Fecal pollen assemblages of grazing livestock in alpine meadow of Eastern Qinghai Tibet Plateau and their environmental implications (2017)

Fecal pollen assemblages of grazing livestock in alpine meadow of Eastern Qinghai Tibet Plateau and their environmental implications (2017)


In July 2017, our team carried out field vegetation quadrat survey and livestock manure sample collection in Henan and Zeku counties. Random sampling 100 m × 5 ~ 10 pieces of unweathered excrement of the same grazing livestock in 100 m area were mixed into a sample and sealed for preservation. A total of 49 livestock manure samples were collected, including 30 yak (bosgrunniens), 11 horse (Equus ferus cabellus) and 8 sheep (Ovis aries). GPS was used to locate each sampling point, and the vegetation community and main vegetation types within the sampling point were recorded. The dry weight of each sample was 2 g. before sample treatment, 1 Lycopodium spore (27637) was added to each sample ± 563 grains per tablet were used to calculate the sporopollen concentration. Remove the calcareous cement with 10% HCl, after 200 μ The larger particle size of plant residues was removed by M sieve, and the organic matter was removed by 10% KOH in water bath at 70 ℃; Then 40% HF was added to remove the silicate. Finally, 7 μ The sporopollen was enriched by nylon sieve, cleaned and preserved in glycerin. The identification of sporopollen was carried out under 400 times optical biological microscope with reference to the sporopollen morphological atlas and literature. Tilia software was used to draw the sporopollen percentage map. The principal component analysis of sporopollen data was carried out by using canoco5.0 software. This data not only provides new research ideas and means for evaluating grazing livestock feeding habits and the impact of animal husbandry activities on regional vegetation in the Qinghai Tibet Plateau, but also provides important modern process basis and reference data for carrying out pollen analysis of fecal samples preserved in archaeological sites in the Qinghai Tibet Plateau in the future, so as to reconstruct the information of ancient vegetation communities and ancient human production activities.


File naming and required software

The data set is stored in Excel format and contains five worksheets, which are basic information of sampling point. XLS, coordinate point. XLS, original data. XLS, calculation process of percentage content of original data. XLS and percentage content. XLS. The data file can be opened with office software or imported into relational database system. The statistical unit involved in the data table is% sporopollen concentration.


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Cite as:

Hou, G. (2021). Fecal pollen assemblages of grazing livestock in alpine meadow of Eastern Qinghai Tibet Plateau and their environmental implications (2017). A Big Earth Data Platform for Three Poles, DOI: 10.11888/Paleoenv.tpdc.271265. CSTR: 18406.11.Paleoenv.tpdc.271265. (Download the reference: RIS | Bibtex )

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References literature

1.Yao, T.D., Chen, F.H., Cui, P., et al. (2017). From Tibetan Plateau to Third Pole and PanThird Pole. Bulletin of Chinese Academy of Sciences, 32(9), 924-931. (View Details )

2.Sun,H.L., Zheng, D.,Yao, T.D., et al. (2012). Protection and construction of the nationalecological security shelter zone on Tibetan Plateau. Acta Geographica Sinica, 67(1), 3-12. (View Details )

3.Yao, T. D., Thompson, L. G., Mosbrugger, V., et al. (2012).Third pole environment (TPE). Environmental Development, (3), 52-64. (View Details )

4.Schwalb, A., Schütt, B., Fang, X. (2010).Climate evolution and environmental response on the Tibetan Plateau. Quaternary International,(218), 1-2. (View Details )

5.Qiu, J. China: The third pole. (2008). Nature News, 454(7203), 393-396. (View Details )

6.Xie, G.D., Lu, C.X.,Xiao, Y., et al. (2003). The economic evaluation of grassland ecosystem services in Qinghai-Tibet Plateau. Mountain Research, 2003(1), 50-55. (View Details )

