JOURNAL OF NANJING FORESTRY UNIVERSITY ›› 2024, Vol. 48 ›› Issue (4): 191-199.doi: 10.12302/j.issn.1000-2006.202209065
Previous Articles Next Articles
XING Jinmei1(), WANG Keqin1,2, SONG Yali1,2,*(), FU Hongwei1
Received:
2022-09-29
Revised:
2023-03-30
Online:
2024-07-30
Published:
2024-08-05
Contact:
SONG Yali
E-mail:xingjinmei1720@163.com;songyali19851205@sina.com
CLC Number:
XING Jinmei, WANG Keqin, SONG Yali, FU Hongwei. The litter decomposition of fallen leaves and branches from sub-alpine Quercus aquifolioides of central Yunnan Plateau under simulated nitrogen deposition[J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2024, 48(4): 191-199.
Table 1
Basic information of Quercus aquifolioides forest sample plot of Yuxi Forest Ecosystem National Positioning Observation Station in Yunnan Province"
样地 编号 plot No. | 海拔/m altitude | 林龄/a forest age | 平均树高/m mean high | 平均胸径/cm mean DBH | 郁闭度 canopy density | 坡度/ (°) slope | 坡向 aspect | 土壤类型 soil category |
---|---|---|---|---|---|---|---|---|
1 | 2 490 | 15 | 3.4 | 12.1 | 0.90 | 10 | 东北 | 山地黄棕壤 |
2 | 2 489 | 16 | 2.5 | 9.4 | 0.88 | 12 | 东北 | 山地黄棕壤 |
3 | 2 490 | 17 | 3.1 | 8.6 | 0.92 | 13 | 东北 | 山地黄棕壤 |
Table 2
Chemical constituents of the initial litter of Quercus aquifolioides from Yuxi Forest Ecosystem National Positioning Observation Station in Yunnan Province"
凋落物 类型 litter type | 碳含量/ (mg·g-1) C content | 氮含量/ (mg·g-1) N content | 磷含量/ (mg·g-1) P content | 钾含量/ (mg·g-1) K content | 木质素 含量/ (mg·g-1) lignin content | 纤维素 含量/ (mg·g-1) cellulose content | 碳氮比 C/N | 碳磷比 C/P | 氮磷比 N/P | 木质素 氮比 lignin/N | 纤维素 氮比 cellulose/N |
---|---|---|---|---|---|---|---|---|---|---|---|
凋落叶 leaf litter | 517.76± 1.27 | 9.94± 0.01 | 1.07± 0.002 | 4.49± 0.005 | 441.57± 0.00 | 229.86± 0.00 | 52.09± 0.08 | 482.67± 0.67 | 9.27± 0.00 | 44.42± 0.06 | 23.12± 0.03 |
凋落枝 twig litter | 534.24± 0.83 | 7.74± 0.01 | 0.89± 0.007 | 4.03± 0.01 | 422.97± 0.00 | 317.59± 0.00 | 69.02± 0.09 | 597.66± 2.19 | 8.66± 0.04 | 54.65± 0.09 | 41.03± 0.07 |
Table 3
Exponential regression equation of the remaining rate of leaf litter and twig decomposition quality with time in different nitrogen deposition treatments"
凋落物类型 litter type | 处理 treatment | 回归方程 regression equation | 决定系数 determination coefficient | 分解系数k/ (kg·kg-1·a-1) | 分解50%时间/a T50% | 分解95%时间/a T95% |
---|---|---|---|---|---|---|
凋落叶 leaf litter | CK | y=93.85 e-0.368 t | 0.908** | 0.368 | 1.884 | 8.141 |
LN | y=94.27 e-0.355 t | 0.923** | 0.355 | 1.953 | 8.439 | |
MN | y=94.24 e-0.329 t | 0.964** | 0.329 | 2.107 | 9.106 | |
HN | y=92.95 e-0.271 t | 0.969** | 0.271 | 2.558 | 11.054 | |
凋落枝 twig litter | CK | y=92.13 e-0.218 t | 0.943** | 0.218 | 3.180 | 13.742 |
LN | y=92.04 e-0.201 t | 0.957** | 0.201 | 3.448 | 14.904 | |
MN | y=92.24 e-0.192 t | 0.951** | 0.192 | 3.610 | 15.603 | |
HN | y=91.75 e-0.167 t | 0.924** | 0.167 | 4.151 | 17.939 |
[1] | 岳可欣, 龚吉蕊, 于上媛, 等. 氮添加下典型草原凋落物质量和土壤酶活性对凋落物分解速率的影响[J]. 草业学报, 2020, 29(6):71-82. |
YUE K X, GONG J R, YU S Y, et al. Effects of litter quality and soil enzyme activity on litter decomposition rate in typical grassland subject to nitrogen addition[J]. Acta Prataculturae Sin, 2020, 29(6):71-82.DOI: CNKI:SUN:CYXB.0.2020-06-006. | |
