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Carbon storage and soil CO_2 efflux rates at varying degrees of damage from pine wilt disease in red pine stands

机译:赤松林中不同程度的松枯病造成的碳储量和土壤CO_2外排率

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摘要

We evaluated the carbon (C) storage and soil CO_2 efflux rates of red pine (Pinus densiflora S. et Z.) stands damaged by pine wilt disease (PWD) in Korea. Ten red pine plots at varying degrees of damage from PWD were established and grouped into five categories (very slightly, slightly, moderately, severely, and very severely damaged plots) based on differences in the tree density. The incidence of PWD was a major cause of C loss from forest ecosystems, but the magnitude of loss depended on the severity of disease damage. An exponential regression of the CO_2 efflux rates against the corresponding soil temperature was highly significant (R_2 = 0.82-0.95, P < 0.01) for the varying degrees of damage from PWD. The rates of change in the CO_2 efflux rates with temperature, as defined by the Q_(10) values, were generally lower in the slightly (2.94) versus the moderately (3.60) or severely (4.26) PWD-damaged stands. The cumulative soil CO_2-C efflux rates for two years were significantly higher in the slightly (10.8 Mg Cha~(-1) yr~(-1)) or moderately (10.9 Mg Cha~(-1) yr~(-1)) versus the very severely (7.9 Mg Cha~(-1) yr~(-1)) PWD-damaged stands. The results indicate that the C storage and soil CO_2 efflux rates in red pine stands can be impacted by the incidence of PWD, with a significant C reduction in the severely damaged stands.
机译:我们评估了在韩国因松树枯萎病(PWD)受损的赤松(Pinus densiflora S. et Z.)林木的碳(C)储存量和土壤CO_2外排率。根据树木密度的差异,建立了十个PWD造成不同程度损害的红松地块,并将其分为五类(非常轻微,轻微,中度,严重和非常严重破坏的地块)。 PWD的发生是森林生态系统碳损失的主要原因,但是损失的程度取决于病害的严重程度。对于不同程度的PWD伤害,CO_2流出速率相对于相应土壤温度的指数回归非常显着(R_2 = 0.82-0.95,P <0.01)。由Q_(10)值定义的CO_2外排率随温度的变化率通常在轻微(2.94)低于中度(3.60)或严重(4.26)PWD损坏的林分中。轻度(10.8 Mg Cha〜(-1)yr〜(-1))或中度(10.9 Mg Cha〜(-1)yr〜(-1)两年的累积土壤CO_2-C外排率显着较高。 )与非常严重(7.9 Mg Cha〜(-1)yr〜(-1))PWD损坏的林分。结果表明,红松林分的碳储量和土壤CO_2的外流率可能受PWD的发生影响,严重受损林分中的碳显着降低。

著录项

  • 来源
    《Science of the total environment》 |2013年第1期|273-278|共6页
  • 作者单位

    Center for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes Campus, Adelaide 5095, Australia;

    Department of Forest Resources, Gyeongnam National University of Science and Technology, Jinju 660-758, Republic of Korea;

    Southern Forest Research Center, Korea Forest Research Institute, Jinju 660-330, Republic of Korea;

    Center for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes Campus, Adelaide 5095, Australia;

    Center for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes Campus, Adelaide 5095, Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon cycle; Pine wilt disease; Red pine; Soil respiration;

    机译:碳循环;松萎病;红松;土壤呼吸;

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