Chinese Journal of Applied Ecology ›› 2021, Vol. 32 ›› Issue (10): 3405-3414.doi: 10.13287/j.1001-9332.202110.042
Previous Articles Next Articles
GUO Xue-mei1, WANG Zhao-peng2, ZHANG Nan1, ZHANG Dong-you1*
Received:
2021-08-24
Revised:
2021-09-27
Online:
2021-10-15
Published:
2022-04-15
Contact:
* E-mail: zhangdy@163.com
Supported by:
GUO Xue-mei, WANG Zhao-peng, ZHANG Nan, ZHANG Dong-you. Responses of radial growth of Pinus sylvestris var. mongolica and Larix gmelinii to climate change[J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3405-3414.
[1] Foster P. The potential negative impacts of global climate change on tropical montane cloud forests. Earth Science Reviews, 2001, 55: 73-106 [2] Saxe H, Melvin CG, Johnsen Q, et al. Tree and forest functioning in response to global warming. New Phytologist, 2001, 149: 369-400 [3] Peters RL. Effects of global warming on forests. Forest Ecology and Management, 1990, 35: 13-33 [4] Wang XY, Zhao CY, Jia QY. Impacts of climate change on forest ecosystems in Northeast China. Advances in Climate Change Research, 2013, 4: 230-241 [5] 罗旭, 梁宇, 贺红士, 等. 气候变化和不同强度造林对大兴安岭主要树种林分信息和地上生物量的长期影响. 生态学报, 2019, 39(20): 7656-7669 [Luo X, Liang Y, He H-S, et al. Long-term effects of climate change and different silvicultural strategies on stand information and aboveground biomass of forest major species in the Great Xing'an Mountains. Acta Ecologica Sinica, 2019, 39(20): 7656-7669] [6] 谢安, 孙永罡, 白人海. 中国东北近50年干旱发展及对全球气候变暖的响应. 地理学报, 2003, 58(suppl.): 75-82 [Xie A, Sun Y-G, Bai R-H. Arid climate trend over northeastern China and its response to global warming. Acta Geographica Sinica, 2003, 58(suppl.): 75-82] [7] 梁慧敏, 魏江生, 贺敏, 等. 大兴安岭南段华北落叶松人工林径向生长对气候变化的响应. 温带林业研究, 2019, 2(3): 31-36 [Liang H-M, Wei J-S, He M, et al. Response of radial growth of Larix principis-rupprechtii plantation to climate change in southern part of Great Xing'an Mountains. Journal of Temperate Fore-stry Research, 2019, 2(3): 31-36] [8] Kwon SM, 潘磊磊, 时忠杰, 等. 不同竞争强度下的沙地樟子松天然林树木径向生长及其气候响应. 生态学杂志, 2019, 38(7): 1962-1972 [Kwon SM, Pan L-L, Shi Z-J, et al. Radial growth of Mongolian pine and its response to climate at different competition intensities. Chinese Journal of Ecology, 2019, 38(7): 1962-1972] [9] 徐静, 郭滨德, 孙洪志. 帽儿山地区不同种源樟子松树轮对气候因子的响应. 林业科学研究, 2016, 29(4): 581-586 [Xu J, Guo B-D, Sun H-Z. Tree ring response of scots pine provenances to climate factors at Maoershan, Northeastern China. Forest Research, 2016, 29(4): 581-586] [10] Jiang YG, Zhang JH, Han SJ, et al. Radial growth response of Larix gmelinii to climate along a latitudinal gradient in the Greater Khingan Mountains, Northeas-tern China. Forests, 2016, 7: 1-12 [11] 尚建勋, 时忠杰, 高吉喜, 等. 呼伦贝尔沙地樟子松年轮生长对气候变化的响应. 生态学报, 2012, 32 (4) : 1077-1084 [Shang J-X, Shi Z-J, Gao J-X, et al. Response of tree-ring width of Pinus sylvestris var. mongolica to climate change in Hulunbuir sand land, China. Acta Ecologica Sinica, 2012, 32(4): 1077-1084] [12] 薛儒鸿, 焦亮, 刘小萍, 等. 新疆阿尔泰山不同海拔西伯利亚落叶松径向生长对气候变化的响应稳定性评价. 生态学杂志, 2021, 40(5): 1275-1284 [Xue H-R, Jiao L, Liu X-P, et al. Evaluation of the stability of the radial growth of Larix sibirica at different altitudes in response to climate change in Altai Mountains, Xinjiang. Chinese Journal of Ecology, 2021, 40(5): 1275-1284] [13] 范慧涛, 陈立标, 陈忠震, 等. 