Spatial or temporal variation: What is more important to consider when estimating soil respiration rates at different scales of observation
- Авторлар: Karelin D.V.1, Sukhoveeva O.E.1, Zolotukhin A.N.2, Nikitin D.A.3
-
Мекемелер:
- Institute of Geography, Russian Academy of Sciences
- Federal Agricultural Kursk Research Center
- Dokuchaev Soil Science Institute
- Шығарылым: № 11 (2025)
- Беттер: 1484-1493
- Бөлім: SOIL PHYSICS
- URL: https://journals.rcsi.science/0032-180X/article/view/352050
- DOI: https://doi.org/10.7868/S3034561825110072
- ID: 352050
Дәйексөз келтіру
Аннотация
Авторлар туралы
D. Karelin
Institute of Geography, Russian Academy of SciencesMoscow, 119017 Russia
O. Sukhoveeva
Institute of Geography, Russian Academy of Sciences
Email: olgasukhoveeva@gmail.com
Moscow, 119017 Russia
A. Zolotukhin
Federal Agricultural Kursk Research CenterKursk, 305021 Russia
D. Nikitin
Dokuchaev Soil Science InstituteMoscow, 119017 Russia
Әдебиет тізімі
- Карелин Д.В., Азовский А.И., Куманяев А.С., Замолодчиков Д.Г. Значение пространственного и временного масштаба при анализе факторов эмиссии СО2 из почвы в лесах Валдайской возвышенности // Лесоведение. 2019. № 1. C. 29–37. https://doi.org/10.1134/S0024114819010078
- Огуреева Г.Н., Леонова Н.Б., Микляева И.М., Бочарников М.В., Федосов В.Э., Мучник Е.Э, Урбанавичюс Г.П. и др. Биоразнообразие биомов России. Равнинные биомы. М.: ИГКЭ, 2020. 623 с.
- Anderson M.J., Gorley R.N., Clarke K.R., PERMANOVA+ for primer: Guide to software and statistical methods. Plymouth: PRIMER-e, 2008.
- Anderson M.J., Walsh D.C.I. PERMANOVA, ANOSIM, and the Mantel test in the face of heterogeneous dispersions: What null hypothesis are you testing? // Ecol. Monogr. 2013. V. 83. P. 557–574. https://doi.org/10.1890/12-2010.1
- Bond-Lamberty B., Ballantyne A., Berryman E., Fluet-Chouinard E., Jian J., Morris K.A., Rey A., Vargas R. Twenty years of progress, challenges, and opportunities in measuring and understanding soil respiration // J. Geophys. Res. G: Biogeosciences. 2024. V. 129. P. e2023JG007637. https://doi.org/10.1029/2023JG007637
- Bond–Lamberty B., Thomson A. Temperature associated increases in the global soil respiration record // Nature. 2010. V. 464. P. 579–582. https://doi.org/10.1038/nature08930
- Hashimoto S., Carvalhais N., Ito A., Migliavacca M., Nishina K., Reichstein M. Global spatiotemporal distribution of soil respiration modeled using a global database // Biogeosciences. 2015. V. 12. P. 4121–4132. https://doi.org/10.5194/bg-12-4121-2015
- Hashimoto S., Ito A., Nishina K. Divergent data-driven estimates of global soil respiration // Commun. Earth Environ. 2023. V. 4. P. 460. https://doi.org/10.1038/s43247-023-01136-2
- Huang N., Wang L., Song X.-P., Black T.A., Jassal R.S., Myneni R.B., Wu C., Wang L., Song W., Ji D., Yu S., Niu Z. Spatial and temporal variations in global soil respiration and their relationships with climate and land cover // Sci. Advanc. 2020. V. 6. P. eabb8508. https://doi.org/10.1126/sciadv.abb8508
- Jiang J., Feng L., Hu J., Liu H., Zhu C., Chen B., Chen T. Global soil respiration predictions with associated uncertainties from different spatio-temporal data subsets // Ecol. Inform. 2024. V. 82. P. 102777. https://doi.org/10.1016/j.ecoinf.2024.102777
- Karelin D.V., Zolotukhin A.N., Ryzhkov O.V., Lunin V.N., Zamolodchikov D.G., Sukhoveeva O.E. The use of long-term soil respiration measurements for calculating the net carbon balance in ecosystems of the central chernozemic region // Eurasian Soil Science. 2024. V. 57. P. 1638–1649. https://doi.org/10.1134/S1064229324601318
- Kuzyakov Y., Blagodatskaya E. Microbial hotspots and hot moments in soil: Concept & review // Soil Biol. Biochem. 2015. V. 83. P. 184–199. https://doi.org/10.1016/j.soilbio.2015.01.025.
- Lankreijer H., Janssens I., Buchmann N., Longdoz B., Epron D., Dore S. Measurement of soil respiration, in: Kröner, F., Valentini, R. (Eds.). Ecological Studies. 2003. 163 Fluxes in Carbon, Water and Energy of European Forests. Berlin: Springer-Verlag, P. 37–54. https://doi.org/10.1007/978-3-662-05171-9_3
- Lei J., Guo X., Zeng Y., Zhou J., Gao Q., Yang Y. Temporal changes in global soil respiration since 1987 // Nature Comm. 2021. V. 12. P. 403. https://doi.org/10.1038/s41467-020-20616-z
- Leon E., Vargas R., Bullock S., Lopez E., Panosso A.R., La Scala N. Hot spots, hot moments, and spatio-temporal controls on soil CO2 efflux in a water-limited ecosystem // Soil Biol. Biochem. 2014. V. 77. P. 12–21. https://doi.org/10.1016/j.soilbio.2014.05.029.
- Martin J.G., Bolstad P.V. Variation of soil respiration at three spatial scales: Components within measurements, intra-site variation and patterns on the landscape // Soil Biol. Biochem. 2009. V. 41. P. 530–543. https://doi.org/10.1016/j.soilbio.2008.12.012
- Niu S., Chen W., Liáng L.L., Sierra C.A., Xia J., Wang S., Heskel M. et al. Temperature responses of ecosystem respiration // Nat. Rev. Earth Environ. 2024. V. 5. P. 559–571. https://doi.org/10.1038/s43017-024-00569-3
- Sukhoveeva O., Karelin D., Lebedeva T., Pochikalov A., Ryzhkov O., Suvorov G., Zolotukhin A. Greenhouse gases fluxes and carbon cycle in agroecosystems under humid continental climate conditions // Agriculture, Ecosyst. Environ. 2023. V. 352. P. 108502. https://doi.org/10.1016/j.agee.2023.108502
- Wang X., Ren T. Spatial and temporal variability of soil respiration between soybean crop rows as measured continuously over a growing season // Sustainability. 2017. V. 9. P. 436. https://doi.org/10.3390/su9030436
- Yao Y., Ciais P., Viovy N., Li W., Cresto-Aleina F., Yang H., Joetzjer E., Bond-Lamberty B. A data-driven global soil heterotrophic respiration dataset and the drivers of its inter-annual variability // Glob. Biogeochem. Cycles. 2021. V. 35. P. e2020GB006918. https://doi.org/10.1029/2020GB006918
- Yu J.C., Chiang P.N., Lai Y.J. Seasonal and spatial variation in soil respiration in afforested sugarcane fields on Entisols, Taiwan // Geoderma Reg. 2021. V. 26. P. e00421. https://doi.org/10.1016/j.geodrs.2021.e00421
Қосымша файлдар


