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Статья

BrGDGT-based palaeothermometer in drylands: the necessity to constrain aridity and salinity as confounding factors to ensure the robustness of calibrations

Lucas DugerdilInstitut des Sciences de l'Evolution de MontpellierSébastien JoanninISEM, University of Montpellier, CNRS, IRD, Montpellier, FranceOdile PeyronISEM, University of Montpellier, CNRS, IRD, Montpellier, FranceShafag BayramovaInstitute of Geology and Geophysics, Department of modern geodynamics and space geodesy, Baku, AzerbaijanXiaozhong HuangKey Laboratory of Western China's Environmental Systems (Ministry of Education), College of Earth and Environmental Sciences, Lanzhou University, Lanzhou, ChinaFahu ChenCollege of Resources and Environment, University of Chinese Academy of Sciences, Beijing, ChinaDilfuza EgamberdievaFaculty of Biology and Ecology, National University of Uzbekistan, Tashkent 100174, UzbekistanJakhongir AlimovFaculty of Biology and Ecology, National University of Uzbekistan, Tashkent 100174, UzbekistanBazartseren BoldgivEcology Group, Department of Biology, School of Arts and Sciences, National University of Mongolia, Ulaanbaatar 14201, MongoliaAmy CromartieInstitut de Recherche pour le DéveloppementJuzhi HouUniversity of Chinese Academy of SciencesLilit SahakyanInstitute of Geological Sciences of Armenia, of the National Academy of Sciences of the Republic of Armenia, ave. M. Baghramyan 24a, Yerevan 0019, ArmeniaKhachatur MeliksetianInstitute of Geological Sciences of Armenia, of the National Academy of Sciences of the Republic of Armenia, ave. M. Baghramyan 24a, Yerevan 0019, ArmeniaSalomé Ansanay-AlexCentre National de la Recherche ScientifiqueRafig SafarovMinistry of Science and Education Republic of AzerbaijanImran MuradiInstitute of Geology and Geophysics, Science and Education Ministry of Azerbaijan Republic, AZ1073, Baku, AzerbaijanShabnam IsayevaInstitute of Botany, Azerbaijan National Academy of Sciences, Baku, AzerbaijanShehla MirzayevaInstitute of Botany, Azerbaijan National Academy of Sciences, Baku, AzerbaijanElshan AbdullayevDepartment of Life Sciences, Khazar University, 41 Mahsati Str., AZ1096 Baku, AzerbaijanSayyara IbadullayevaInstitute of Botany, Azerbaijan National Academy of Sciences, Baku, AzerbaijanParvana GarakhaniInstitute of Botany, Azerbaijan National Academy of Sciences, Baku, AzerbaijanGuillemette MénotÉcole Normale Supérieure de Lyon
2026en
ABI

Аннотация

Abstract. Past temperature reconstructions offer valuable insights into the impact of climate change on the global climate-human-vegetation system. Branched glycerol dialkyl glycerol tetraethers (brGDGTs) are recognized as effective temperature proxies, particularly in lakes and peatlands, where they are well preserved. However, their reliability as palaeothermometers can be compromised by factors beyond air temperature, especially in drylands. This study investigates the recently compiled Arid Central Asian (ACA) brGDGT surface Data Base, a regional dataset consisting of 753 surface samples from the drylands of ACA. The distribution of brGDGTs in relation to climate and environmental variables was analysed to explore their potential as reliable temperature proxies, mainly focusing on brGDGTs methylation (MBT), cyclisation (CBT), and isomer (IR) indices. The brGDGT-based palaeothermometer is a promising tool for understanding past climates, but our comparison between an ACA-centred database and a worldwide continental surface sample database reveals several challenges. Drylands exhibit extreme climate and soil/lacustrine properties, amplifying the impact of confounding factors on brGDGT-based relationships with mean annual air temperature. Salinity emerges as the dominant factor influencing brGDGT variance, followed by sample type, pH, and aridity, all of which contribute significantly. These factors interact in complex ways, with the salinity effect varying between soil and lacustrine deposits. For sample physicochemical conditions, the IR6+7Me′ index is best for salinity, and IR6Me is most suitable for pH reconstruction. Thus, the MBT5Me′-temperature relationship is limited in ACA, particularly for lacustrine samples, and MBT6Me′ does not offer a better solution under hyper- to semi-arid conditions. Sub-calibrating models for specific environmental conditions such as salinity and aridity improves the accuracy of temperature reconstructions. Furthermore, the difference between MBT5Me′ and MBT6Me′ provides a promising proxy to assess aridity. Although the brGDGT signal in drylands is influenced by multiple controlling factors, it remains a valuable tool for understanding past climate and environmental conditions, especially when accounting for the complex interactions between these factors based on each study's unique physicochemical and bioclimatic context. Further research, incorporating a broader range of surface samples alongside comprehensive soil and climate data, holds the potential to enhance the accuracy of brGDGT-based climate reconstructions.

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