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Links between climate, drought and minimum wood density in conifers

机译:气候,干旱和针织中最低木质密度之间的联系

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As the global climate warms, increased aridity is expected to become a major determinant of forest productivity and tree growth. In gymnosperms, wood density quantified at seasonal to annual scales can be related to changes in tracheid lumen size due to alterations in soil water availability. In this way, minimum wood density (MND) has been shown to respond negatively to early growing-season precipitation in several conifers because dry conditions reduce tracheid lumen size and consequently increase MND. We investigated if this relationship between spring precipitation and MND applies to four conifer species (Abies alba, Pinus sylvestris, Pinus nigra, Juniperus thurifera) in NE Spain from mesic (A. alba, P. sylvestris) to xeric (P. nigra, J. thurifera) conditions. We further assessed how climate, precipitation, and drought-affected tree-ring width (TRW) and MND at several time scales to test if water shortage in spring increases MND and decreases TRW over time and seasonally. Lastly, we quantified the post-drought MND recovery. We found the strongest negative correlations between MND and spring precipitation in P. nigra followed by J. thurifera. In these two species, the associations between MND and 9-month long droughts peaked in early spring (P. nigra, r = -0.73; J. thurifera, r = -0.50).Juniperus thurifera presented a better post-drought recovery (decrease in MND), followed by P. nigra and P. sylvestris. We conclude that MND is a reliable and accurate proxy of drought severity during spring in conifers subjected to seasonal water shortage. MND can be used as an early-warning indicator of short- and long-term changes in the responses of trees to water shortage.
机译:随着全球气候温暖的,预计最高的干旱是森林生产力和树木增长的主要决定因素。在裸子植物中,在季节性到年度尺度定量的木质密度可能与由于土壤水可用性的变化而导致的Tracheid Lumen大小的变化有关。通过这种方式,已经显示出最小的木质密度(MND)对几种针叶树在几种针叶树中的早期生长季沉淀造成抗负面,因为干燥条件减少了TrouseId腔大小并因此增加了MND。我们调查了春季降水和MND之间的这种关系,适用于来自米西奇(A.bala,P.Sylvestris)到Xeric(P. Nigra,J. 。Thurifera)条件。我们进一步评估了几种时间尺度的气候,降水和受干旱受干旱的树木宽度(TRW)和MND如何测试,如果弹簧中的水短缺增加MND,并且随着时间的推移和季节性降低TRW。最后,我们量化了干旱后的MND恢复。我们发现了MND和P. nigra的春季沉淀之间最强的负相关性,然后是J. Thurifera。在这两个物种中,MND和9个月的长期干旱之间的关联(P. nigra,r = -0.73; J. Thurifera,R = -0.50).Juniperus Thurifera呈现出更好的干旱后期恢复(减少在MND),其次是P. nigra和P. Sylvestris。我们得出结论,MND是在季节性缺水的针叶树春季春天期间可靠和准确的干旱严重程度。 MND可以用作树木对水短缺的短期和长期变化的早期警告指标。

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