[2] | 于美佳, 叶彦辉, 韩艳英, 等. 氮沉降对森林生态系统影响的研究进展[J]. 安徽农业科学, 2021, 49(3):19-24,27. |
YU M J, YE Y H, HAN Y Y, et al. Research progress on the effects of nitrogen deposition on forest ecosystem[J]. J Anhui Agric Sci, 2021, 49(3):19-24,27.DOI: 10.3969/j.issn.0517-6611.2021.03.005 | |
[3] | ROWE J A, LITTON C M, LEPCZYK C A, et al. Impacts of endangered seabirds on nutrient cycling in montane forest ecosystems of hawai’I[J]. Pac Sci, 2017, 71(4):495-509.DOI: 10.2984/71.4.7. |
[4] | WEN Z, WANG R Y, LI Q, et al. Spatiotemporal variations of nitrogen and phosphorus deposition across China[J]. Sci Total Environ, 2022, 830:154740-154740.DOI: 10.1016/j.scitotenv.2022.154740. |
[5] | 汪星星, 廖文海, 许祖元, 等. 森林凋落物分解影响因素的研究进展[J]. 北方园艺, 2022(4):126-132. |
WANG X X, LIAO W H, XU Z Y, et al. Research progress of influencing factors affecting forest litter decomposition[J]. North Hortic, 2022,(4):126-132.DOI: 10.11937/bfyy.20213631. | |
[6] | 段娜, 李清河, 多普增, 等. 植物响应大气氮沉降研究进展[J]. 世界林业研究, 2019, 32(4):6-11. |
DUAN N, LI Q H, DUO P Z, et al. Plant response to atmospheric nitrogen deposition:a research review[J]. World For Res, 2019, 32(4):6-11.DOI: 10.13348/j.cnki.sjlyyj.2019.0029.y. | |
[7] | ZHOU S X, HUANG C D, HAN B H, et al. Simulated nitrogen deposition significantly suppresses the decomposition of forest litter in a natural evergreen broad-leaved forest in the Rainy Area of western China[J]. Plant Soil, 2017, 420(1):135-145.DOI: 10.1007/s11104-017-3383-x. |
[8] | BERG B, LÖNN M, NI X Y, et al. Decomposition rates in late stages of Scots pine and Norway spruce needle litter:influence of nutrients and substrate properties over a climate gradient[J]. For Ecol Manag, 2022, 522(4):1-12.DOI: 10.1016/j.foreco.2022.120452. |
[9] | ZHANG T A, LUO Y Q, CHEN H Y H, et al. Responses of litter decomposition and nutrient release to N addition:a meta-analysis of terrestrial ecosystems[J]. Appl Soil Ecol, 2018, 128:35-42.DOI: 10.1016/j.apsoil.2018.04.004. |
[10] | ZHAO F Z, WANG J Y, ZHANG L, et al. Understory plants regulate soil respiration through changes in soil enzyme activity and microbial C,N,and P stoichiometry following afforestation[J]. Forests, 2018, 9(7):436-450.DOI: 10.3390/f9070436. |
[11] | BERG B, LÖNN M. Long-term effects of climate and litter chemistry on rates and stable fractions of decomposing Scots pine and Norway spruce needle litter:a synthesis[J]. Forests, 2022, 13(1):125-140.DOI: 10.3390/f13010125. |
[12] | HUANG X L, CHEN J Z, WANG D, et al. Simulated atmospheric nitrogen deposition inhibited the leaf litter decomposition of Cinnamomum migao H.W.Li in Southwest China[J]. Sci Rep, 2021, 11(1):1748-1760.DOI: 10.1038/s41598-021-81458-3. |
[13] | 莫江明, 薛璟花, 方运霆. 鼎湖山主要森林植物凋落物分解及其对N沉降的响应[J]. 生态学报, 2004, 24(7):1413-1420. |
MO J M, XUE J H, FANG Y T. Litter decomposition and its responses to simulated N deposition for the major plants of Dinghushan forests in subtropical China[J]. Acta Ecol Sin, 2004, 24(7):1413-1420.DOI: 10.3321/j.issn:1000-0933.2004.07.015. | |
[14] | 胡宗达, 刘世荣, 史作民, 等. 川滇高山栎林土壤氮素和微生物量碳氮随海拔变化的特征[J]. 林业科学研究, 2012, 25(3):261-268. |
HU Z D, LIU S R, SHI Z M, et al. Variations of soil nitrogen and microbial biomass carbon and nitrogen of Quercus aquifolioides forest at different attitudes in Balangshan,Sichuan[J]. For Res, 2012, 25(3):261-268.DOI: 10.13275/j.cnki.lykxyj.2012.03.002. | |
