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间伐强度对韩国人工林凋落物产量、土壤化学性质及细根分布的影响

Effects of Thinning Intensity on Litterfall Production, Soil Chemical Properties, and Fine Root Distribution in Plantation in Republic of Korea.

作者信息

Han Si Ho, An Ji Young, Hernandez Jonathan O, Yang Hee Moon, Kim Eun-Sook, Noh Nam Jin, Seo Jeong Min, Park Byung Bae

机构信息

Kasuya Research Forest, Kyushu University, Sasaguri, Fukuoka 811-2415, Japan.

Department of Environment and Forest Resources, College of Agriculture and Life Science, Chungnam National University, Daejeon 34134, Republic of Korea.

出版信息

Plants (Basel). 2023 Oct 19;12(20):3614. doi: 10.3390/plants12203614.

Abstract

It is crucial to evaluate the effects of thinning on litterfall production, soil chemical properties, and fine root dynamics when implementing thinning as a silvilcultural technique to enhance tree growth and timber yield in plantations. Thus, we determined the 10-year effects (2007-2017) of different thinning intensities on litterfall production, soil chemical properties, and fine root biomass and necromass within a plantation in South Korea. The soil chemical parameters and fine root biomass and necromass were also compared across three soil depths (0-10, 10-20, and 20-30 cm). Three thinning treatments were employed: no thinning (CON), light thinning (32% removed, LT), and heavy thinning (64% removed, HT). Results revealed that litterfall was consistent across all thinning treatments, but broadleaf species had considerably higher litterfall production at HT stands than at CON/LT stands. Soil chemical properties, except exchangeable K, were generally lower at LT stands, particularly at a depth of 20-30 cm soil. After ten years, there was a decrease in fine root biomass and necromass with increasing soil depth. Over 80% of fine roots were found in the upper layer (0-20 cm), while very fine roots (0-1 mm) consisted mainly of 47% pine and 53% other species and were concentrated in the 0-10 cm soil depth in HT. In conclusion, different thinning intensities had diverse effects on the parameters measured within the plantation. Future studies can explore how the effects of thinning intensities on litterfall production, soil chemistry, and fine root dynamics affect species diversity, carbon storage, and understory vegetation in plantations.

摘要

在实施间伐作为一种营林技术以提高人工林树木生长和木材产量时,评估间伐对凋落物产量、土壤化学性质和细根动态的影响至关重要。因此,我们确定了韩国一个人工林中不同间伐强度在10年(2007 - 2017年)内对凋落物产量、土壤化学性质以及细根生物量和坏死量的影响。还比较了三个土壤深度(0 - 10厘米、10 - 20厘米和20 - 30厘米)的土壤化学参数以及细根生物量和坏死量。采用了三种间伐处理:不间伐(CON)、轻度间伐(去除32%,LT)和重度间伐(去除64%,HT)。结果表明,所有间伐处理的凋落物情况一致,但阔叶树种在HT林分中的凋落物产量明显高于CON/LT林分。除了交换性钾之外,LT林分的土壤化学性质总体较低,尤其是在20 - 30厘米深度的土壤中。十年后,细根生物量和坏死量随土壤深度增加而减少。超过80%的细根位于上层(0 - 20厘米),而极细根(0 - 1毫米)主要由47%的松树和53%的其他树种组成,并且在HT处理中集中在0 - 10厘米的土壤深度。总之,不同的间伐强度对人工林内测量的参数有不同影响。未来的研究可以探索间伐强度对凋落物产量、土壤化学和细根动态的影响如何影响人工林中的物种多样性、碳储存和林下植被。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/060f/10609674/e6512f32f4d2/plants-12-03614-g001.jpg

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