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Climatic influences on wood anatomy and tree-ring features of Great Basin conifers at a new mountain observatory

机译:气候对新山天文台大盆地针叶树木材解剖结构和年轮特征的影响

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摘要

• Premise of the study: A network of mountain observing stations has been installed in the Great Basin of North America. NevCAN (Nevada Climate-ecohydrological Assessment Network), which spans a latitudinal range of 2.5° and two elevation ranges of about 2000 m each, enabled us to investigate tree growth in relation to climate.• Methods: We analyzed wood anatomy and tree-ring characteristics of four conifer species in response to different levels of water availability by comparing a low- and a high-elevation population. Chronologies of earlywood and latewood widths, as well as cellular parameters, were developed from the year 2000 to 2012.• Results: At the southern (drier and warmer) sites, Pinus monophylla had smaller cell lumen, tracheid diameter, and cell wall thickness. Pinus monophylla and P. flexilis showed bigger cellular elements at the higher elevations, whereas the opposite pattern was found in Picea engelmannii and Pinus longaeva. When all species and sites were pooled together, stem diameter was positively related with earlywood anatomical parameters.• Discussion: We have provided a glimpse of the applications that NevCAN, as a new scientific tool, could allow in the general field of botany. In particular, we were able to investigate how differences in water stress related to elevation lead to changes in xylem anatomy.
机译:•研究前提:北美大盆地已建立了山地观测站网络。 NevCAN(内华达州气候生态水文评估网络)横跨2.5°的纬度范围和两个各自约2000 m的海拔范围,使我们能够研究与气候有关的树木生长。•方法:我们分析了木材解剖结构和树木年轮比较高海拔和低海拔种群,四种针叶树种对不同水利用水平的响应特征。从2000年到2012年,开发了早木和晚木宽度的时序表以及细胞参数。•结果:在南部(干燥和较热)的位置,单生松的细胞内腔,管胞直径和细胞壁厚度较小。在更高的海拔上,单松和柔韧性假单胞菌显示出较大的细胞成分,而在云杉和长松中发现相反的模式。当所有物种和场所集中在一起时,茎的直径与早木的解剖参数呈正相关。•讨论:我们提供了NevCAN作为一种新的科学工具可以在植物学一般领域中应用的一瞥。特别是,我们能够研究与海拔高度相关的水分胁迫差异如何导致木质部解剖结构的变化。

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