冀北山地油松、落叶松径向生长对气象因子的响应. 中南林业科技大学学报, 2019, 39(1): 52-57 [Fan H-T, Chen L-B, Chen Z-Z, et al. Response of radial growth of Pinus tabuliformis and Larix gmelinii to meteorological factors in mountainous region of northern Hebei Province. Journal of Central South University of Forestry & Technology, 2019, 39(1): 52-57] [14] 苑丹阳, 赵慧颖, 李宗善, 等. 伊春地区红松和红皮云杉径向生长对气候变化的响应. 生态学报, 2020, 40(4): 1150-1160 [Yuan D-Y, Zhao H-Y, Li Z-S, et al. Radial growth of Pinus koraiensis and Picea koraiensis response to climate change in Yichun City, Heilongjiang Province. Acta Ecologica Sinica, 2020, 40(4): 1150-1160] [15] 高景文, 敖文军, 刘顶锁, 等. 大兴安岭兴安落叶松的起源及生物特性. 内蒙古科技与经济, 2003(10): 99-100 [Gao J-W, Ao W-J, Liu D-S, et al. Origin and biological characteristics of Larix gmelinii in the Greater Khingan Mountains. Inner Mongolia Science Technology & Economy, 2003(10): 99-100] [16] 高兴, 张冬有. 基于树轮宽度重建漠河近百年1月份降水量. 西北大学学报: 自然科学版, 2018, 48(5): 749-754 [Gao X, Zhang D-Y. Tree-ring based reconstruction of Mohe precipitation in January for nearly a hundred years. Journal of Northwest University: Natural Science, 2018, 48(5): 749-754] [17] 吴树森, 侯士彬, 刘丽, 等. 中国最寒冷冬季气候特征分析. 黑龙江气象, 2015, 32(4): 37-39 [Wu S-S, Hou S-B, Liu L, et al. Analysis on climate characteristics of the coldest winter in China. Heilongjiang Meteorology, 2015, 32(4): 37-39] [18] 吴树森, 张玉澎, 魏光辉, 等. 1961—2015年寒温带漠河气候变化特征分析. 黑龙江气象, 2017, 34(4): 41-43 [Wu S-S, Zhang Y-P, Wei G-H, et al. Characteristics of climate change in Mohe from 1961 to 2015. Heilongjiang Meteorology, 2017, 34(4): 41-43] [19] 何吉成, 王丽丽, 邵雪梅. 漠河樟子松树轮指数与标准化植被指数的关系研究. 第四纪研究, 2005, 25(2): 252-257 [He J-C, Wang L-L, Shao X-M. The relationship between Mongolian Scotch pine tree ring indices and normalized difference vegetation index in Mohe, China. Quaternary Science, 2005, 25(2): 252-257] [20] 杨传平. 兴安落叶松种源研究. 北京: 科学出版社, 2009 [Yang C-P. Studies on the Provenance of Larix gmelinii. Beijing: Science Press, 2009] [21] Holmes RL. Computer-assisted quality control in tree-ring dating and measurement. Tree-ring Bulletin, 1983, 43: 69-78 [22] 贾敏, 朱万泽, 王文志. 树木径向生长主要去趋势方法与误差分析. 世界林业研究, 2017, 30(3): 59-63 [Jia M, Zhu W-Z, Wang W-Z. Detrending methods and biases analysis in tree radial growth. World Forestry Research, 2017, 30(3): 59-63] [23] Cook ER. A Time Series Analysis Approach to Tree-ring Standardization. PhD Thesis. Tucson, AZ, USA: The University of Arizona, 1985 [24] 邵雪梅, 吴祥定. 华山树木年轮年表的建立. 地理学报, 1994, 61(2): 174-181 [Shao X-M, Wu X-D. Tree-ring chronologies for Pinus armandi Franch from Huashan, China. Acta Geographica Sinica, 1994, 61(2): 174-181] [25] Wang F, Shao W, Yu HJ, et al. Re-evaluation of the power of the Mann-Kendall test for detecting monotonic trends in hydrometeorological time series. Frontiers in Earth Science, 2020, 6, doi: 10.3389/feart.2020.00014 [26] 李广起, 白帆, 桑卫国. 长白山红松和鱼鳞云杉在分布上限的径向生长对气候变暖的不同响应. 植物生态学报, 2011, 35(5): 500-511 [Li G-Q, Bai F, Sang W-G. Different responses of radial growth to climate warming in Pinus koraiensis and Picea jezoensis var. komarovii at their upper elevational limits in Changbai Mountain, China. Chinese Journal of Plant Ecology, 2011, 35(5): 500-511] [27] 史雯欣, 崔琳琳, 宋慧明, 等. 黄土高原中部麻栎宽度年表的气候响应特征初探. 