Ma, Linyuan; Xu, Qinghai; Zhang, Shengrui; Li, Yuecong; Miao, Yunfa; Cao, Xianyong (2025) Review of relative pollen productivity estimates for the Tibetan Plateau. Science China Earth Sciences, 68 (8). doi:10.1007/s11430-024-1607-6
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | Review of relative pollen productivity estimates for the Tibetan Plateau | ||
Journal | Science China Earth Sciences | ||
Authors | Ma, Linyuan | Author | |
Xu, Qinghai | Author | ||
Zhang, Shengrui | Author | ||
Li, Yuecong | Author | ||
Miao, Yunfa | Author | ||
Cao, Xianyong | Author | ||
Year | 2025 (August) | Volume | 68 |
Issue | 8 | ||
Publisher | Springer Science and Business Media LLC | ||
DOI | doi:10.1007/s11430-024-1607-6Search in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 18786674 | Long-form Identifier | mindat:1:5:18786674:5 |
GUID | 0 | ||
Full Reference | Ma, Linyuan; Xu, Qinghai; Zhang, Shengrui; Li, Yuecong; Miao, Yunfa; Cao, Xianyong (2025) Review of relative pollen productivity estimates for the Tibetan Plateau. Science China Earth Sciences, 68 (8). doi:10.1007/s11430-024-1607-6 | ||
Plain Text | Ma, Linyuan; Xu, Qinghai; Zhang, Shengrui; Li, Yuecong; Miao, Yunfa; Cao, Xianyong (2025) Review of relative pollen productivity estimates for the Tibetan Plateau. Science China Earth Sciences, 68 (8). doi:10.1007/s11430-024-1607-6 | ||
In | (2025, August) Science China Earth Sciences Vol. 68 (8). Springer Science and Business Media LLC |
References Listed
These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.
![]() | |
Not Yet Imported: - journal-article : 10.1007/s00334-008-0148-8 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Not Yet Imported: - journal-article : 10.1007/s00334-010-0246-2 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
Cao X Y, Tian F, Xu Q H, Ni J, Herzschuh U. 2022. Modern pollen dataset for Asia. National Tibetan Plateau/Third Pole Environment Data Center | |
Cheng Y, Luo P, Yang H, Li M W, Ni M, Li H L, Huang Y, Xie W W, Wang L H. 2024. Land use and cover change accelerated China’s land carbon sinks limits soil carbon. NPJ Clim Atmos Sci, 7: 199 | |
![]() | |
![]() | de Noblet-Ducoudré, Nathalie, Boisier, Juan-Pablo, Pitman, Andy, Bonan, G. B., Brovkin, V., Cruz, Faye, Delire, C., Gayler, V., van den Hurk, B. J. J. M., Lawrence, P. J., van der Molen, M. K., Müller, C., Reick, C. H., Strengers, B. J., Voldoire, A. (2012) Determining Robust Impacts of Land-Use-Induced Land Cover Changes on Surface Climate over North America and Eurasia: Results from the First Set of LUCID Experiments. Journal of Climate, 25 (9). 3261-3281 doi:10.1175/jcli-d-11-00338.1 |
Not Yet Imported: - journal-article : 10.3402/tellusb.v55i2.16765 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | Gaillard, M.-J., Sugita, S., Mazier, F., Trondman, A.-K., Broström, A., Hickler, T., Kaplan, J. O., Kjellström, E., Kokfelt, U., Kuneš, P., Lemmen, C., Miller, P., Olofsson, J., Poska, A., Rundgren, M., Smith, B., Strandberg, G., Fyfe, R., Nielsen, A. B., Alenius, T., Balakauskas, L., Barnekow, L., Birks, H. J. B., Bjune, A., Björkman, L., Giesecke, T., Hjelle, K., Kalnina, L., Kangur, M., van der Knaap, W. O., Koff, T., Lagerås, P., Latałowa, M., Leydet, M., Lechterbeck, J., Lindbladh, M., Odgaard, B., Peglar, S., Segerström, U., von Stedingk, H., Seppä, H. (2010) Holocene land-cover reconstructions for studies on land cover-climate feedbacks. Climate of the Past, 6 (4). 483-499 doi:10.5194/cp-6-483-2010 |
He S L, Zhang Y Z, Han Z Q, Wang F K, Shi X Y. 2021. Characterization of changes in sunshine hours and wind speed in the Qaidam Basin and their impacts (in Chinese). Qinghai Huanjing, 31: 148–156 | |
Hou X Y. 2019. 1:1000000 Vegetation Atlas of China. National Tibetan Plateau Data Center | |
![]() | Jiang, Fangyuan, Xu, Qinghai, Zhang, Shengrui, Li, Furong, Zhang, Kun, Wang, Meng, Shen, Wei, Sun, Yuanhao, Zhou, Zhongze (2020) Relative pollen productivities of the major plant taxa of subtropical evergreen–deciduous mixed woodland in China. Journal of Quaternary Science, 35 (4) 526-538 doi:10.1002/jqs.3197 |
