[1] |
NAGATI M, ROY M, MANZI S, et al. Impact of local forest composition on soil fungal communities in a mixed boreal forest [J]. Plant Soil, 2018, 432(1/2): 345 − 357. |
[2] |
CRAWFORD K M, BAUER J T, COMITA S, et al. When and where plant-soil feedback may promote plant coexistence: a meta-analysis [J]. Ecol Lett, 2019, 22(8): 1274 − 1284. |
[3] |
QIAO Leilei, LI Yuanze, SONG Yahui, et al. Effects of vegetation restoration on the distribution of nutrients, glomalin-related soil protein, and enzyme activity in soil aggregates on the loess plateau, China[J/OL]. Forests, 2019, 10(9): 796[2021-12-10]. doi: 10.3390/10090796. |
[4] |
蓝斌, 何东进. 闽北毛竹林生态系统能量分配规律的研究[J]. 应用生态学报, 2000, 11(2): 193 − 195.
LAN Bin, HE Dongjin. Energy distribution of Phyllostachys pubescens ecosytem in north Fujian [J]. Chin J Appl Ecol, 2000, 11(2): 193 − 195. |
[5] |
OKUTOMI K, SHINODA S, FUKUDA H. Causal analysis of the invasion of broad-leaved forest by bamboo in Japan [J]. J Veg Sci, 1996, 7(5): 723 − 728. |
[6] |
ISAGI Y, TORII A. Range Expansion and its mechanisms in a naturalized bamboo species, Phyllostachys pubescens, in Japan [J]. J Sustainable For, 1997, 6(1/2): 127 − 141. |
[7] |
丁丽霞, 王祖良, 周国模, 等. 天目山国家级自然保护区毛竹林扩张遥感监测[J]. 浙江林学院学报, 2006, 23(3): 297 − 300.
DING Lixia, WANG Zuliang, ZHOU Guomo, et al. Monitoring Phyllostachys pubescens stands expansion in National Nature Reserve of Mount Tianmu by remote sensing [J]. J Zhejiang For Coll, 2006, 23(3): 297 − 300. |
[8] |
OSEI R, ANSONG M, ZERBE S. Comparison of socio-economic and ecological benefits of bamboo and trees: the perspectives of local communities in south-western Ghana [J]. Southern For J For Sci, 2019, 81(3): 255 − 260. |
[9] |
白尚斌, 周国模, 王懿祥, 等. 天目山国家级自然保护区毛竹扩散过程的林分结构变化研究[J]. 西部林业科学, 2012, 41(1): 77 − 82.
BAI Shangbin, ZHOU Guomo, WANG Yixiang, et al. Stand structure change of Phyllostachys pubescens forest expansion in Tianmushan National Nature Reserve [J]. J West China For Sci, 2012, 41(1): 77 − 82. |
[10] |
王铮屹, 戴其林, 柏宬, 等. 天目山皆伐毛竹林自然更新群落类型与多样性分析[J]. 浙江农林大学学报, 2020, 37(4): 710 − 719.
WANG Zhengyi, DAI Qilin, BAI Cheng, et al. Types and diversity of natural regeneration community after clear cutting of Phyllostachys edulis forests in Mount Tianmu, China [J]. J Zhejiang A&F Univ, 2020, 37(4): 710 − 719. |
[11] |
陈旭, 刘宗悦, 徐钧杰, 等. 天目山毛竹林皆伐后群落的恢复特征[J]. 浙江农林大学学报, 2022, 39(4): 705 − 716.
CHEN Xu, LIU Zongyue, XU Junjie, et al. Restoration characteristics of Phyllostachys edulis community after clear-cutting in Mount Tianmu [J]. J Zhejiang A&F Univ, 2022, 39(4): 705 − 716. |
[12] |
鲁如坤. 土壤农业化学分析方法[M]. 北京: 中国农业科技出版社, 2000.