地球环境学报, 2020, 11(6): 583-594 [Shi W-X, Cui L-L, Song H-M, et al. The climate signal recorded by Quercus acutissima tree-ring chronology from the central Loess Plateau. Journal of Earth Environment, 2020, 11(6): 583-594] [28] Smith KT. An organismal view of dendrochronology. Dendrochronologia, 2008, 26: 185-193 [29] Wigley TM, Briffa KR, Jones PD. On the average values of correlated time series, with applications in dendroclimatology and hydrometeorology. Journal of Climate and Applied Meteorology, 1984, 23: 201-213 [30] 王丽丽, 邵雪梅, 黄磊, 等. 黑龙江漠河兴安落叶松与樟子松树轮生长特性及其对气候的响应. 植物生态学报, 2005, 29(3): 380-385 [Wang L-L, Shao X-M, Huang L, et al. Tree-ring characteristics of Larix gmelini and Pinus sylvestris var. mongolica and their response to climate in Mohe, China. Chinese Journal of Plant Ecology, 2005, 29(3): 380-385] [31] 吴燕良, 甘淼, 于瑞德, 等. 天山东部西伯利亚落叶松径向生长对气候的响应及其物候模拟. 应用与环境生物学报, 2019, 25(6): 1301-1311 [Wu Y-L, Gan M, Yu R-D, et al. Effect of climate on the radial growth of Larix sibirica and its phenological features in the eastern Tianshan Mountains. Chinese Journal of Applied and Environmental Biology, 2019, 25(6): 1301-1311] [32] 张贇, 尹定财, 张卫国, 等. 普达措国家公园 2 个针叶树种径向生长对温度和降水的响应. 生态学报, 2018, 38(15): 5383-5392 [Zhang Y, Yin D-C, Zhang W-G, et al. Response of radial growth of two conifers to temperature and precipitation in Potatso National Park Southwest China. Acta Ecologica Sinica, 2018, 38(15): 5383-5392] [33] 于大炮, 王顺忠, 唐立娜, 等. 长白山北坡落叶松年轮年表及其与气候变化的关系. 应用生态学报, 2005, 16(1): 14-20 [Yu D-P, Wang S-Z, Tang L-N, et al. Relationship between tree-ring chronology of Larix olgensis in Changbai Mountains and the climate change. Chinese Journal of Applied Ecology, 2005, 16(1): 14-20] [34] 孙振静. 大兴安岭北部不同降水梯度下兴安落叶松生长对升温的响应差异. 北京林业大学学报, 2019, 41(6): 1-14 [Sun Z-J. Differences in response of La-rix gmelinii growth to rising temperature under different precipitation gradients in northern Daxing'an Mountains of northeastern China. Journal of Beijing Forestry University, 2019, 41(6): 1-14] [35] 李晓琴, 张凌楠, 曾小敏, 等. 黄土高原中部针叶树与灌木径向生长对气候的响应差异. 生态学报, 2020, 40(16): 5685-5697 [Li X-Q, Zhang L-N, Zeng X-M, et al. Different response of conifer and shrubs radial growth to climate in the middle Loess Pla-teau. Acta Ecologica Sinica, 2020, 40(16): 5685-5697] [36] Tian QY, He ZB, Xiao SC, et al. Response of stem radial growth of Qinghai spruce (Picea crassifolia) to environmental factors in the Qilian Mountains of China. Dendrochronologia, 2017, 44: 76-83 [37] 鲍安, 杨立学, 刘滨辉. 老爷岭红松和胡桃楸径向生长对气候变化的响应. 东北林业大学学报, 2019, 47(12): 16-21 [Bao A, Yang L-X, Liu B-H. Radial growth of Pinus koraiensis and Juglans mandshurica in response to climate change in Laoyeling Mountains. Journal of Northeast Forestry University, 2019, 47(12): 16-21] [38] 张先亮, 何兴元, 陈振举. 大兴安岭山地樟子松径向生长对气候变暖的响应——以满归地区为例. 应用生态学报, 2011, 22(12): 3101-3108 [Zhang X-L, He X-Y, Chen Z-J. Responses of Pinus sylvestris var. mongolica radial growth to climate warming in Great Xing'an Mountains: A case study in Mangui. Chinese Journal of Applied Ecology, 2011, 22(12): 3101-3108] [39] 王晓春, 宋来萍, 张远东. 大兴安岭北部樟子松树木生长与气候因子的关系. 植物生态学报, 2011, 35(3): 294-302 [Wang X-C, Song L-P, Zhang Y-D. Climate-tree growth relationships of Pinus sylvestris var. mongolica in the northern Daxing'an Mountains, China. Chinese Journal of Plant Ecology, 2011, 35(3): 294-302] [40] Zhu LJ, Cooper DJ, Yang JW. Rapid warming induces the contrasting growth of Yezo spruce (Picea jezoensis var. microsperma) at two elevation gradient sites of northeast China. Dendrochronnlogia, 2018, 50: 52-63 [41] 于健, 刘琪璟, 周光, 等. 