首页> 美国卫生研究院文献>Journal of Experimental Botany >Induction of PtoCDKB and PtoCYCB transcription by temperature during cambium reactivation in Populus tomentosa Carr.
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Induction of PtoCDKB and PtoCYCB transcription by temperature during cambium reactivation in Populus tomentosa Carr.

机译:毛白杨形成层再活化过程中温度诱导的PtoCDKB和PtoCYCB转录。

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摘要

Cell cycle progression requires interaction between cyclin-dependent kinase B (CDKB) and cyclin B (CYCB). The seasonal expression patterns of the CDKB and CYCB homologues from Populus tomentosa Carr. were investigated, and effects of temperature and exogenous indole-3-acetic acid (IAA) on their expression were further studied in water culture experiments. Based on the differential responses of dormant cambium cells to exogenous IAA, four stages of cambium dormancy were confirmed for P. tomentosa: quiescence 1 (Q1), rest, quiescence 2-1 (Q2-1), and quiescence 2-2 (Q2-2). PtoCDKB and PtoCYCB transcripts were strongly expressed in the active phases, weakly in Q1, and almost undetectable from rest until late Q2-2. Climatic data analysis showed a correlation between daily air temperature and PtoCDKB and PtoCYCB expression patterns. Water culture experiments with temperature treatment further showed that a low temperature (4 °C) kept PtoCDKB and PtoCYCB transcripts at undetectable levels, while a warm temperature (25 °C) induced their expression in the cambium region. Meanwhile, water culture experiments with exogenous IAA treatment showed that induction of PtoCDKB and PtoCYCB transcription was independent of exogenous IAA. The results suggest that, in deciduous hardwood P. tomentosa growing in a temperate zone, the temperature in early spring is a vital environmental factor for cambium reactivation. The increasing temperature in early spring may induce CDKB and CYCB homologue transcription in the cambium region, which is necessary for cambium cell division.
机译:细胞周期进程需要细胞周期蛋白依赖性激酶B(CDKB)和细胞周期蛋白B(CYCB)之间的相互作用。毛白杨CDKB和CYCB同源物的季节性表达模式。在水培养实验中,研究了温度和外源吲哚-3-乙酸(IAA)对其表达的影响。基于休眠的形成层细胞对外源IAA的差异反应,确定了毛白假单胞菌的四个阶段的形成层休眠:静止1(Q1),静止,静止2-1(Q2-1)和静止2-2(Q2) -2)。 PtoCDKB和PtoCYCB转录本在活跃期表达强烈,在Q1阶段较弱,从静止到Q2-2后期几乎无法检测到。气候数据分析显示每日气温与PtoCDKB和PtoCYCB表达模式之间存在相关性。经过温度处理的水培养实验进一步表明,低温(4 C)使PtoCDKB和PtoCYCB转录本保持在不可检测的水平,而温暖的温度(25 C)诱导它们在形成层中表达。同时,用外源IAA处理的水培养实验表明,PtoCDKB和PtoCYCB转录的诱导与外源IAA无关。结果表明,在温带地区生长的落叶阔叶毛白杨中,早春的温度是形成碳的重要环境因子。早春温度升高可能会在形成层区域诱导CDKB和CYCB同源转录,这是形成层细胞分裂所必需的。

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