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首页> 外文期刊>Tree Physiology >Lack of genetic variation in tree ring δ13C suggests a uniform, stomatally-driven response to drought stress across Pinus radiata genotypes
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Lack of genetic variation in tree ring δ13C suggests a uniform, stomatally-driven response to drought stress across Pinus radiata genotypes

机译:树环δ 13 C缺乏遗传变异,表明辐射型松树基因型对干旱胁迫具有一致的气孔驱动响应

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摘要

We assessed the variation in δ13C signatures of Pinus radiata D. Don stemwood taken from three genetic trials in southern Australia. We sought to determine the potential of using δ13C signatures as selection criteria for drought tolerance. Increment cores were taken from P. radiata and were used to determine the basal area increment and the δ13C signature of extracted cellulose. Both growth increment and cellulose δ13C were affected by water availability. Growth increment and δ13C were negatively correlated suggesting that growth was water-limited. While there was significant genetic variation in growth, there was no significant genetic variation in cellulose δ13C of tree rings. This suggests that different genotypes of P. radiata display significant differences in growth and yet respond similarly to drought stress. The δ13C response to drought stress was more due to changes in stomatal conductance than to the variation in photosynthetic capacity, and this may explain the lack of genetic variation in δ13C. The lack of genetic variation in cellulose δ13C of tree rings precludes its use as a selection criterion for drought tolerance among P. radiata genotypes.
机译:我们评估了来自澳大利亚南部三项基因试验的辐射松D.唐茎木的δ 13 C签名的变化。我们试图确定使用δ 13 C签名作为耐旱性选择标准的潜力。从辐射假单胞菌中提取增量核心,并用于测定提取纤维素的基面积增量和δ 13 C特征。生长量和纤维素δ 13 C均受水分供应的影响。生长增量和δ 13 C呈负相关,表明生长受到水分的限制。虽然生长的遗传变异显着,但树木年轮中的纤维素δ 13 C却没有显着的遗传变异。这表明不同基因型的放射线虫在生长上表现出显着差异,但对干旱胁迫的反应相似。 δ 13 C对干旱胁迫的响应更多是由于气孔导度的变化而不是光合能力的变化引起的,这也许可以解释δ 13 缺乏遗传变异的原因。 C。树轮纤维素δ 13 C缺乏遗传变异,因此不能作为辐射状P. radiata基因型中耐旱性的选择标准。

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  • 来源
    《Tree Physiology》 |2009年第2期|p.191-198|共8页
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    1Department of Forest and Ecosystem Science, School of Land and Environment, University of Melbourne, Parkville VIC 3010, Australia 2Corresponding author (rowelldm{at}unimelb.edu.au) 3Faculty of Agriculture, Food and Natural Resources, University of Sydney, NSW 2006, Australia;

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