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Cold Nights Impair Leaf Growth and Cell Cycle Progression in Maize through Transcriptional Changes of Cell Cycle Genes

机译:寒冷的夜晚通过细胞周期基因的转录变化影响玉米叶片生长和细胞周期进程

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摘要

Low temperature inhibits the growth of maize (Zea mays) seedlings and limits yield under field conditions. To study the mechanism of cold-induced growth retardation, we exposed maize B73 seedlings to low night temperature (25°C /4°C, dayight) from germination until the completion of leaf 4 expansion. This treatment resulted in a 20% reduction in final leaf size compared to control conditions (25°C/18°C, dayight). A kinematic analysis of leaf growth rates in control and cold-treated leaves during daytime showed that cold nights affected both cell cycle time (+65%) and cell production (−22%). In contrast, the size of mature epidermal cells was unaffected. To analyze the effect on cell cycle progression at the molecular level, we identified through a bioinformatics approach a set of 43 cell cycle genes and analyzed their expression in proliferating, expanding, and mature cells of leaves exposed to either control or cold nights. This analysis showed that: (1) the majority of cell cycle genes had a consistent proliferation-specific expression pattern; and (2) the increased cell cycle time in the basal meristem of leaves exposed to cold nights was associated with differential expression of cell cycle inhibitors and with the concomitant down-regulation of positive regulators of cell division.
机译:低温会抑制玉米(Zea mays)幼苗的生长,并限制田间条件下的产量。为了研究冷诱导的生长迟缓的机理,我们将玉米B73幼苗从发芽到叶片4完全膨胀的过程中暴露于低夜间温度(25°C / 4°C,昼/夜)。与对照条件(25°C / 18°C,日/夜)相比,该处理导​​致最终叶片尺寸减少了20%。对白天对照叶和冷处理叶的叶片生长速率进行的运动学分析表明,寒冷的夜晚会影响细胞周期时间(+ 65%)和细胞产量(−22%)。相反,成熟表皮细胞的大小不受影响。为了在分子水平上分析对细胞周期进程的影响,我们通过生物信息学方法鉴定了一组43个细胞周期基因,并分析了它们在暴露于对照或寒冷的夜晚的叶片的增殖,扩展和成熟细胞中的表达。该分析表明:(1)大多数细胞周期基因具有一致的增殖特异性表达模式; (2)暴露于寒冷的夜晚叶片的基础分生组织中细胞周期时间的增加与细胞周期抑制剂的差异表达以及伴随的细胞分裂正调节剂的下调有关。

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