小兴安岭红松和鱼鳞云杉径向生长对气候变化的响应. 应用生态学报, 2017, 28(11): 3451-3460 [Yu J, Liu Q-J, Zhou G, et al. Response of radial growth of Pinus koraiensis and Picea jezoensis to climate change in Xiao-xing'anling Mountains, Northeast China. Chinese Journal of Applied Ecology, 2017, 28(11): 3451-3460] [42] 高露双, 王晓明, 赵秀海. 长白山过渡带红松和鱼鳞云杉径向生长对气候因子的响应. 植物生态学报, 2011, 35(1): 27-34 [Gao L-S, Wang X-M, Zhao X-H. Response of Pinus koraiensis and Picea jezoensis var. komarovii to climate in the transition zone of Changbai Mountain, China. Chinese Journal of Plant Ecology, 2011, 35(1): 27-34] [43] Wang XC, Zhang YD, Douglas J, et al. Spatial and age-dependent tree-ring growth responses of Larix gmelinii to climate in northeastern China. Trees, 2009, 23: 875-885 [44] Liu Y, Zhang XJ, Song HM, et al. Tree-ring-width-based PDSI reconstruction for central Inner Mongolia, China over the past 333 years. Climate Dynamics, 2017, 48: 867-879 [45] Su JJ, Wang XC. Spatio-temporal variations in climate-growth relationships of three hardwood tree species across the north Zhangguangcai Mountains, northeast China. Acta Ecologica Sinica, 2017, 37: 1484-1495 [46] 常晓丽, 金会军, 何瑞霞, 等. 中国东北大兴安岭多年冻土与寒区环境考察和研究进展. 冰川冻土, 2008, 30(1): 176-182 [Chang X-L, Jin H-J, He R-X, et al. Advances in permafrost and cold regions environments studies in the Da Xing'anling (Da Hinggan) Mountains, Northeastern China. Journal of Glaciology and Geocryology, 2008, 30(1): 176-182] [47] 陈列, 高露双, 张赟, 等. 长白山北坡不同林型内红松年表特征及其与气候因子的关系. 生态学报, 2013, 33(4): 1285-1291 [Chen L, Gao L-S, Zhang Y, et al. Characteristics of tree-ring chronology of Pinus koraiensis and its relationship with climate factors on the northern slope of Changbai Mountain. Acta Ecologica Sinica, 2013, 33(4): 1285-1291] [48] 张朋磊. 兴安落叶松对气候变化响应的时间稳定性分析. 硕士论文. 哈尔滨: 东北林业大学, 2015 [Zhang P-L. The Relationship between the Growth of Larix gmelinii in the Great Khingan and the Climate Change and Its Time Stability. Master Thesis. Harbin: Northeast Forestry University, 2015] |
[1] | XIE Pingping, ZHANG Boyi, DONG Yibo, LYU Pengcheng, DU Mingchao, ZHANG Xianliang. Differences in ecological resilience of radial growth between Larix principis-rupprechtii and Picea meyeri after drought [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1779-1786. |
[2] | WANG Heng, WANG Xiao-xue, JIA Jianheng, ZHANG Zihang, GUO Mingming. Responses of radial growth of Larix principis-rupprechtii to abrupt warming [J]. Chinese Journal of Applied Ecology, 2023, 34(10): 2629-2636. |
[3] | GAO Xin, YANG Li-xin, CHEN Zhen-ju. Convolutional neural network tree species identification based on tree-ring radial section image features [J]. Chinese Journal of Applied Ecology, 2023, 34(1): 47-57. |
[4] | ZHANG Hui, FU Pei-li, LIN You-xing, GE Sang, YANG Jian-qiang, GE-RONG Qu-zha, FAN Ze-xin. Intra-annual radial growth of Abies georgei and Larix potaninii and its responses to environmental factors in the Baima Snow Mountain, Northwest Yunnan, China. [J]. Chinese Journal of Applied Ecology, 2022, 33(11): 2881-2888. |
