0000000000041469

AUTHOR

Anu Kisand

0000-0001-5175-9031

showing 5 related works from this author

Contributions of autochthonous and allochthonous sources to dissolved organic matter in a large, shallow, eutrophic lake with a highly calcareous cat…

2013

We traced the origin of dissolved organic matter (DOM) in the large, shallow, eutrophic Lake Vortsjarv in Estonia. Allochthonous DOM (Al-DOM) had higher δ13C values than autochthonous DOM (Au-DOM). The δ13C of inflow DOM varied from −28.2‰ to −25.4‰ (mean −26.7‰) and in-lake DOM varied from −28.4‰ to −26.1‰ (mean −27.2‰). Low stable isotope (SI) signatures of Au-DOM were caused by relatively 13C-depleted values of its precursors (mainly phytoplankton) with mean δ13C of −28.9‰. SI signatures of dissolved inorganic carbon (DIC) in the inflows and in the lake were also relatively low (from −15.1‰ to −3.28‰). SI values of DOM were lower during the active growing season from May to September and…

HydrologyChlorophyll aδ13CStable isotope ratiota1172Aquatic SciencePlanktonOceanographyWater levelchemistry.chemical_compoundchemistryEnvironmental chemistryDissolved organic carbonPhytoplanktonta1181Environmental scienceEutrophicationLimnology and Oceanography
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Chironomid incorporation of methane-derived carbon in plankton- and macrophyte-dominated habitats in a large shallow lake

2018

1. While 13 C-depleted carbon derived from biogenic methane can substantially contribute to the benthic secondary production in deep stratified lakes, its role in shallow lakes is less clear. We investigated the dynamics of δ13 C and δ15 N in the larvae of Chironomus plumosus throughout an annual cycle in two ecologically distinct basins (open-water plankton-dominated and sheltered macrophyte- covered) of a large (270 km2 ), shallow, polymictic and eutrophic lake (Võrtsjärv, Estonia, North Europe). The larval stable isotopic compositions were linked to the presence of methane-oxidising bacteria (MOB) in larval guts and sediments. 2. Molecular detection of MOB revealed their presence in vari…

0106 biological sciencesta1172stable isotopeschemistry.chemical_elementAquatic Sciencejärvetmetaani010603 evolutionary biology01 natural sciencesMethanebakteeritchemistry.chemical_compoundsurviaissääsketShallow lakebenthic food webisotoopitStable isotope ratiohiilen kierto010604 marine biology & hydrobiologypohjaeliöstöPlanktonMacrophytechironomid larvaeOceanographychemistryHabitatshallow lakearticlesEnvironmental sciencemethanotrophic bacteriaCarbonChironomid larvaeravintoverkotFreshwater Biology
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From microbial eukaryotes to metazoan vertebrates: Wide spectrum paleo-diversity in sedimentary ancient DNA over the last ~14,500 years

2018

Most studies that utilize ancient DNA have focused on specific groups of organisms or even single species. Instead, the whole biodiversity of eukaryotes can be described using universal phylogenetic marker genes found within well-preserved sediment cores that cover the post-glacial period. Sedimentary ancient DNA samples from Lake Lielais Svētiņu, eastern Latvia, at a core depth of 1,050 cm in ~150 year intervals were used to determine phylotaxonomy in domain Eukaryota. Phylotaxonomic affiliation of >1,200 eukaryotic phylotypes revealed high richness in all major eukaryotic groups-Alveolata, Stramenopiles, Cercozoa, Chlorophyta, Charophyta, Nucletmycea, and Holozoa. The share of organisms t…

0106 biological sciences0301 basic medicineGeologic SedimentsBiodiversityChlorophyta010603 evolutionary biology01 natural sciences03 medical and health sciencesRNA Ribosomal 18SAnimals14. Life underwaterDNA AncientEcology Evolution Behavior and SystematicsGeneral Environmental ScienceTrophic levelbiologyEcologyLake ecosystemSequence Analysis DNA15. Life on landbiology.organism_classification030104 developmental biologyAncient DNAVertebratesPaleoecologyGeneral Earth and Planetary SciencesSpecies richnessCercozoaGeobiology
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Environmental drivers and abrupt changes of phytoplankton community in temperate lake Lielais Svētiņu, Eastern Latvia, over the last Post-Glacial per…

2021

Understanding the long-term dynamics of ecological communities on the centuries-to-millennia scale is important for explaining the emergence of present-day biodiversity patterns and for predicting possible future scenarios. Fossil pigments and ancient DNA present in various sedimentary deposits can be analysed to study long-term changes in ecological communities. We analysed recent compilations of data, including fossil pigments, microfossils, and molecular inventories from the sedimentary archives, to understand the impact of gradual versus abrupt climate changes on the ecosystem status of a regional model lake over the last ~14.5 kyr. Such long and complete paleo-archives are scarce in No…

ArcheologyClimate Researchregime shiftClimate changeEastern Europeland-use changeTemperate climatestatistical modellingfossil pigmentsRegime shiftEcosystemGlacial periodEcology Evolution Behavior and SystematicsHoloceneGlobal and Planetary ChangeHolocenepaleolimnologyGlobal warmingecological disturbanceGeologyancient sedimentary DNAarticlesAbrupt climate changeEnvironmental sciencePhysical geographyphototrophsgeneric anthropogenic influenceQuaternary Science Reviews
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Drivers of change and ecosystem status in a temperate lake over the last Post-Glacial period from 14.5 kyr

2020

AbstractUnderstanding the long-term dynamics of ecological communities on the centuries-to-millennia scale is important for explaining present-day biodiversity patterns. Placing these patterns in a historical context could yield reliable tools for predicting possible future scenarios. Paleoarchives of macro+ and micro-fossil remains, and most importantly biomarkers such as fossil pigments and ancient DNA present in various sedimentary deposits, allow long term changes in ecological communities to be analysed. We use recent compilations of data including fossil pigments, metabarcoding of sedimentary ancient DNA and microfossils together with data analysis to understand the impact of gradual …

Global warmingBiodiversityLake ecosystemClimate changeEnvironmental scienceContext (language use)EcosystemPhysical geographyGlacial periodHolocene
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