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首页> 外文期刊>Regional Environmental Change >Larch (Larix dahurica Turcz) growth response to climate change in the Siberian permafrost zone
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Larch (Larix dahurica Turcz) growth response to climate change in the Siberian permafrost zone

机译:西伯利亚多年冻土区的落叶松(Larix dahurica Turcz)对气候变化的生长响应

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摘要

Larch-dominant communities are the most extensive high-latitude forests in Eurasia and are experiencing the strongest impacts from warming temperatures. We analyzed larch (Larix dahurica Turcz) growth index (GI) response to climate change. The studied larch-dominant communities are located within the permafrost zone of Northern Siberia at the northern tree limit (ca. N 67A degrees 38', E 99A degrees 07'). Methods included dendrochronology, analysis of climate variables, root zone moisture content, and satellite-derived gross (GPP) and net (NPP) primary productivity. It was found that larch response to warming included a period of increased annual growth increment (GI) (from the 1970s to ca. 1995) with a follow on GI decline. Increase in GI correlated with summer air temperature, whereas an observed decrease in GI was caused by water stress (vapor pressure deficit and drought increase). Water stress impact on larch growth in permafrost was not observed before the onset of warming (ca. 1970). Water limitation was also indicated by GI dependence on soil moisture stored during the previous year. Water stress was especially pronounced for stands growing on rocky soils with low water-holding capacity. GPP of larch communities showed an increasing trend, whereas NPP stagnated. A similar pattern of GI response to climate warming has also been observed for Larix sibirica Ledeb, Pinus sibirica Du Tour, and Abies sibirica Ledeb in the forests of southern Siberia. Thus, warming in northern Siberia permafrost zone resulted in an initial increase in larch growth from the 1970s to the mid-1990s. After that time, larch growth increment has decreased. Since ca. 1990, water stress at the beginning of the vegetative period became, along with air temperature, a main factor affecting larch growth within the permafrost zone.
机译:落叶松为主的社区是欧亚大陆上最广泛的高纬度森林,并且正经历着气温升高带来的最强烈影响。我们分析了落叶松(Larix dahurica Turcz)生长指数(GI)对气候变化的响应。所研究的落叶松优势群落位于北西伯利亚的永久冻土带内,位于北部树木极限处(大约N 67A度38',E 99A度07')。方法包括树轮年代学,气候变量分析,根区含水量以及卫星衍生的总(GPP)和净(NPP)初级生产力。发现落叶松对气候变暖的响应包括一个年增长增量(GI)增加的时期(从1970年代到1995年左右),随后是GI下降的结果。胃肠道的增加与夏季气温有关,而观察到的胃肠道的下降是由于水分胁迫(蒸气压下降和干旱增加)引起的。在变暖开始之前(1970年左右),未观察到水分胁迫对多年冻土中落叶松生长的影响。胃肠道对上一年储存的土壤水分的依赖性也表明了水分的限制。对于在低持水能力的岩石土壤上生长的林分,水分胁迫尤为突出。落叶松群落的GPP呈增加趋势,而NPP停滞。在西伯利亚南部的森林中,西伯利亚落叶松,西伯利亚杜松和西伯利亚莱德也观察到了类似的胃肠道对气候变暖的响应模式。因此,从1970年代到1990年代中期,西伯利亚北部多年冻土带的变暖导致落叶松的生长初步增加。在那之后,落叶松的生长增量减少了。由于ca。 1990年,植物生长初期的水分胁迫与气温一起成为影响永久冻土区内落叶松生长的主要因素。

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  • 来源
    《Regional Environmental Change》 |2019年第1期|233-243|共11页
  • 作者单位

    Russian Acad Sci, Fed Sci Ctr, Sukachev Inst Forest, Siberian Branch, Academgorodok 50-28, Krasnoyarsk 660036, Russia|Siberian Fed Univ, Svobodny Str 79, Krasnoyarsk 660041, Russia;

    NASA, Goddard Space Flight Ctr, Code 618, Greenbelt, MD 20771 USA;

    Russian Acad Sci, Fed Sci Ctr, Sukachev Inst Forest, Siberian Branch, Academgorodok 50-28, Krasnoyarsk 660036, Russia;

    Russian Acad Sci, Fed Sci Ctr, Sukachev Inst Forest, Siberian Branch, Academgorodok 50-28, Krasnoyarsk 660036, Russia;

    Russian Acad Sci, Fed Sci Ctr, Sukachev Inst Forest, Siberian Branch, Academgorodok 50-28, Krasnoyarsk 660036, Russia|Siberian Fed Univ, Svobodny Str 79, Krasnoyarsk 660041, Russia|Reshetnev Siberian State Univ Sci & Technol, Krasnoyarsky Rabochy Str 31, Krasnoyarsk 660014, Russia;

    Russian Acad Sci, Fed Sci Ctr, Sukachev Inst Forest, Siberian Branch, Academgorodok 50-28, Krasnoyarsk 660036, Russia|Siberian Fed Univ, Svobodny Str 79, Krasnoyarsk 660041, Russia;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Larix dahurica; Tree radial growth; Larch forests; Northern treeline; Tree response to warming; Larch and permafrost; Growth index; Climate impact on trees;

    机译:落叶松;树木径向生长;落叶松林;北方树线;树木对变暖的反应;落叶松和多年冻土;生长指数;气候对树木的影响;

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