![]() | Li, Dehui, Xu, Qinghai, Li, Yiwen, Li, Yuecong, Zhang, Ruchun, Yang, Xiaolan, Wei, Haicheng, Li, Xinling (2022) Relative pollen productivity estimates for alpine meadow in the Qinghai-Tibet Plateau and their potential significance for paleovegetation reconstruction. Quaternary International, 641. 115-121 doi:10.1016/j.quaint.2022.07.002 |
Not Yet Imported: Vegetation History and Archaeobotany - journal-article : 10.1007/s00334-017-0636-9 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Not Yet Imported: - journal-article : 10.3389/fpls.2018.01214 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | Li, Furong, Gaillard, Marie-José, Cao, Xianyong, Herzschuh, Ulrike, Sugita, Shinya, Tarasov, Pavel E., Wagner, Mayke, Xu, Qinghai, Ni, Jian, Wang, Weiming, Zhao, Yan, An, Chengbang, Beusen, A.H.W., Chen, Fahu, Feng, Zhaodong, Goldewijk, C.G.M. Klein, Huang, Xiaozhong, Li, Yuecong, Li, Yu, Liu, Hongyan, Sun, Aizhi, Yao, Yifeng, Zheng, Zhuo, Jia, Xin (2020) Towards quantification of Holocene anthropogenic land-cover change in temperate China: A review in the light of pollen-based REVEALS reconstructions of regional plant cover. Earth-Science Reviews, 203. 103119 doi:10.1016/j.earscirev.2020.103119 |
Li X B. 1996. A review of the international researches on land use/land cover change (in Chinese). Acta Geogr Sin, 51: 553–558 | |
![]() | Li, Yiwen, Xu, Qinghai, Zhang, Shengrui, Li, Yuecong, Sun, Yuanhao, Wang, Tao, Shen, Wei, Yang, Xiaolan, Zhang, Ruchun, Wei, Haicheng (2019) Significance of pollen assemblages for the vegetationcomposition of alpine shrub meadow in theQinghai-Tibetan Plateau, China. Chinese Science Bulletin, 64 (20). 2141-2150 doi:10.1360/n972019-00126 |
Li Y, Wang Y, Li Y C, Zhang R C, Ma L Y, You H F, Wang R R, Cao Y H, Xu Q H. 2024. Estimation of relative pollen productivity in alpine desert steppe of western Tibetan Plateau (in Chinese). Adv Earth Sci, 39: 1169–1182 | |
Lin Z Y, Wu X D. 1981. Climatic regionalization of the Qinghai-Xizang Plateau (in Chinese). Acta Geogr Sin, 36: 22–32 | |
Liu J Q, Zhang H P, Bai W J, Li Y P. 2016. Climate change characteristics of average wind speed in the Sanjiangyuan Region (in Chinese). Mod Agric Sci Technol, 17: 204–212 | |
Not Yet Imported: - journal-article : 10.1111/bor.12641 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | Ma, Qingfeng, Zhu, Liping, LĂĽ, Xinmiao, Wang, Junbo, Ju, Jianting, Kasper, Thomas, Daut, Gerhard, Haberzettl, Torsten (2019) Late glacial and Holocene vegetation and climate variations at Lake Tangra Yumco, central Tibetan Plateau. Global and Planetary Change, 174. 16-25 doi:10.1016/j.gloplacha.2019.01.004 |
![]() | Ma, Qingfeng, Zhu, Liping, Wang, Junbo, Ju, Jianting, Wang, Yong, LĂĽ, Xinmiao, Kasper, Thomas, Haberzettl, Torsten (2020) Late Holocene vegetation responses to climate change and human impact on the central Tibetan Plateau. Science of The Total Environment, 708. 135370pp. doi:10.1016/j.scitotenv.2019.135370 |
Mao F, Lu Z G, Zheng L Y, Zhang J H. 2006. Variation characteristics of sunshine duration and wind velocity in Naqu, Xizang for recent 40 years (in Chinese). Meteorol Mon, 32: 77–83 | |
Mao F, Lu Z G, Zhang J H, Zheng L Y. 2007. Analysis on climate characteristics in Naqu in recent 40 years (in Chinese). Plateau Meteorol, 26: 708–715 | |
![]() | Mazier, F., Gaillard, M.-J., Kuneš, P., Sugita, S., Trondman, A.-K., Broström, A. (2012) Testing the effect of site selection and parameter setting on REVEALS-model estimates of plant abundance using the Czech Quaternary Palynological Database. Review of Palaeobotany and Palynology, 187. 38-49 doi:10.1016/j.revpalbo.2012.07.017 |
![]() | |
Oldfield F. 1970. Some aspects of scale and complexity in pollen-analytically based paleoecology. Pollen et Spores, 12: 163–171 | |
Pang Y Z, La D, Zhang Y J, Li C H, Tang L Y. 2016. Relationship between the surface pollen and modern vegetation in the mila mounta southern Qinghai-Tibetan Plateau, China (in Chinese). Acta Micropalaeontol Sin, 33: 33–44 | |
