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首页> 外文期刊>Forest Ecology and Management >Tissue type and location within forest together regulate decay trajectories of Abies faxoniana logs at early and mid-decay stage
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Tissue type and location within forest together regulate decay trajectories of Abies faxoniana logs at early and mid-decay stage

机译:森林中的组织类型和位置在一起调节衰减的衰减衰减衰减在衰减阶段和中衰减阶段

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摘要

Deadwood decomposition plays a crucial role in global carbon and nutrient cycles. Factors controlling deadwood decomposition at local scales could also have strong effects at broader scales. We tested how trait variation within stems (i.e. tissue types) and forest habitat heterogeneity (i.e. location within forest) together influence the deadwood decay trajectory and decay rate. We conducted an in situ decomposition experiment of Abies faxoniana logs in an alpine forest on the eastern Qinghai-Tibetan Plateau, decomposing logs from a series of decay classes I-III (on a 5-class scale) for five years on the forest floor in canopy gap, gap edge and under closed canopy (each sized 25 +/- 3 x 25 +/- 3 m). We found strong differences in density and chemical composition between tissue types at least across decay classes I-III, which revealed the distinct contribution of each tissue type to carbon and nutrient cycling. There were remarkable interactions of tissue types and locations within forest. We found bark always decomposed faster than wood, while heartwood can decompose faster than sapwood in canopy edge and canopy gap. Locations within forest influenced the best fit decay model and decay rate of bark and sapwood in the same way, while it had no corresponding effects for heartwood decay dynamics. The largest difference in T0.25 and T0.4 (time to 25% and 40% mass loss) between locations were 1.52 and 3.21 (bark), 19.41 and 37.61 (wood overall), 31.82 and 60.15 (sapwood), and 12.86 and 22.84 (heartwood), respectively. We also found that pH was significantly negatively related with sapwood and heartwood mass loss, demonstrating that pH can potentially be applied to evaluate sapwood and heartwood mass loss when density correction is difficult to achieve at least at early to mid-decay stages. However, whether pH is a powerful predictor of decomposition trajectory across more species and biomes remains to be tested. We strongly recommend that further model predictions of coarse log decay include radial positions within stem and locations within forest as factors to increase the reliability of carbon budget estimates.
机译:Deadwood分解在全球碳和营养周期中起着至关重要的作用。控制在地方尺度的末木分解的因素也可能对更广泛的尺度产生强烈影响。我们测试了特征在茎中的特征变异如何(即组织类型)和森林栖息地异质性(即森林内的位置)在一起影响了木质衰变轨迹和衰减率。我们在青藏高原东部的高山森林中进行了Andu Faxoniana日志的原位分解实验,从一系列衰减课程I-III(以5级比例)分解了日志在森林楼层冠层间隙,间隙边缘和封闭树冠(每个大小25 +/- 3 x 25 +/- 3 m)。我们发现至少横跨衰减类I-III之间的组织类型之间的密度和化学成分的强烈差异,这揭示了每个组织类型对碳和营养循环的明显贡献。组织类型和森林内的位置存在显着的相互作用。我们发现树皮总是比木材更快地分解,而Heartwood可以比冠层边缘和冠层差距更快地分解。森林内的位置影响了吠声和闷闷的腐烂模型和腐朽的速度,同时它对心材衰变动态没有相应的影响。地区之间的T0.25和T0.4(T0.4(T0.4)的最大差异为1.52和3.21(树皮),19.41和37.61(木材总体),31.82和60.15(Sapwood)和12.86分别为22.84(心材)。我们还发现pH与Sapwood和Chitewood质量损失显着呈负面呈否定,表明,当密度校正难以早期到中衰减阶段至少达到密度校正时,可以应用pH值。然而,pH是否是在更多种类中的分解轨迹的强大预测因子,并且生物群仍有待测试。我们强烈建议,粗糙日志衰减的进一步模型预测包括森林内茎和位置内的径向位置,作为增加碳预算估计的可靠性的因素。

著录项

  • 来源
    《Forest Ecology and Management》 |2020年第1期|共10页
  • 作者单位

    Taizhou Univ Sch Life Sci Taizhou 318000 Peoples R China;

    Sichuan Agr Univ Inst Ecol &

    Forestry Long Term Res Stn Alpine Forest Ecosyst Huimin Rd 211 Chengdu 611130 Peoples R China;

    Sichuan Agr Univ Inst Ecol &

    Forestry Long Term Res Stn Alpine Forest Ecosyst Huimin Rd 211 Chengdu 611130 Peoples R China;

    Cent South Univ Forestry &

    Technol Key Lab Cultivat &

    Protect Nonwood Forest Trees Minist Educ Changsha 410004 Hunan Peoples R China;

    Sichuan Agr Univ Inst Ecol &

    Forestry Long Term Res Stn Alpine Forest Ecosyst Huimin Rd 211 Chengdu 611130 Peoples R China;

    Sichuan Agr Univ Inst Ecol &

    Forestry Long Term Res Stn Alpine Forest Ecosyst Huimin Rd 211 Chengdu 611130 Peoples R China;

    Taizhou Univ Sch Life Sci Taizhou 318000 Peoples R China;

    Vrije Univ Amsterdam Fac Sci Dept Ecol Sci Syst Ecol De Boelelaan 1085 NL-1081 HV Amsterdam Netherlands;

    Vrije Univ Amsterdam Fac Sci Dept Ecol Sci Syst Ecol De Boelelaan 1085 NL-1081 HV Amsterdam Netherlands;

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

    Canopy gap; Density loss correction; Bark; Heartwood; Microclimate; pH;

    机译:树冠差距;密度损失校正;树皮;心材;微气候;pH;

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