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Summer freezing resistance of high-elevation plant species changes with ontogeny

机译:高海拔植物的夏季抗冻性随个体发育而变化

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In high-elevation habitats, an apparent trade-off between high growth-rates and freezing resistance has led some authors to assume that seedlings are less freezing resistant than adults. However, because seedlings are exposed to lower and longer freezing events near the ground, they could be more freezing-resistant than adults. As freezing resistance is related to plant height, ontogenetic changes in the intensity of freezing resistance and the mechanism involved should differ between seedlings and adults of tall vs. short plants, with those changes being greater for tall plants. We evaluated differences between seedlings and adult plants in the ability to resist freezing temperatures in 13 high-Andean species from central Chile. In a field laboratory, we determined the low temperature damage, ice nucleation temperature and freezing resistance mechanisms in their leaves. Seedlings were on average 3.4K less freezing resistant than adults with greater differences found for tall plant species. Six species changed their freezing resistance mechanism with ontogeny, including short and tall plants, although changes were greater for tall plant species. Ontogenetic changes in the freezing resistance of high-Andean species seem to be more related to a trade-off between plant-growth and stress resistance than to differences in thermal microhabitats between seedlings and adults. Crown Copyright (C) 2012 Published by Elsevier B.V. All rights reserved.
机译:在高海拔的栖息地中,高生长速率和抗冻性之间的明显权衡取舍使一些作者认为,幼苗的抗冻性不如成年。但是,由于幼苗在地面附近处于较低且较长的冰冻状态,因此它们可能比成虫更具抗冻性。由于抗冻性与株高有关,因此抗冻强度的个体发生变化及其涉及的机制在高株和矮株的幼苗和成年之间应该有所不同,高株的变化更大。我们评估了来自智利中部的13个高安第斯物种的幼苗和成年植物之间在抵抗冷冻温度方面的差异。在野外实验室中,我们确定了叶片的低温损害,冰成核温度和抗冻机制。幼苗的抗冻性平均要比成年低3.4K,高植物种的差异更大。六个物种随着个体发育改变了其抗冻机制,包括矮小的和高大的植物,尽管高大的植物种类的变化更大。高安第斯山脉物种的抗冻性的原基因变化似乎与植物生长和抗逆性之间的权衡更相关,而不是与幼苗和成虫之间热微生境的差异有关。 Crown版权所有(C)2012,Elsevier B.V.保留所有权利。

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