首页> 外文期刊>The Science of the Total Environment >Relationships of intra-annual stem growth with climate indicate distinct growth niches for two co-occurring temperate eucalypts
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Relationships of intra-annual stem growth with climate indicate distinct growth niches for two co-occurring temperate eucalypts

机译:随着气候的年度茎生长的关系表明,两种共同发生的温带桉树明显增长

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Forests are an important global carbon sink but their responses to climate change are uncertain. Tree stems, as the predominant carbon pool, represent net productivity in temperate eucalypt forests but the drivers of growth in these evergreen forests remain poorly understood partly because the dominant tree species lack distinct growth rings. Disentangling eucalypt species' growth responses to climate from other factors, such as competition and disturbances like fire, remains challenging due to a lack of long-term growth data. We measured monthly stem-diameter changes (as basal area increment, BAI) of two co-occurring dominant eucalypts from different sub-genera (Eucalyptus obliqua and E. rubida) over nearly four years. Our study included seven sites in a natural temperate forest of south-eastern Australia, and we used linear mixed-effects models to examine the relative importance to monthly BAI of species, monthly climate variables (temperature and rainfall), inter-tree competition, and recent fire history (long-unbumt, prescribed fire, wildfire). Monthly BAI peaked in spring and autumn and was significantly different between species during spring and summer. BAI variation was most dearly associated with temperature, increasing in hyperbolic response curves up to maximum mean temperatures of similar to 15-17 degrees C and thereafter decreasing. Temperature optima for maximum monthly BAI were 1 to 2 degrees C warmer for E. rubida than E. obliqua. While less important than temperature, rainfall, particularly autumn rainfall, also helped explain patterns in monthly BAI, with inter-tree competition and recent fire history of comparatively minor importance. Our study provides the first comprehensive field-based evidence of different growth niches for eucalypts from different subgenera in natural temperate mixed forests. It highlights the importance of intra-annual climate to understanding productivity variation in temperate evergreen forests and provides insights into the mechanisms underpinning the successful co-existence of different tree species as well as their relative vulnerabilities to changing climates. (C) 2019 Elsevier B.V. All rights reserved.
机译:森林是一个重要的全球碳汇,但他们对气候变化的反应是不确定的。作为主要的碳库,树茎代表了温带桉树林中的净生产效力,但这些常绿森林的增长驱动因素仍然很清楚,部分原因是主要的树种缺乏不同的增长环。在缺乏长期增长数据的情况下,解开桉树物种对来自其他因素的气候的增长应对气候的影响仍然具有挑战性。我们在近四年内测量了来自不同亚属(桉树倾斜和E. Rubida)的两种共同发生的显性桉树的月茎直径变化(作为基础增长,白丹)。我们的研究包括澳大利亚东南部天然温带森林中的七个地点,我们使用了线性混合效果模型来检查每月白种,每月气候变量(温度和降雨),树形竞争和树木竞争的相对重要性最近的火灾历史(长Unbumt,规定的火,野火)。每月白顿秋季达到峰值,在春季和夏季,物种之间的差异很大。 BAI变异最为含量与温度有关,双曲响应曲线增加到最大平均温度与15-17摄氏度相似,然后减少。最大每月Bai的温度最佳是E. Rubida比E. Obriqua更温暖1至2摄氏度。虽然比温度不重要,降雨,特别是秋天的降雨,但也有助于在每月白天解释模式,与树间竞争和最近的火灾历史相对较小。我们的研究为来自自然温带混合森林不同亚洲不同亚桉树的不同增长效力的基于综合性外地证据。它强调了一年内气候对温带常绿森林的生产率变化的重要性,并向内宁机制提供了洞察力,巩固了不同树种的成功共存以及他们的相对脆弱性对不断变化的气候。 (c)2019 Elsevier B.v.保留所有权利。

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