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Photosynthetic acclimation is reflected in specific patterns of gene expression in drought-stressed loblolly pine

机译:光合适应反映在干旱胁迫下火炬松基因表达的特定模式

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摘要

Because the product of a single gene can influence many aspects of plant growth and development, it is necessary to understand how gene products act in concert and upon each other to effect adaptive changes to stressful conditions. We conducted experiments to improve our understanding of the responses of loblolly pine (Pinus taeda) to drought stress. Water was withheld from rooted plantlets of to a measured water potential of -1 MPa for mild stress and -1.5 MPa for severe stress. Net photosynthesis was measured for each level of stress. RNA was isolated from needles and used in hybridizations against a microarray consisting of 2,173 cDNA clones from five pine expressed sequence tag libraries. Gene expression was estimated using a two-stage mixed linear model. Subsequently, data mining via inductive logic programming identified rules (relationships) among gene expression, treatments, and functional categories. Changes in RNA transcript profiles of loblolly pine due to drought stress were correlated with physiological data reflecting photosynthetic acclimation to mild stress or photosynthetic failure during severe stress. Analysis of transcript profiles indicated that there are distinct patterns of expression related to the two levels of stress. Genes encoding heat shock proteins, late embryogenic-abundant proteins, enzymes from the aromatic acid and flavonoid biosynthetic pathways, and from carbon metabolism showed distinctive responses associated with acclimation. Five genes shown to have different transcript levels in response to either mild or severe stress were chosen for further analysis using real-time polymerase chain reaction. The real-time polymerase chain reaction results were in good agreement with those obtained on microarrays.
机译:由于单个基因的产物可以影响植物生长和发育的许多方面,因此有必要了解基因产物如何协同作用以及如何相互作用,以适应胁迫条件下的适应性变化。我们进行了一些实验,以提高我们对火炬松(Pinus taeda)对干旱胁迫的反应的了解。从生根的小苗中抽出水,对于轻度胁迫,测得的水势为-1 MPa,对于重度胁迫,测定的水势为-1.5 MPa。测量每个压力水平的净光合作用。从针头分离RNA,并将其用于与微阵列杂交,该微阵列由来自五个松树表达序列标签文库的2,173个cDNA克隆组成。使用两阶段混合线性模型估计基因表达。随后,通过归纳逻辑编程进行的数据挖掘确定了基因表达,治疗和功能类别之间的规则(关系)。干旱胁迫导致火炬松RNA转录特征的变化与反映光合适应轻度胁迫或严重胁迫期间光合衰竭的生理数据相关。成绩单分析表明,有两种不同的压力表达模式。编码热激蛋白,晚期胚发生丰富蛋白,来自芳香酸和类黄酮生物合成途径以及碳代谢的酶的基因显示出与适应相关的独特反应。使用实时聚合酶链反应,选择显示对轻度或重度应激反应具有不同转录水平的五个基因进行进一步分析。实时聚合酶链反应结果与微阵列获得的结果吻合良好。

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