7.Che, Z.X., Yan, M., He, T.D., et al. (2018). Soil nitrogen mineralization and its influence factors in grassland in western Qilian Mountains. Arid Land Geography, 41(1), 92-98. (View Details )

8.Li, G., Zhang, Z., & Shi, L., et al. (2018). Effects of different grazing intensities on soil C, N, and P in an alpine meadow on the Qinghai-TibetanPlateau, China. International Journal of Environmental Re⁃search and Public Health, 15(11), 2584. (View Details )

9.Yang, J.J., Tuerxunnayi, R,, Zhang, Q.Q., et al. (2019). Effects of grazing intensity on plant community characteristics in mountain meadows in the middle section of the northern slope of the Tianshan Mountains. Prata cultural Science, 36(8), 1953-1961. (View Details )

10.Wu, Y.N., Zhang, F.J., Shiyomi, M. (2011). Quantitative analysis of spatial heterogeneity in species richness and composition in grassland vegetation with different grazing intensities in the northeast Inner Mongolian steppe. Arid Land Geography, 34(6), 904-911. (View Details )

11.Liu,W., Wang, X., Liu, J.K., et al. (1990). Effects of experimental grazing in⁃tensity on rodent community diversity Chinese Qinghai. Journal of Animal and Veterinary Sciences, (5), 3-6. (View Details )

12.Zhuo, L.H.,Hou, C.X. (2019). Key problems of grassland utilization and the graze ban policy in farming-pastoral ecotone of northern China. Arid Land Geography, 42(2), 354-362. (View Details )

13.Qin, J.X., Hao, X.M., Zhang, Y., et al. (2020). Effects of climate change and human activities on vegetation productivity in arid areas. Arid Land Geography, 43(1), 117-125. (View Details )

14.Diaz, S., Lavorel, S., Mcintyre, S., et al. (2007). Plant trait responses to grazing: A global synthesis. Global Change Biology, 13(2), 313-341. (View Details )

15.Marcelo, S., Mario, G., Avi, P., et al. (2000). Vegetation response to grazing management in a Mediterranean herbaceous community: A functional group approach. Journal of Applied Ecology, 37(2), 224-237. (View Details )

16.Li, J.H., Li, Z.Q., Ren, J.Z. (2002). The effects of grazing on grassland plants. Acta Prataculturae Sinica, 11(1), 4-11. (View Details )

17.Du, Y.G., Liang, D.Y., Cao, G.M., et al. (2008). Effecton incrassation of mattic epipedon and pasture nutrient moisture using by grazing in alpine Kobresia meadow. Acta PrataculturaeSinica, 17(3), 146-150. (View Details )

18.Li, Y.H., Wang, S.P. (1998). Grazing intake of inner Mongolian fine- wool sheep and their preference for grassland forage species. Acta Prataculturae Sinica, 7(1), 50-53. (View Details )

19.Wang, S.P. (2001). The dietary composition of fine wool sheep under different stocking rates and relationship between dietary diversity and plant diversity in Inner Mongolia steppe. Acta Ecologica Sinica, 21(2), 237-243. (View Details )

20.Norbury, G. (1988). Microscopic analysis of herbivore diets: A problem and a solution. Wildlife Research, 15(1), 51-57. (View Details )


Support Program

National Natural Science Foundation of China, No.41761018 (No:41761018)

Qinghai Provincial Natural Science Foundation Youth Project (No:2017-ZJ-931Q)

The Chinese Academy of Sciences (Class A) Strategic Priority Science and Technology Program (No:XDA2004010101)

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License: This work is licensed under an Attribution 4.0 International (CC BY 4.0)


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Keywords
Geographic coverage
East: 101.42 West: 101.30
South: 34.30 North: 35.06
Details
  • Temporal resolution: Yearly
  • Spatial resolution: -
  • File size: 2 MB
  • Views: 2505
  • Downloads: 5
  • Access: Requestable
  • Temporal coverage: 2017-01-01 To 2017-12-31
  • Updated time: 2021-04-28
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