LU Rukun. The Analysis Method of Soil Agricultural Chemistry[M]. Beijing: China Agricultural Science and Technology Press, 2000. |
[13] |
GERMAN D P, WEINTRAUB M N, GRANDY A S, et al. Optimization of hydrolytic and oxidative enzyme methods for ecosystem studies [J]. Soil Biol Biochem, 2011, 43(7): 1387 − 97. |
[14] |
FUJII K, SHIBATA M, KITAJIMA K, et al. Plant-soil interactions maintain biodiversity and functions of tropical forest ecosystems [J]. Curr Top Ecol, 2018, 33(1): 149 − 160. |
[15] |
池鑫晨, 宋超, 朱向涛, 等. 毛竹入侵常绿阔叶林对土壤活性有机碳氮的动态影响[J]. 生态学杂志, 2020, 39(7): 2263 − 2272.
CHI Xinchen, SONG Chao, ZHU Xiangtao, et al. Effects of moso bamboo invasion on soil active organic carbon and nitrogen in a evergreen broad-leaved forest in subtropical China [J]. Chin J Ecol, 2020, 39(7): 2263 − 2272. |
[16] |
白尚斌, 周国模, 王懿祥, 等. 天目山保护区森林群落植物多样性对毛竹入侵的响应及动态变化[J]. 生物多样性, 2013, 21(3): 288 − 295.
BAI Shangbin, ZHOU Guomo, WANG Yixiang, et al. Plant species diversity and dynamics in forests invaded by moso bamboo (Phyllostachys edulis) in Tianmu Mountain Nature Reserve [J]. Biodiversity Sci, 2013, 21(3): 288 − 295. |
[17] |
EISENBIES M H, VANCE E D, AUST W M, et al. Intensive utilization of harvest residues in southern pine plantations: quantities available and implications for nutrient budgets and sustainable site productivity [J]. Bioenergy Res, 2009, 2(3): 90 − 98. |
[18] |
吴传敬, 郭剑芬, 许恩兰, 等. 采伐残余物不同处理方式对杉木幼林土壤有机碳组分和相关酶活性的影响[J]. 土壤学报, 2019, 56(6): 1504 − 1513.
WU Chuanjin, GUO Jianfeng, XU Enlan, et al. Effects of logging residue on composition of soil carbon and activity of related enzymes in soil of a young Chinese fir plantation as affected by residue handling mode [J]. Acta Pedol Sin, 2019, 56(6): 1504 − 1513. |
[19] |
黄启堂, 陈爱玲, 贺军. 不同毛竹林林地土壤理化性质特征比较[J]. 福建林学院报, 2006, 26(4): 299 − 302.
HUANG Qitang, CHEN Ailing, HE Jun. Comparison of soil physical and chemical properties among various Phyllostachys pubescens plantation [J]. J Fujian Coll For, 2006, 26(4): 299 − 302. |
[20] |
ZHAO Yingzhi, LIANG Chenfei, SHAO Shuai, et al. Linkages of litter and soil C∶N∶P stoichiometry with soil microbial resource limitation and community structure in a subtropical broadleaf forest invaded by moso bamboo [J]. Plant Soil, 2021, 465(1/2): 473 − 490. |
[21] |
吴家森, 姜培坤, 王祖良. 天目山国家级自然保护区毛竹扩张对林地土壤肥力的影响[J]. 江西农业大学学报, 2008, 30(4): 689 − 692.
WU Jiasen, JIANG Peikun, WANG Zuliang. The effects of Phyllostachys pubescens expansionon onsoil fertility in National Nature Reserve of Mount Tianmu [J]. Acta Agric Univ Jiangxi, 2008, 30(4): 689 − 692. |
[22] |
GRANDY A S, STRICKLAND M S, LAUBER C L, et al. The influence of microbial communities, management, and soil texture on soil organic matter chemistry [J]. Geoderma, 2009, 150(3/4): 278 − 286. |
[23] |
CHODAK M, NIKLIŃSKA M. The effect of different tree species on the chemical and microbial properties of reclaimed mine soils [J]. Biol Fert Soil, 2010, 46(6): 555 − 566. |