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Recent Drought-Induced Vitality Decline of Black Pine (Pinus nigra Arn.) in South-West Hungary—Is This Drought-Resistant Species under Threat by Climate Change?

机译:最近的干旱诱导的黑松(Pinus nigra Arn)的生命力下降在西南匈牙利 - 是这种受威胁的抗旱性气候变化的抗旱性吗?

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摘要

This paper analyses the recent recurring dieback and growth decline of Black pine (P. nigra Arn. var austriaca) in the Keszthely mountains of south-west Hungary, and their relations to water deficits due to droughts. These relations were studied in five stands with low soil water storage capacity for the period 1981–2016. The vitality was assessed using 60 tree-ring samples and changes in remotely sensed vegetation activity indices, i.e., the normalized difference vegetation index (NDVI) and the normalized difference infrared index (NDII). Water deficit was estimated by using meteorological drought indices such the standardized precipitation–evapotranspiration index (SPEI) and the forestry aridity index (FAI), as well as the relative extractable water (REW), calculated by the Brook90 hydrological model. Results revealed a strong dependency of annual tree ring width on the amount of water deficit as measured by all the above estimators, with the highest correlation shown by the summer REW. Droughts also showed a long-term superimposed effect on tree growth. NDII seemed to be more sensitive to drought conditions than NDVI. The robust dependency of tree growth on the summer water availability combined with the projected increasing aridity might lead to decreasing growth of Black pine in Hungary towards the end of the century. We thus argue that the suggestion by several papers that Black pine can be a possible substitute species in the Alpine and Mediterranean region in the future should be revisited.
机译:本文分析了最近匈牙利克西斯西山脉(P. Nigra Arn.var Austriaca)的重复沉降和生长衰退,以及由于干旱导致的水赤字的关系。在1981 - 2016年期间,在五个具有低土壤储存能力的储存能力中研究了这些关系。使用60个树环样品评估活力,并在常规感测的植被活性指数中进行评估,即归一化差异植被指数(NDVI)和归一化差异红外指数(NDII)。通过使用气象沉淀蒸发指数(SPEI)和林林炎(FAI)以及由Brook90水文模型计算的相对可提取的水(REW)来估计水缺陷。结果表明,通过所有上述估算器测量的水缺损量的年度树环宽度的强烈依赖性,夏季REW所示的最高相关性。干旱还对树生长呈现了长期叠加效果。 NDII似乎对干旱条件比NDVI更敏感。树木增长对夏季水利的强劲依赖性与预计的增长美丽相结合可能导致匈牙利在世纪末降低黑松的生长。因此,应重新审视一篇关于黑松可以成为高山和地中海地区可能替代物种的几篇论文的建议。

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