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Comparison of arabidopsis stomatal density mutants indicates variation in water stress responses and potential epistatic effects

机译:拟南芥气孔密度突变体的比较表明,水分胁迫反应的变化和潜在的上位效应

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Recent physiological analysis of Arabidopsis stomatal density (SD) mutants indicated that SD was not the major factor controlling aboveground biomass accumulation. Despite the general theory that plants with fewer stomata have limited biomass acquisition capabilities, epf1 and several other Arabidopsis mutants varied significantly in leaf fresh weight despite having similar stomatal numbers. The indepth mechanisms controlling increased or decreased leaf area biomass remain undetermined. This work used calculations of SD, overnight water-loss, and LI6400XT measurements to reject the premise that SD is a primary factor controlling leaf biomass accumulation in Arabidopsis. With respect to our data, SD is not the primary factor influencing biomass accumulation in Arabidopsis epf1 mutants as it did not positively correlate to any of the physiological parameters examined. Further observation of morphological differences between the mutants hinted that additional pathways were interrupted when these mutants were generated. Each mutant examined showed a variation in physiological measurements despite SD. Many SD mutants also showed morphological abnormalities in addition to altered stomatal numbers. These phenotypes may indicate epistatic effects related to the mutation of SD genes in the studied mutants.
机译:最近对拟南芥气孔密度(SD)突变体的生理分析表明,SD不是控制地上生物量积累的主要因素。尽管一般的理论认为,气孔较少的植物具有有限的生物量获取能力,但是尽管具有相似的气孔数量,但epf1和其他几个拟南芥突变体的叶片鲜重却发生了显着变化。控制叶面积生物量增加或减少的深入机制仍未确定。这项工作使用SD,过夜水分损失和LI6400XT测量值的计算来拒绝SD是控制拟南芥叶片生物量积累的主要因素的前提。关于我们的数据,SD不是影响拟南芥epf1突变体中生物量积累的主要因素,因为它与所检查的任何生理参数均无正相关。对突变体之间形态差异的进一步观察表明,当这些突变体产生时,其他途径被中断。尽管SD,但检查的每个突变体均显示出生理测量值的变化。除气孔数量改变外,许多SD突变体还显示出形态异常。这些表型可能表明与研究突变体中SD基因突变有关的上位性作用。

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