[5] | JIA Han-sen, GAO Jun, ZHANG Jin-song, MENG Ping, SUN Shou-jia. Growth response to climatic factors and drought events in Quercus variabilis trees of different diameter classes at south aspect of Taihang Mountains, China [J]. Chinese Journal of Applied Ecology, 2021, 32(8): 2857-2865. |
[6] | HAN Yan-gang, GAI Xue-rui, QIU Si-yu, ZHANG Yue, WANG Shou-le, ZHOU Li, YU Da-pao. Spatial and temporal variations of the responses of radial growth of Larix gmelinii to climate in the Daxing'anling Mountains of Northeast China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3397-3404. |
[7] | YANG Jing-wen, ZHANG Qiu-liang, SONG Wen-qi, ZHANG Xu, LI Zong-shan, ZHANG Yuan-dong, WANG Xiao-chun. Response differences of radial growth of Larix gmelinii and Pinus sylvestris var. mongolica to climate change in Daxing'an Mountains, Northeast China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3415-3427. |
[8] | BAO Guang, LIU Zhi-ye, LIU Na, WU Mai-li. Simulation analysis of the radial growth characteristics of Pinus sylvestris var. mongolica in Hulunbuir Sandy Land by Vaganov-Shashkin Model [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3448-3458. |
[9] | ZHAO Ying, CAI Li-xin, JIN Yu-ting, LI Jun-xia, CUI Di, CHEN Zhen-ju. Warming-drying climate intensifies the restriction of moisture on radial growth of Pinus tabuli-formis plantation in semi-arid area of Northeast China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3459-3467. |
[10] | MAO Yi-xin, ZHANG Hui-dong, WANG Rui-zhao, YAN Ting-wu, WEI Wen-jun, YUN Li-li, PAN Wen-li, YOU Wen-zhong. Responses of radial growth of Quercus mongolica to stand density and climatic factors in a mountainous area of eastern Liaoning Province, China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3477-3486. |
[11] | GAO Jia-ni, YANG Bao, QIN Chun. Response of intra-annual stem radial growth to drought events: A case study of Pinus tabuliformis in the Helan Mountains, China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3505-3511. |
[12] | LI Jing-ru, PENG Jian-feng, YANG Liu, CUI Jia-yue, LI Xuan, PENG Meng. Responses of radial growth of two coniferous species to climate factors in western Sichuan Plateau, China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3512-3520. |
[13] | MENG Sheng-wang, YANG Feng-ting, DAI Xiao-qin, WANG Hui-min. Radial growth dynamics of Chinese fir and its response to seasonal drought [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3521-3530. |
[14] | CAO Xin-guang, HU Hong-bing, LI Ying-jun, DONG Zhi-peng, LU Xiao-rong, BAI Mao-wei, ZHENG Zhuang-peng, FANG Ke-yan. Differences in the ecological resilience of planted and natural Pinus massoniana and Cunninghamia lanceolata forests in response to drought in subtropical China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3531-3538. |
[15] | LI Ying-jun, FANG Ke-yan, BAI Mao-wei, CAO Xin-guang, DONG Zhi-peng, TANG Wan-ru, MEI Ze-peng. Ecological resilience of ancient Pinus massoniana trees to climate change and insect infestation in southeastern Fujian, China [J]. Chinese Journal of Applied Ecology, 2021, 32(10): 3539-3547. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 219
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 476
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||