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Localized cooling of stems induces latewood formation and cambial dormancy during seasons of active cambium in conifers

机译:针叶中的活性形成层季节茎的局部冷却导致晚材形成和冈比亚休眠。

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摘要

>Background and Aims In temperate regions, trees undergo annual cycles of cambial growth, with periods of cambial activity and dormancy. Environmental factors might regulate the cambial growth, as well as the development of cambial derivatives. We investigated the effects of low temperature by localized cooling on cambial activity and latewood formation in two conifers, Chamaecyparis obtusa and Cryptomeria japonica.>Methods A plastic rubber tube that contained cooled water was wrapped around a 30-cm-wide portion of the main stem of Chamaecyparis obtusa and Cryptomeria japonica trees during seasons of active cambium. Small blocks were collected from both cooled and non-cooled control portions of the stems for sequential observations of cambial activity and for anatomical measurements of cell morphology by light microscopy and image analysis.>Key Results The effect of localized cooling was first observed on differentiating tracheids. Tracheids narrow in diameter and with significantly decreased cambial activity were evident 5 weeks after the start of cooling in these stems. Eight weeks after the start of cooling, tracheids with clearly diminished diameters and thickened cell walls were observed in these stems. Thus, localized low temperature induced narrow diameters and obvious thickening of secondary cell walls of tracheids, which were identified as latewood tracheids. Two months after the cessation of cooling, a false annual ring was observed and cambium became active again and produced new tracheids. In Cryptomeria japonica, cambial activity ceased earlier in locally cooled portions of stems than in non-cooled stems, indicating that the cambium had entered dormancy sooner in the cooled stems.>Conclusions Artificial cooling of stems induced latewood formation and cessation of cambial activity, indicating that cambium and its derivatives can respond directly to changes in temperature. A decrease in the temperature of the stem is a critical factor in the control of cambial activity and xylem differentiation in trees.
机译:>背景和目标在温带地区,树木经历了一年一度的冈比亚生长周期,并有一段时间的冈比亚活动和休眠期。环境因素可能会调节冈比亚的增长以及冈比亚衍生物的发展。我们研究了局部冷却对两个针叶树Chamaecyparis obtusa和Cryptomeria japonica针叶林的活动和晚材形成的影响。>方法一根装有冷却水的塑料橡胶管缠绕在30厘米长的活动形成层期间,Chamaecyparis obtusa和Cryptomeria japonica树的主要茎的大部分。从茎的冷却和非冷却对照部分收集小块,用于顺序观察冈比亚活动,并通过光学显微镜和图像分析对细胞形态进行解剖学测量。>主要结果首先在区分气管上观察到。开始冷却后5周,明显缩小了气管的直径,并降低了冈比亚的活动。冷却开始八周后,在这些茎中观察到直径明显减小且细胞壁增厚的气管。因此,局部低温诱导了气管的次生细胞壁的狭窄直径和明显的增厚,这被认为是晚材气管。停止冷却两个月后,观察到假的年轮,形成层再次活跃并产生新的气管。在日本柳杉中,茎的局部冷却部位比非冷却的茎部位更早地停止了冈比亚活动,这表明形成层在冷却的茎杆中更早进入了休眠状态。>结论冈比亚活动的停止,表明形成层及其衍生物可以直接响应温度的变化。茎温度的降低是控制树木中的冈比亚活动和木质部分化的关键因素。

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