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Climate sensitivity and resistance under pure- and mixed-stand scenarios in Lower Austria evaluated with distributed lag models and penalized regression splines for tree-ring time series

机译:较低奥地利纯和混合展台的气候敏感性和抗性在分布式滞后模型和树木时间序列的惩罚回归花样评估

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Penalized regression splines and distributed lag models were used to evaluate the effects of species mixing on productivity and climate-related resistance via tree-ring width measurements from sample cores. Data were collected in Lower Austria from sample plots arranged in a triplet design. Triplets were established for sessile oak [Quercus petraea (Matt.) Liebl.] and Scots pine (Pinus sylvestris L.), European beech (Fagus sylvatica L.) and Norway spruce [Picea abies (L.) H. Karst.], and European beech and European larch (Larix decidua Mill.). Mixing shortened the temporal range of time-lagged climate effects for beech, spruce, and larch, but only slightly changed the effects for oak and pine. Beech and spruce as well as beech and larch exhibited contrasting climate responses, which were consequently reversed by mixing. Single-tree productivity was reduced by between - 15% and - 28% in both the mixed oak-pine and beech-spruce stands but only slightly reduced in the mixed beech-larch stands. Measures of climate sensitivity and resistance were derived by model predictions of conditional expectations for simulated climate sequences. The relative climate sensitivity was, respectively, reduced by between - 16 and - 39 percentage points in both the beech-spruce and beech-larch mixed stands. The relative climate sensitivity of pine increased through mixing, but remained unaffected for oak. Mixing increased the resistance in both the beech-larch and the beech-spruce mixed stand. In the mixed oak-pine stand, resistance of pine was decreased and remained unchanged for oak.
机译:惩罚的回归样条和分布式滞后模型用于评估物种混合对生产率和气候相关性的影响,通过样品芯的树木宽度测量。数据从较低的奥地利收集,从三联设计中排列的样品图。为术治疗橡树橡木[栎(亚太地区)LieBl,苏格兰松树(欧洲山毛榉(Fagus Sylvatica L.)和挪威云杉(Picea Abies(L.)H.喀斯特),和欧洲山毛榉和欧洲落叶松(Larix DeCidua Mill。)。混合缩短了山毛榉,云杉和落叶松的时间滞后的气候效果的时间范围,但只有略微改变了橡木和松的影响。山毛榉和云杉以及山毛榉和落叶松都表现出对比的气候反应,因此通过混合反转。混合橡木松树和山毛榉云杉的架子中,单树生产率降低了 - 15%和 - 28%,但混合山毛榉木落叶的架子仅略微减少。通过模拟期望对模拟气候序列的有条件期望的模型预测来源的气候敏感性和抗性的测量。在山毛榉云杉和山毛榉木落叶松的展台上,相对气候敏感度分别降低 - 16和-39百分点。松树的相对气候敏感度通过混合来增加,但仍未受到橡木的影响。混合增加了山毛榉木落叶松和山毛榉云杉混合架中的阻力。在混合的橡树架中,松树的抗性降低,橡木的抗性保持不变。

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