• Structural annotation is the foundation of all genomics as without accurate gene models understanding gene function or evolution of genes across taxa can be impeded.

    结构注释所有基因组学基础因为没有准确基因模型分类群理解基因功能基因进化可能受阻碍的。

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  • To find unknown protein-coding genes, annotation pipelines use a combination of ab initio gene prediction and similarity to experimentally confirmed genes or proteins.

    为了找出编码蛋白质的基因注释流程结合“从头开始的基因预测方法”和“与已知基因相似性比较”这两种方法。

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  • In this paper, drawbacks in the annotation of gene function currently used in genomics and some strategies beneficial to the annotation of gene function are discussed.

    本文综合讨论了目前基因组基因功能注释存在问题解决这些问题的策略与方法

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  • Coupling structural and functional annotation across genomes in a comparative manner promotes more accurate annotation as well as an understanding of gene and genome evolution.

    比较方式进行基因组联合结构注释功能注释促进了准确的注释以及基因基因组进化理解

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  • Structural annotation is dependent on sensitive, specific computational programs and deep experimental evidence to identify gene features within genomic DNA.

    结构注释依赖敏感的、特异的计算程序深刻实验证据识别基因组DNA中的基因特征

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  • Standard Affymetrix probe set annotation is gene-centered, i. e. probe set is precisely linked to gene, and probe set expression is interpreted as gene expression.

    标准探针注释是以基因为中心,也就是将探针集与特定的基因关联起来,而且探针集的表达谱最终会翻译成基因表达谱。

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  • Standard Affymetrix probe set annotation is gene-centered, i. e. probe set is precisely linked to gene, and probe set expression is interpreted as gene expression.

    标准探针注释是以基因为中心,也就是将探针集与特定的基因关联起来,而且探针集的表达谱最终会翻译成基因表达谱。

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