首页> 外文期刊>Dendrochronologia >Vessel formation in relation to leaf phenology in pedunculate oak and European ash. (Special Issue: Monitoring wood formation.)
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Vessel formation in relation to leaf phenology in pedunculate oak and European ash. (Special Issue: Monitoring wood formation.)

机译:血管形成与叶片橡木和欧洲灰的叶子候选。 (特刊:监测木材形成。)

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The earlywood-vessel area of ring-porous species is related to environmental factors that prevailed during the time of vessel formation. However, limited knowledge is available on the time window during which environmental factors such as temperature, precipitation or flooding can be recorded in vessel area. The susceptibility of vessel area to capture these environmental signals is likely to be related to the timing and duration of vessel formation. Ring-porous species are known to have their new earlywood vessels formed before buds break to guarantee efficient water transport through the large earlywood vessels in the outermost tree ring. However, as leaf phenology differs in ring-porous species, also the timing of vessel formation may vary between species. In this study we investigated the timing and duration of earlywood-vessel formation in relation to phenological status in pedunculate oak (Quercus robur L.) and European ash (Fraxinus excelsior L.) growing at the same site. Microcores were taken from the stem periphery of ten oaks and five ashes in weekly intervals from March to the beginning of June in 2008. Leaf phenology was recorded in the same period. Vessel size was measured from the microcores to relate dynamics in vessel formation to the leaf phenological phases. We found that vessel formation in ash started well before bud swelling and much earlier as compared to oak. Although oak preceded ash in leaf phenology, earlywood-vessel formation in oak started on average more than 13 days later, but vessels enlarged faster than in ash. The formation of all earlywood vessels was completed in both species before leaves were fully expanded. These results indicate that timing and dynamics in vessel formation, as well as the relation between leaf phenology and vessel formation, can considerably differ between ring-porous species.
机译:圆环多孔物种的早期血管面积与在血管形成时普遍存在的环境因素有关。然而,在船舶区域中可以在时间窗口上获得有限的知识,在此期间可以在温度,降水或洪水等环境因素中记录。捕获这些环境信号的容器区域的敏感性可能与血管形成的时序和持续时间有关。众所周知,圆周多孔物种在芽之前形成了新的早期血管,以保证通过最外面的树圈中的大型早期血管的有效水运输。然而,随着环形多孔物种的叶形候选,血管形成的时序也可以在物种之间变化。在这项研究中,我们研究了与Pedunculate橡木(栎鞋鞋螯株群)和欧洲灰分( Fraxinus Excelsior L.)相关的母材 - 血管形成的时序和持续时间)在同一网站上生长。从3月到6月初的每周到6月初,从十块橡树的杆周边和五个灰烬中取出了微孔粒程。在同一时期记录了叶候。从微孔机械测量血管尺寸,以将血管形成的动力学与叶候相相关。我们发现灰烬中的血管形成在芽肿胀之前开始良好,与橡木相比,早先。虽然橡木前面的叶片上灰下,但橡木的早期血管形成平均超过13天后,但血管比灰烬更快。在叶片完全扩张之前,在两种物种中形成所有早熟血管的形成。这些结果表明,血管形成中的时序和动力学以及叶片候选和容器形成之间的关系,环多孔物种之间可以显着不同。

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