[15] | 曹丽花, 尹为玲, 刘合满, 等. 西藏东南部色季拉山主要类型森林叶片和枯落物养分含量特征[J]. 生态学报, 2019, 39(11):4029-4038. |
CAO L H, YIN W L, LIU H M, et al. Stoichiometric characteristics of leaves and litter in typical forest types on Sejila Mountain,southeastern Tibet[J]. Acta Ecol Sin, 2019, 39(11):4029-4038.DOI: 10.5846/stxb201805301194. | |
[16] | 贾钧彦. 西藏高原大气氮湿沉降研究[D]. 拉萨: 西藏大学, 2008. |
JIA J Y. Study of atmospheric wet deposition of nitrogen in Tibetan Plateau[D]. Lahsa: Tibet University, 2008. | |
[17] | 杨开军, 杨万勤, 庄丽燕, 等. 四川盆地西缘都江堰大气氮素湿沉降特征[J]. 应用与环境生物学报, 2018, 24(1):107-111. |
YANG K J, YANG W Q, ZHUANG L Y, et al. Characteristics of atmospheric wet nitrogen deposition in Dujiangyan,western edge of Sichuan Basin[J]. Chin J Appl Environ Biol, 2018, 24(1):107-111.DOI: 10.19675/j.cnki.1006-687x.2017.04001. | |
[18] | 李仰征, 雷兴庆, 薛晓辉, 等. 纱帽山不同海拔大气氮湿沉降通量差异及递变规律的数学模拟[J]. 环境科学学报, 2020, 40(9):3180-3189. |
LI Y Z, LEI X Q, XUE X H, et al. Statistical modeling of variability of atmospheric nitrogen wet deposition fluxes along altitudinal gradients of Shamao Mountain[J]. Acta Sci Circumstantiae, 2020, 40(9):3180-3189.DOI: 10.13671/j.hjkxxb.2020.0270. | |
[19] | 余功友, 杨常亮, 刘楷, 等. 云南阳宗海大气氮、磷沉降特征[J]. 湖泊科学, 2017, 29(5):1134-1142. |
YU G Y, YANG C L, LIU K, et al. Atmospheric deposition of nitrogen and phosphorous in Lake Yangzonghai,Yunnan Province[J]. J Lake Sci, 2017, 29(5):1134-1142.DOI: 10.18307/2017.0511. | |
[20] | YANG R, HAYASHI K, ZHU B, et al. Atmospheric NH3 and NO2 concentration and nitrogen deposition in an agricultural catchment of eastern China[J]. Sci Total Environ, 2010, 408(20):4624-4632.DOI: 10.1016/j.scitotenv.2010.06.006. |
[21] | 鲍士旦. 土壤农化分析. 3版[M]. 北京: 中国农业出版社, 2000. |
BAO S D. Agrochemical analysis of soil[M]. 3rd ed. Beijing: China Agriculture Press, 2000. | |
[22] | 张毓涛, 李吉玫, 李翔, 等. 模拟氮沉降对天山云杉凋落叶分解及其养分释放的影响[J]. 干旱区研究, 2016, 33(5):966-973. |
ZHANG Y T, LI J M, LI X, et al. Effects of simulated nitrogen deposition on decomposition and nutrient release of leaf litter of Picea schrenkian[J]. Arid Zone Research, 2016, 33(5):966-973.DOI: 10.13866/j.azr.2016.05.08. | |
[23] | 涂利华, 胡红玲, 胡庭兴, 等. 华西雨屏区亮叶桦凋落叶分解对模拟氮沉降的响应[J]. 植物生态学报, 2012, 36(2):99-108. |
TU L H, HU H L, HU T X, et al. Response of Betula luminifera leaf litter decomposition to simulated nitrogen deposition in the Rainy Area of west China[J]. Chin J Plant Ecol, 2012, 36(2):99-108.DOI: 10.3724/SP.J.1258.2012.00099. | |
[24] | 李仁洪. 华西雨屏区慈竹林凋落物分解、养分释放及其对模拟氮沉降的响应[D]. 雅安: 四川农业大学, 2009. |
LI R H. Litter decomposition,nutrient release and their response to simulated nitrogen deposition in Neosinocalamus affinis stands in Rainy Area of west China[D]. Yaan: Sichuan Agricultural University, 2009. | |
[25] | OLSON J S. Energy storage and the balance of producers and decomposers in ecological systems[J]. Ecology, 1963, 44(2):322-331.DOI: 10.2307/1932179. |
[26] | 周世兴, 黄从德, 向元彬, 等. 模拟氮沉降对华西雨屏区天然常绿阔叶林凋落物木质素和纤维素降解的影响[J]. 应用生态学报, 2016, 27(5):1368-1374. |
ZHOU S X, HUANG C D, XIANG Y B, et al. Effects of simulated nitrogen deposition on lignin and cellulose degradation of foliar litter in natural evergreen broad-leaved forest in Rainy Area of western China[J]. Chin J Appl Ecol, 2016, 27(5):1368-1374.DOI: 10.13287/j.1001-9332.201605.004. | |
