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首页> 外文期刊>Trees - Structure and Function >Stable carbon isotopes in tree rings indicate improved water use efficiency and drought responses of a tropical dry forest tree species
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Stable carbon isotopes in tree rings indicate improved water use efficiency and drought responses of a tropical dry forest tree species

机译:年轮中稳定的碳同位素表明,热带旱林树种的水分利用效率和干旱响应得到改善

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Understanding the responses of tropical trees to increasing [CO2] and climate change is important as tropical forests play an important role in carbon and hydrological cycles. We used stable carbon isotopes (δ13C) in tree rings to study the physiological responses of a tropical dry forest tree species in southern Mexico, Mimosa acantholoba to changes in atmospheric [CO2] and variation in climate. Based on annual records of tree ring δ13C, we calculated intrinsic water use efficiency (W i) and intercellular [CO2] (c i). Our results showed that trees responded strongly to the increase in atmospheric [CO2] over the last four decades; W i increased dramatically by 40%, while c i remained largely constant. The maintenance of a constant c i indicates that photosynthetic rates are unlikely to have increased in response to higher [CO2], and that improvements in W i are probably due to a reduction in stomatal conductance. This may have large consequences for the hydrological cycle. Inter-annual variation in c i was strongly correlated with total annual rainfall (r = 0.70), and not influenced by temperature, solar radiation or cloud cover. Our results show that δ13C in tree rings of tropical dry forest trees may be a powerful tool to evaluate long-term responses of trees to increasing [CO2] and to variation in climate.
机译:了解热带树木对[CO 2 ]增加和气候变化的反应非常重要,因为热带森林在碳和水文循环中起着重要作用。我们在树木年轮中使用了稳定的碳同位素(δ 13 C),研究了墨西哥南部含羞草的热带干燥森林树种对大气[CO 2 ]和气候变化。根据年轮δ 13 C的年度记录,我们计算出内在水分利用效率(W i )和细胞间[CO 2 ](c i )。我们的结果表明,在过去的40年中,树木对大气[CO 2 ]的增加有强烈的反应; W i 急剧增加了40%,而c i 基本上保持不变。维持恒定的c i 指示光合速率不可能因较高的[CO 2 ]而增加,并且W i i 的年际变化与年降水总量(r = 0.70)密切相关,不受温度,太阳辐射或云量的影响。我们的结果表明,热带旱林树木年轮中的δ 13 C可能是评估树木对[CO 2 ]增长和对树木生长的长期响应的有力工具。气候变化。

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