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Studying the Functional Genomics of Stress Responses in Loblolly Pine With the Expresso Microarray Experiment Management System

机译:用Expresso芯片实验管理系统研究火炬松中应激反应的功能基因组学

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摘要

Conception, design, and implementation of cDNA microarray experiments present a variety of bioinformatics challenges for biologists and computational scientists. The multiple stages of data acquisition and analysis have motivated the design of Expresso, a system for microarray experiment management. Salient aspects of Expresso include support for clone replication and randomized placement; automatic gridding, extraction of expression data from each spot, and quality monitoring; flexible methods of combining data from individual spots into information about clones and functional categories; and the use of inductive logic programming for higher-level data analysis and mining. The development of Expresso is occurring in parallel with several generations of microarray experiments aimed at elucidating genomic responses to drought stress in loblolly pine seedlings. The current experimental design incorporates 384 pine cDNAs replicated and randomly placed in two specific microarray layouts. We describe the design of Expresso as well as results of analysis with Expresso that suggest the importance of molecular chaperones and membrane transport proteins in mechanisms conferring successful adaptation to long-term drought stress.
机译:cDNA微阵列实验的概念,设计和实施对生物学家和计算科学家提出了各种生物信息学挑战。数据采集​​和分析的多个阶段推动了Expresso的设计,Expresso是用于微阵列实验管理的系统。 Expresso的重要方面包括对克隆复制和随机放置的支持;自动网格化,从每个点提取表达数据以及质量监控;灵活的方法,将来自各个地点的数据组合成有关克隆和功能类别的信息;以及将归纳逻辑编程用于更高级别的数据分析和挖掘。 Expresso的发展与几代旨在阐明火炬松幼苗对干旱胁迫的基因组反应的微阵列实验同时进行。当前的实验设计包含了384个松树cDNA,它们被复制并随机放置在两个特定的微阵列布局中。我们描述了Expresso的设计以及Expresso的分析结果,表明分子伴侣和膜转运蛋白在赋予成功适应长期干旱压力的机制中的重要性。

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