[27] | STEVENS C J. How long do ecosystems take to recover from atmospheric nitrogen deposition?[J]. Biol Conserv, 2016, 200:160-167.DOI: 10.1016/j.biocon.2016.06.005. |
[28] | 涂利华, 戴洪忠, 胡庭兴, 等. 模拟氮沉降对华西雨屏区撑绿杂交竹凋落物分解的影响[J]. 生态学报, 2011, 31(5):1277-1284. |
TU L H, DAI H Z, HU T X, et al. Effect of simulated nitrogen deposition on litter decomposition in a Bambusa pervariabilis × Dendrocala mopsi plantation,Rainy Area of west China[J]. Acta Ecol Sin, 2011, 31(5):1277-1284.DOI: CNKI:SUN:STXB.0.2011-05-010. | |
[29] | 马慧君, 张雅坤, 许文欢, 等. 模拟氮沉降对杨树人工林土壤微生物群落碳源利用类型的影响[J]. 南京林业大学学报(自然科学版), 2017, 41(5):1-6. |
MA H J, ZHANG Y K, XU W H, et al. Effects of nitrogen deposition on soil microbial community C?source metabolism of poplar plantation[J]. J Nanjing For Univ (Nat Sci Ed), 2017, 41(5):1-6.DOI: 10.3969/j.issn.1000-2006.201606014. | |
[30] | KEISER A D, BRADFORD M A. Climate masks decomposer influence in a cross-site litter decomposition study[J]. Soil Biol Biochem, 2017, 107(S1):180-187.DOI: 10.1016/j.soilbio.2016.12.022. |
[31] | VANNI M J, FLECKER A S, HOOD J M, et al. Stoichiometry of nutrient recycling by vertebrates in a tropical stream:linking species identity and ecosystem processes[J]. Ecol Lett, 2002, 5(2):285-293.DOI: 10.1046/j.1461-0248.2002.00314.x. |
[32] | 铁烈华, 张仕斌, 熊梓岑, 等. 华西雨屏区常绿阔叶林凋落叶分解过程中木质素降解对模拟氮、硫沉降的响应[J]. 林业科学研究, 2019, 32(2):25-31. |
TIE L H, ZHANG S B, XIONG Z C, et al. Effects of simulated nitrogen and sulfur deposition on lignin degradation during foliar litter decomposition in evergreen broad-leaved forest in the Rainy Area of west China[J]. For Res, 2019, 32(2):25-31.DOI: 10.13275/j.cnki.lykxyj.2019.02.004. | |
[33] | 铁烈华, 符饶, 张仕斌, 等. 华西雨屏区常绿阔叶林凋落叶分解过程中纤维素降解对模拟氮、硫沉降的响应[J]. 应用与环境生物学报, 2019, 25(1):16-22. |
TIE L H, FU R, ZHANG S B, et al. Effects of simulated nitrogen and sulfur deposition on cellulose degradation during foliar litter decomposition in evergreen broad-leaved forest in the Rainy Area of west China[J]. Chin J Appl Environ Biol, 2019, 25(1):16-22.DOI: 10.19675/j.cnki.1006-687x.2018.03014. | |
[34] | BERG B, STAAF H, WESSEN B. Decomposition and nutrient release in needle litter from nitrogen-fertilized Scots pine (Pinus sylvestris) stands[J]. Scand J For Res, 1987, 22(10):399-415.DOI: 10.1080/02827588709382478. |
[35] | 林成芳, 彭建勤, 洪慧滨, 等. 氮、磷养分有效性对森林凋落物分解的影响研究进展[J]. 生态学报, 2017, 37(1):54-62. |
LIN C F, PENG J Q, HONG H B, et al. Effect of nitrogen and phosphorus availability on forest litter decomposition[J]. Acta Ecol Sin, 2017, 37(1):54-62.DOI: 10.5846/stxb201608091636. | |
[36] | GARCÍA-PALACIOS P, MCKIE B G, HANDA I T, et al. The importance of litter traits and decomposers for litter decomposition:a comparison of aquatic and terrestrial ecosystems within and across biomes[J]. Funct Ecol, 2016, 30(5):819-829.DOI: 10.1111/1365-2435.12589. |
[1] | QUE Feng, ZHA Ruofei, WEI Qiang. Advances in research of cellulose synthase genes in plants [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2022, 46(6): 207-214. |
