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Drought stress, growth and nonstructural carbohydrate dynamics of pine trees in a semi-arid forest

机译:半干旱森林中松树的干旱胁迫,生长和非结构性碳水化合物动态

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摘要

In trees exposed to prolonged drought, both carbon uptake (C source) and growth (C sink) typically decrease. This correlation raises two important questions: (i) to what degree is tree growth limited by C availability; and (ii) is growth limited by concurrent C storage (e.g., as nonstructural carbohydrates, NSC)? To test the relationships between drought, growth and C reserves, we monitored the changes in NSC levels and constructed stem growth chronologies of mature Pinus halepensis Miller trees of three drought stress levels growing in Yatir forest, Israel, at the dry distribution limit of forests. Moderately stressed and stressed trees showed 34 and 14% of the stem growth, 71 and 31% of the sap flux density, and 79 and 66% of the final needle length of healthy trees in 2012. In spite of these large reductions in growth and sap flow, both starch and soluble sugar concentrations in the branches of these trees were similar in all trees throughout the dry season (2-4% dry mass). At the same time, the root starch concentrations of moderately stressed and stressed trees were 47 and 58% of those of healthy trees, but never <2% dry mass. Our results show that all the studied trees maintain a fairly good coordination between C supply and demand, and even during prolonged drought there is more than one way for a tree to maintain a positive C balance.
机译:在长期干旱的树木中,碳吸收(碳源)和生长(碳汇)通常都会减少。这种相关性提出了两个重要的问题:(i)树木的生长受到C可用性的限制程度如何; (ii)并存的C储存(例如,非结构性碳水化合物NSC)会限制生长吗?为了测试干旱,生长和碳储量之间的关系,我们监测了NSC水平的变化,并构建了以色列Yatir森林中处于干旱分布极限的三种干旱水平的halusensis Miller成熟松树的茎生长年表。在2012年,中等强度和高强度树木的茎生长量分别为34%和14%,树液通量密度的分别为71%和31%,健康树的最终针长的79%和66%。在整个干旱季节,所有树木的树液中的树汁流量,淀粉和可溶性糖的浓度都相似(2-4%的干重)。同时,中等压力和压力树的根淀粉浓度分别为健康树的47%和58%,但绝不低于2%的干重。我们的结果表明,所有研究的树木都在碳供需之间保持了很好的协调,即使在长期干旱期间,树木保持正C平衡的方法也有多种。

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