![]() | |
![]() | |
Not Yet Imported: - journal-article : 10.2307/2531338 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
Not Yet Imported: Vegetation History and Archaeobotany - journal-article : 10.1007/s00334-019-00751-4 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
Shang K Z, Han J J, Yang D B, Wang S G. 2006. The climate changing trend and prediction in Northwest Tibetan Plateau repreented by the Shiquan River meteorological station (in Chinese). J of Lanzhou Univ-Nat Sci, 6: 27–32 | |
![]() | Strandberg, G., Kjellström, E., Poska, A., Wagner, S., Gaillard, M.-J., Trondman, A.-K., Mauri, A., Davis, B. A. S., Kaplan, J. O., Birks, H. J. B., Bjune, A. E., Fyfe, R., Giesecke, T., Kalnina, L., Kangur, M., van der Knaap, W. O., Kokfelt, U., Kuneš, P., Lata\\l owa, M., Marquer, L., Mazier, F., Nielsen, A. B., Smith, B., Seppä, H., Sugita, S. (2014) Regional climate model simulations for Europe at 6 and 0.2 k BP: sensitivity to changes in anthropogenic deforestation. Climate of the Past, 10 (2). 661-680 doi:10.5194/cp-10-661-2014 |
Stuart A, Ord J K. 1994. Kendall’s Advanced Theory of Statistics, Vol. 1: Distribution Theory. London: Edward Arnold | |
![]() | |
Not Yet Imported: The Journal of Ecology - journal-article : 10.2307/2261452 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
![]() | |
![]() | |
![]() | Sun, Yuanhao, Xu, Qinghai, Gaillard, Marie-José, Zhang, Shengrui, Li, Dehui, Li, Manyue, Li, Yuecong, Li, Xinling, Xiao, Jule (2022) Pollen-based reconstruction of total land-cover change over the Holocene in the temperate steppe region of China: An attempt to quantify the cover of vegetation and bare ground in the past using a novel approach. CATENA, 214. 106307 doi:10.1016/j.catena.2022.106307 |
![]() | |
Tauber H. 1965. Differential Pollen Dispersion and the Interpretation of Pollen Diagrams: With A Contribution to the Interpr Etation of the Elm Fall. Kobenhaven: Reitzels Forlag | |
Not Yet Imported: - journal-article : 10.1111/boj.12385 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
Not Yet Imported: - journal-article : 10.1007/s00334-016-0572-0 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Tibetan Investigation Group. 1988. Vegetation of Xizang (Tibet) (in Chinese). Beijing: Science Press. 589 | |
Not Yet Imported: - journal-article : 10.1016/j.ecolind.2020.106297 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
Wang Y, Li Y, Ma L Y, You H F, Zhang R C, Liu C H, Zuo Y T, Wang R R, Ge Y W, Li Y C, Xu Q H. 2025. Relative pollen productivity estimates for the dominant plant taxa in the Hoh Xil region of the Qinghai-Tibet Plateau. Veget Hist Archaeobot, https://doi.org/10.1007/s00334-025-01036-9 | |
![]() | |
Wu Z Y. 1980. Vegetation of China (in Chinese). Beijing: Science Press. 1375 | |
Xu Q H, Zhang S R. 2013. Advance in pollen source area (in Chinese). Adv Earth Sci, 28: 968–975 | |
![]() | |
![]() | Xu, QingHai, Cao, XianYong, Tian, Fang, Zhang, ShengRui, Li, YueCong, Li, ManYue, Li, Jie, Liu, YaoLiang, Liang, Jian (2014) Relative pollen productivities of typical steppe species in northern China and their potential in past vegetation reconstruction. Science China Earth Sciences, 57 (6) 1254-1266 doi:10.1007/s11430-013-4738-7 |
Xu Q H, Li M Y, Zhang S R, Zhang Y H, Zhang P P, Lu J Y. 2015. Modern pollen processes of China: Progress and Problems. Sci Sin Terrae, 58: 1661–1682 | |
![]() | |
Yin W J, Zhang M L, Hu L T. 2018. Spatiotemporal variation of drought in the Qaidam Basin (in Chinese). Arid Zone Res, 35: 387–394 | |
Yuan Q, Shan F S, Wei H C, Chen K L, Zhai J. 2010. Pollen assemblages of surface samples and their relationships with Heimahe and Quanwan wetlands vegetation in Qinhai Lake area (in Chinese). J Salt Lake Res, 18: 6–11 | |
Zhang Y L, Li B Y, Zheng D. 2014. Datasets of the boundary and area of the Tibetan Plateau (in Chinese). Acta Geogr Sin, 69: 65–68 |
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