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Climatic significance of intra-annual bands in the wood of Nothofagus pumilio in southern Patagonia

机译:巴塔哥尼亚南部Nothofagus pumilio木材年内条带的气候意义

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摘要

Nothofagus pumilio (Poepp et Endl.) Krasser is the dominant subalpine tree in the southern Andes between 36degreesS and 55degreesS. Increment cores from a N. pumilio stand growing near the Ameghino Glacier (50degrees25'S, 73degrees10'W), southern Patagonian Andes, Argentina, contain significant numbers of intra-annual bands (or false rings) which have not been previously described for this species. These samples are used to develop a well-replicated ring-width chronology and a record of intra-annual bands from AD 1760 to 1997. Annual variations in radial growth of N. pumilio at this site are negatively correlated with spring-summer temperatures and positively with spring precipitation. The formation of intra-annual bands appears to be a response to anomalously dry-warm springs followed by wet-warm late summers. Intra-annual bands may occur in up to 95% of the sampled trees in a given year, and the percentage of trees affected was used as an indication of the strength of the forcing event. Narrow rings occurred in the years following intra-annual band formation, reflecting the lagged effect of unfavorable climatic conditions on tree growth during the subsequent growing season. Intra-annual bands occurred more frequently in the twentieth century than the late eighteenth and nineteenth centuries. This contrasting pattern seems to be a response to the combination of a long-term warming trend and a significant decrease in precipitation recorded during the last 100 years in this region of southern South America.
机译:Nothofagus pumilio(Poepp et Endl。)Krasser是安第斯山脉南部36度至55度之间的主要亚高山树。来自阿根廷北部巴塔哥尼亚安第斯山脉的Ameghino冰川(50°25',73°10'W)附近生长的新孢子虫的增量核心包含大量的年内条带(或假环),这是该物种先前未曾描述过的。这些样品用于建立一个很好复制的环宽年表,并记录了公元1760年至1997年的年内波段。该部位的肺奈瑟氏球菌径向生长的年变化与春季和夏季的温度呈负相关,并呈正相关。随着春季降水。年内条带的形成似乎是对异常干燥的暖泉以及随后的夏季湿热的响应。在给定的一年中,每年高达95%的采样树木中可能出现年内波段,并且受影响树木的百分比被用作指示强迫事件强度的指标。在年内条带形成后的几年中出现了窄环,这反映了不利的气候条件对随后的生长季节树木生长的滞后影响。与20世纪后期和18世纪末期相比,年内波段发生的频率更高。这种对比模式似乎是对南美洲南部该地区过去100年中长期变暖趋势和降水显着减少的综合反应。

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