[2] | ZHANG Xiaorong, DUAN Guangde, HAO Longfei, LIU Tingyan, ZHANG You, ZHANG Shengxi. Responses of the non-structural carbohydrates and rhizosphere soil enzymes of Clematis fruticosa to nitrogen deposition and inoculation mycorrhizal fungi [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2022, 46(1): 171-178. |
[3] | ZHANG Qiaoyan, TANG Lixia, PAN Lu, CHEN Long. Tensile mechanical properties of roots based on chemical composition [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2020, 44(1): 186-192. |
[4] | LUO Changwei, CHEN You, ZHANG Tao. Pollination efficiency of the major pollinators of Paeonia ostia‘Feng Dan’ [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2019, 43(04): 148-154. |
[5] | ZENG Jianyong, YU Yingying, ZHANG Fangming, LI Dabo, ZHANG Guocai. Preparation and stability of avermectin-loaded ethylcellulose [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2018, 42(06): 186-190. |
[6] | CHEN Peizhen, WU Xiaogang, WEI Qiang, WU Xing, JI Kongshu. Research progress of lignin synthesis gene in Pinaceae [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2017, 41(06): 169-176. |
[7] | MA Huijun, ZHANG Yakun, XU Wenhuan, GE Zhiwei, RUAN Honghua. Effects of nitrogen deposition on soil microbial community C-source metabolism of poplar plantation [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2017, 41(05): 1-6. |
[8] | SONG Lei, LIN Youwei, JIN Guangze. Effects of simulated nitrogen deposition on soil microbial biomass carbon and nitrogen in a mixed broadleaf Korean pine forest [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2017, 41(05): 7-12. |
[9] | ZHANG Ruyi,HU Hongling, LYU Xiangyang,CHEN Hong, YANG Shanshan, HU Tingxing. Effects of decomposingleaf litter of Cinnamomum camphora on the resistance physiology of three intercropping crops and activity of the organic nitrogen fraction [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2017, 41(03): 29-36. |
[10] | XU Peng,GAO Juan,WANG Liying,LIANG Juan,TANG Jingen. Preparation and research of tebuconazole-loaded cellulose acetate slow-release formulation by high voltage electrostatic technology [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(06): 117-121. |
[11] | JIANG Bo, CAO Tingyue, GU Feng, JIN Yongcan. Effects of sodium carbonate pretreatment on enzymatic hydrolysis and lignin structure of wheat straw [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(06): 135-140. |
[12] | YIN Yuanyuan, TIAN Xiuzhi, ZHU Chunbo, JIANG Xue, WANG Hongbo, GAO Weidong. Reinforcement on the thermal stability of poly(methyl methacrylate)of cellulose nanocrystals modified with polystyrene [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(05): 138-142. |
[13] | HE Wen, LI Jiping, JIN Hui, Tian Jiaxi. Research on the alkylation modification of cellulose nanofiber separated from moso bamboo [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(02): 144-148. |
[14] | WANG Yan,JIN Yongcan . Application review of microscopic techniques on the investigation of lignocellulosic biomass pretreatment process [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(01): 155-161. |
[15] | PENG Sai, ZHANG Yakun, GE Zhiwei, RUAN Honghua. Effects of nitrogen deposition on litter decomposition by microorganisms in forests [J]. JOURNAL OF NANJING FORESTRY UNIVERSITY, 2016, 40(01): 1-7. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||