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Effects of gaps on regeneration of woody plants:a meta-analysis

机译:缺口对木本植物再生的影响:荟萃分析

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摘要

Forest gaps, openings in the canopy caused by death of one or more trees, have a profound effect on forest regeneration and drive the forest growth cycle. It is therefore necessary to understand the effects of forest gaps on regeneration for modern forest management. In order to provide a quantitative assessment of the effects of forest gaps on regen-eration of woody plants, we conducted this review of gap effects on woody plant regeneration on the basis of 527 observations from 42 indi-vidual papers, and reported the results of these data in a meta-analysis. Overall, densities of regenerated woody plants were significantly greater (359%) in forest gaps than on the closed-canopy forest floor. The regen-eration density in gaps of plantation forests was significantly greater (P<0.05) than that of natural forest because the regeneration in gaps of plan-tation forests was improved by both gap effects and experimental meas-ures. Similarly, in comparison to natural gaps, regeneration was better enhanced in artificial gaps. Regeneration density exhibited a significantly positive correlation with gap size, but a negative correlation with gap age because the gap size decreased with increasing gap age. Shade tolerance of woody plants affected regeneration density in gaps and understory. Average regeneration density of shade-tolerant species exhibited a sig-nificantly positive response to gaps but densities remained lower in total than those of intermediate and shade-intolerant species. Gap effects on regeneration decreased in response to increasing temperature and pre-cipitation because of the limiting effects of lower temperature and moisture on woody plant regeneration. In summary, forest gaps enhance woody plant regeneration, and the effects of gaps varied by forest type, gap characteristics, environmental factors and plant traits. The results of this meta-analysis are useful for better understanding the effects and roles of gaps on forest regeneration and forest management.
机译:由一棵或多棵树木死亡引起的林间空缺,树冠上的开口对森林的再生具有深远的影响,并驱动森林的生长周期。因此,有必要了解森林缺口对现代森林管理再生的影响。为了定量评估森林缺口对木本植物再生的影响,我们基于42篇独立论文的527项观察,对缺口对木本植物再生的影响进行了综述,并报告了这些数据进行荟萃分析。总体而言,森林间隙中再生木本植物的密度显着高于封闭林盖的林地(359%)。人工林间隙的再生密度显着高于天然林(P <0.05),这是因为间隙效应和试验措施均能改善人工林间隙的再生。同样,与自然缺口相比,人工缺口的再生效果更好。再生密度与间隙大小呈显着正相关,而与间隙年龄呈负相关,因为间隙大小随间隙年龄的增加而减小。木本植物的耐荫性影响间隙和林下的再生密度。耐荫树种的平均再生密度显示出对间隙的显着正响应,但总密度仍低于中间和耐荫树种的密度。由于较低的温度和水分对木本植物再生的有限影响,对再生的缺口效应随着温度和降水的增加而降低。总之,林间空隙促进了木本植物的再生,并且林间空隙的影响因森林类型,林间空缺特征,环境因素和植物性状而异。荟萃分析的结果有助于更好地了解缺口对森林更新和森林经营的影响和作用。

著录项

  • 来源
    《林业研究(英文版)》 |2014年第3期|501-510|共10页
  • 作者单位

    State Key Laboratory of Forest and Soil Ecology, Qingyuan Experi-mental Station of Forest Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China;

    State Key Laboratory of Forest and Soil Ecology, Qingyuan Experi-mental Station of Forest Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China;

    State Key Laboratory of Forest and Soil Ecology, Qingyuan Experi-mental Station of Forest Ecology, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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