首页> 外文期刊>Forests >Variability after 15 Years of Vegetation Recovery in Natural Secondary Forest with Timber Harvesting at Different Intensities in Southeastern China: Community Diversity and Stability
【24h】

Variability after 15 Years of Vegetation Recovery in Natural Secondary Forest with Timber Harvesting at Different Intensities in Southeastern China: Community Diversity and Stability

机译:中国东南部不同强度采伐的天然次生林15年植被恢复后的变异性:群落多样性和稳定性

获取原文
           

摘要

The mixed Cunninghamia lanceolata (Lamb.) Hook., Pinus massoniana Lamb., and hardwood forest in southeastern China is a major assemblage in natural secondary forests, and of national and international importance in terms of both timber and ecosystem services. However, over-harvesting has threatened its long-term sustainability, and there is a knowledge gap relating to the effect of harvesting on the ecosystem. After conifer species were selected for harvesting, the mixed Chinese fir, pine, and hardwood forest was changed into mixed evergreen broadleaf forest. In this context, we observed the restoration dynamics of plant communities over a period of 15 years (1996 to 2011) with different levels of harvesting intensity, including selective harvesting at low (13.0% removal of growing stock volume), medium (29.1%), high (45.8%), and extra-high (67.1%) intensities, as well as clear-cut harvesting (100.0%), with non-harvesting as the control, based on permanent sample plots established in a randomized block design in these forests in southeastern China. The impact on the richness, diversity, and evenness of plant species derived from descriptive statistical analyses was shown to initially increase, and then decrease, with an increase in harvesting intensity. The most critical impacts were on the richness, diversity, and evenness of shrub and herb species. Richness, diversity, and evenness of plant species recovered and increased under selective harvesting at low and medium intensities, while these parameters had not recovered and significantly decreased under selective harvesting at high and extra-high intensities, as well as with clear-cut harvesting. The impact on the plant community stability was derived from the stability test method of the improved Godron M. The plant community stability was closest to the point of stability (20/80) under selective harvesting at medium intensity, followed by selective harvesting at low intensity. The plant community stability was far from the point of stability (20/80) under selective harvesting at high and extra-high intensities, as well as with clear-cut harvesting. Of these treatments, clear-cut harvesting had the greatest effect with regard to reducing stability. Therefore, these results indicate that the selective harvesting at low and medium intensities is conducive to preserve or increase the species diversity and community stability. In order to prioritize promoting plant species diversity, clear-cut harvesting and selective harvesting at high and extra-high intensities should be avoided with regard to this type of forest in this region. This study sheds light on the practice of forest operation in the study region and subtropical forests with the same environment.
机译:中国东南部的杉木,马尾松和阔叶林混合在一起,是天然次生林的主要组成部分,在木材和生态系统服务方面都具有国家和国际重要性。但是,过度捕捞已经威胁到其长期可持续性,而且知识方面的差距与采伐对生态系统的影响有关。选择针叶树种进行采伐后,杉木,松木和阔叶混交林变成了常绿阔叶混交林。在这种情况下,我们观察了15年(1996年至2011年)不同采伐强度水平下植物群落的恢复动态,包括低水平(生长种群数量的13.0%去除),中度(29.1%)的选择性收获,高(45.8%)和超高(67.1%)强度以及清晰的收获(100.0%),并以非收获为对照,这些是基于在随机区组设计中建立的永久样本图中国东南部的森林。从描述性统计分析得出的对植物物种丰富度,多样性和均匀度的影响显示,随着收获强度的增加,其影响最初会增加,然后减少。最关键的影响是灌木和草本物种的丰富性,多样性和均匀性。在低强度和中等强度的选择性采伐下,植物物种的丰富度,多样性和均匀性得以恢复并增加,而在高强度和超高强度的选择性采伐以及明晰的采伐下,这些参数并未恢复,并且显着降低。对植物群落稳定性的影响源自改良的Godron M的稳定性测试方法。在中等强度的选择性收获下,接着在低强度的选择性收获下,植物群落的稳定性最接近稳定性点(20/80)。 。在高强度和超高强度下进行有选择的收获以及明确收获的情况下,植物群落的稳定性远没有达到稳定点(20/80)。在这些处理中,明确收获在降低稳定性方面效果最大。因此,这些结果表明在中低强度下的选择性收获有利于保存或增加物种多样性和群落稳定性。为了优先促进植物物种的多样性,应避免对该区域这类森林进行高强度和超高强度的明晰采伐和选择性采伐。这项研究为研究区域和具有相同环境的亚热带森林的森林经营实践提供了启示。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号