Search results for "Holcus lanatus"

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Looking for Hidden Enemies of Metabarcoding: Species Composition, Habitat and Management Can Strongly Influence DNA Extraction while Examining Grassl…

2021

Despite the raising preoccupation, the critical question of how the plant community is composed belowground still remains unresolved, particularly for the conservation priority types of vegetation. The usefulness of metabarcoding analysis of the belowground parts of the plant community is subjected to a considerable bias, that often impedes detection of all species in a sample due to insufficient DNA quality or quantity. In the presented study we have attempted to find environmental factors that determine the amount and quality of DNA extracted from total plant tissue from above- and belowground samples (1,000 and 10,000 cm2). We analyzed the influence of land use intensity, soil properties…

0106 biological sciencesDNA qualitylcsh:QR1-502Plant Roots01 natural sciencesBiochemistrylcsh:MicrobiologyGrasslandgraminoid vegetationSoilCalamagrostis epigejosзлаковая растительностьSoil pHVegetation typeBiomassDNA extractionHolcus lanatusgeography.geographical_feature_categoryEcologybiologyвидовой составBiodiversityVegetationHydrogen-Ion ConcentrationPlantsGrasslandпастбищные сообществаЦентральная Европаbelowground diversityRegression AnalysisSeasonsДНКMagnesium OxideRiskrootsDNA PlantNitrogenPoaceae010603 evolutionary biologyкорнеплодыArticleCoronillaDNA Barcoding TaxonomicMolecular BiologyEcosystemgeographyсреда обитанияCentral EuropePlant communityDNAbiology.organism_classificationAgronomyметабаркодированиеPoland010606 plant biology & botanyBiomolecules
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Root-induced decomposer growth and plant N uptake are not positively associated among a set of grassland plants

2007

Abstract It is known that plant species can induce development of different soil decomposer communities and that they differ in their influence on organic matter decomposition and N mineralization in soil. However, no study has so far assessed whether these two observations are related to each other. Based on the hypothesis that root-induced growth of soil decomposers leads to accelerated decomposition of SOM and increased plant N availability in soil, we predicted that (1) among a set of grassland plants the abundance of soil decomposers in the plant rhizosphere is positively associated with plant N uptake from soil organic matter. To test this, we established grassland microcosms consisti…

RhizosphereEcologybiologySoil organic matterSoil biologyfungiSoil Sciencefood and beveragesP34 - Biologie du solF62 - Physiologie végétale - Croissance et développementMineralization (soil science)Plant litterbiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)complex mixturesDecomposerAgronomyBotanyLotus corniculatusHolcus lanatus
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