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How does climate influence xylem morphogenesis over the growing season? Insights from long-term intra-ring anatomy in Picea abies

机译:气候在生长期如何影响木质部形态发生?云杉的长期环内解剖的见解

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摘要

>Background and Aims During the growing season, the cambium of conifer trees produces successive rows of xylem cells, the tracheids, that sequentially pass through the phases of enlargement and secondary wall thickening before dying and becoming functional. Climate variability can strongly influence the kinetics of morphogenetic processes, eventually affecting tracheid shape and size. This study investigates xylem anatomical structure in the stem of Picea abies to retrospectively infer how, in the long term, climate affects the processes of cell enlargement and wall thickening. >Methods Tracheid anatomical traits related to the phases of enlargement (diameter) and wall thickening (wall thickness) were innovatively inspected at the intra-ring level on 87-year-long tree-ring series in Picea abies trees along a 900 m elevation gradient in the Italian Alps. Anatomical traits in ten successive tree-ring sectors were related to daily temperature and precipitation data using running correlations. >Key Results Close to the altitudinal tree limit, low early-summer temperature negatively affected cell enlargement. At lower elevation, water availability in early summer was positively related to cell diameter. The timing of these relationships shifted forward by about 20 (high elevation) to 40 (low elevation) d from the first to the last tracheids in the ring. Cell wall thickening was affected by climate in a different period in the season. In particular, wall thickness of late-formed tracheids was strongly positively related to August–September temperature at high elevation. >Conclusions Morphogenesis of tracheids sequentially formed in the growing season is influenced by climate conditions in successive periods. The distinct climate impacts on cell enlargement and wall thickening indicate that different morphogenetic mechanisms are responsible for different tracheid traits. Our approach of long-term and high-resolution analysis of xylem anatomy can support and extend short-term xylogenesis observations, and increase our understanding of climate control of tree growth and functioning under different environmental conditions.
机译:>背景和目标在生长期,针叶树的形成层会产生连续的木质部细胞排行,即气管,在死亡和起作用之前依次经历扩大和次生壁增厚的阶段。气候多变性可以强烈影响形态发生过程的动力学,最终影响气管的形状和大小。这项研究调查了青海云杉茎中木质部的解剖结构,以回顾性推断长期气候如何影响细胞扩大和壁增厚的过程。 >方法在青海云杉树中长达87年的树轮系列上,在环内水平上创新地检查了与膨胀(直径)和壁增厚(壁厚)有关的气管解剖特征。沿意大利阿尔卑斯山的900 m海拔梯度。使用运行相关性,将十个连续的树木年轮部门的解剖特征与每日温度和降水数据相关。 >主要结果:接近垂直树的极限,较低的初夏温度会对细胞的扩大产生负面影响。在海拔较低的地方,初夏的水供应量与细胞直径成正比。这些关系的时间从环中的第一个气管到最后一个气管向前移了大约20(高海拔)到40(低海拔)d。细胞壁增厚在季节的不同时期受气候影响。特别是,后期形成的气管的壁厚与高海拔8月至9月的温度成正相关。 >结论:生长期依次形成的气管的形态发生受连续时期气候条件的影响。气候对细胞扩大和壁增厚的明显影响表明,不同的形态发生机制是造成不同气管性状的原因。我们对木质部解剖结构进行长期和高分辨率分析的方法可以支持和扩展短期木本植物的观察,并增加我们对树木生长和在不同环境条件下运行的气候控制的理解。

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