, including the Metabolomics Standards Initiative, are evaluating FuGE in their development efforts. Adoption of FuGE by multiple standards bodies will enable uniform reporting of common parts of functional genomics workflows, simplify data-integration efforts and ease the burden on researchers seeking to fulfill multiple minimum reporting requirements. Such advances are important for transparent data management and mining in functional genomics and systems biology.  相似文献   

17.
Next‐generation technologies generate an overwhelming amount of gene sequence data. Efficient annotation tools are required to make these data amenable to functional genomics analyses. The Mercator pipeline automatically assigns functional terms to protein or nucleotide sequences. It uses the MapMan ‘BIN’ ontology, which is tailored for functional annotation of plant ‘omics’ data. The classification procedure performs parallel sequence searches against reference databases, compiles the results and computes the most likely MapMan BINs for each query. In the current version, the pipeline relies on manually curated reference classifications originating from the three reference organisms (Arabidopsis, Chlamydomonas, rice), various other plant species that have a reviewed SwissProt annotation, and more than 2000 protein domain and family profiles at InterPro, CDD and KOG. Functional annotations predicted by Mercator achieve accuracies above 90% when benchmarked against manual annotation. In addition to mapping files for direct use in the visualization software MapMan, Mercator provides graphical overview charts, detailed annotation information in a convenient web browser interface and a MapMan‐to‐GO translation table to export results as GO terms. Mercator is available free of charge via http://mapman.gabipd.org/web/guest/app/Mercator .  相似文献   

18.
In this report from the 1st European Conference of the European Science Foundation Programme on Functional Genomics, we provide coverage of the high-profile plenary talks and a cross-section of the many presentations in the disease analysis symposia and functional genomics technologies workshops.  相似文献   

19.
Protein phosphatases are the obligate partners of protein kinases in cellular control circuitry. Several specific roles of phosphatases have been revealed in plant systems through recent work capitalizing on functional genomics, interaction screens and activation-tagging approaches. Historically, the redundancy of genes that encode phosphatase functions has impeded genetic analysis in plant systems, and relatively few elucidated signaling pathways include protein phosphatases that have clearly defined substrates. Functional genomics, interaction and suppression screens, activation tagging and phosphoproteomics now hold great promise for identifying phosphatases that are active in signaling and regulation, and for revealing their in vivo substrates. This level of analysis will be essential for a full understanding of the effects of reversible protein phosphorylation in modulating and integrating cellular activities.  相似文献   

20.
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