黄土高原洋槐人工林再生能力和生态功能的协同增强

IF 5.4 1区 农林科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Ning Wang , Huaxing Bi , Ruidong Peng , Danyang Zhao , Zehui Liu
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引用次数: 0

摘要

当代林业研究的重点是提高林业质量,尤其是在生态脆弱地区。为此,提高人工林的生态功能和自然再生能力至关重要。本研究利用均方根方差法研究了黄土高原蔡家川流域人工林(RP)的林分再生能力与生态功能(包括水源涵养、土壤保持、碳固存和林下植物多样性)之间的协同或权衡关系。结果表明,林分再生能力与水土保持、林分固碳和林下植物多样性分别表现出协同关系、中度权衡关系和高度权衡关系。值得注意的是,林分再生能力与整体森林生态功能(上述功能之和)之间存在协同关系,表明通过提高林分再生能力可以同时改善整体森林生态功能。冗余分析表明,再生能力主要受土壤含水量(SMC)、林分密度(SD)、总透光率、草本物种丰富度、枯落物积累和土壤可利用磷(AP)的影响。根据林分优化模型,在以下条件下,RP 的再生能力最高:SD为 1742 棵树-hm,SMC 为 15.29%(高于现有 RP 的平均值 33.53%),AP 为 41.69 mg-kg(高于平均值 15.84%),LAI 为 1.84(低于平均值 20.0%)。因此,为了同时提高 RP 林分的再生能力和整体生态功能,林业工作者应优先考虑通过疏伐或补植将 SD 调整到适当的范围。此外,定期修剪单株树木的特定枝条对于减轻高 LAI 对林分再生的不利影响至关重要。在可行的情况下,还可以增加土壤水分和养分,但应避免土壤水分和养分过多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synergistic enhancement of regeneration capacity and ecological functions of Robinia pseudoacacia L. plantations in the Loess Plateau

Contemporary forestry research prioritizes the advancement of high-quality forestry, especially in ecologically vulnerable areas. To this end, enhancing the ecological function and natural regeneration capacity of planted forest stands is crucial. This study investigated synergistic or trade-off relationships between stand regeneration capacity and the ecological functions (including water conservation, soil conservation, carbon sequestration, and understory plant diversity) of Robinia pseudoacacia L. (RP) plantations in the Caijiachuan watershed of the Loess Plateau using Root Mean Square Deviation. The results indicated that stand regeneration capacity exhibited synergistic, moderate trade-off, and high trade-off relationships with soil and water conservation, stand carbon sequestration, and understory plant diversity, respectively. Notably, stand regeneration capacity had a synergistic relationship with the overall forest ecological function (sum of the above functions), suggesting that the overall forest ecological function can be simultaneously improved by enhancing stand regeneration capacity. Redundancy analyses revealed that the regeneration capacity was primarily influenced by soil moisture content (SMC), stand density (SD), total transmitted light, herbaceous species richness, litter accumulation, and soil available phosphorus (AP). According to the stand optimization model, the highest regeneration capacity of RP was observed under the following conditions: 1742 trees·hm−2 for SD, 15.29 % for SMC (higher than the mean value of 33.53 % for the existing RP), 41.69 mg·kg−1 for AP (higher than the mean value of 15.84 %), and 1.84 for LAI (lower than the mean value of 20.0 %). Therefore, to achieve the simultaneous enhancement of the regeneration capacity and overall ecological function of RP stands, foresters should prioritize adjusting SD to an appropriate range through thinning or replanting. Additionally, regular pruning of specific branches of individual trees is essential to mitigate the adverse effects of high LAI on stand regeneration. Where feasible, soil moisture and nutrients can also be increased, but excessive levels of AP should be avoided.

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来源期刊
Catena
Catena 环境科学-地球科学综合
CiteScore
10.50
自引率
9.70%
发文量
816
审稿时长
54 days
期刊介绍: Catena publishes papers describing original field and laboratory investigations and reviews on geoecology and landscape evolution with emphasis on interdisciplinary aspects of soil science, hydrology and geomorphology. It aims to disseminate new knowledge and foster better understanding of the physical environment, of evolutionary sequences that have resulted in past and current landscapes, and of the natural processes that are likely to determine the fate of our terrestrial environment. Papers within any one of the above topics are welcome provided they are of sufficiently wide interest and relevance.
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