Search results for " lepidochronology"

showing 3 items of 3 documents

Effect of different substrata on rhizome growth, leaf biometry and shoot density of Posidonia oceanica

2013

The effects of different substratum typologies on Posidonia oceanica growth and morphology were estimated in four Sicilian meadows using Generalized and Linear Mixed Models combined with retrodating and biometric analyses. Substratum exerted a multiple effect, resulting in different biometric features for P. oceanica shoots settled on rock from those growing on sand and matte. On rock, values for growth rate, leaf length and shoot surface were lower than those on other substrata, with 42%, 23% and 32% the highest degree of difference respectively. The present study may have interesting methodological consequences for the comprehensive understanding of the causative variables potentially aff…

Settore BIO/07 - EcologiaGeologic SedimentsAlismatalesbiologyGeneral MedicineBiomonitoring benthic ecology seagrass Posidonia oceanica substratum lepidochronology leaf biometry shoot age GLMM LMMAquatic ScienceOceanographybiology.organism_classificationModels BiologicalPollutionRhizomePlant LeavesSeagrassBenthic zonePosidonia oceanicaShootBotanyLinear ModelsSicilyRhizomeEnvironmental MonitoringMarine Environmental Research
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Vulnerability of Posidonia oceanica meadow inside a coastal lagoon (Stagnone di Marsala – Western Sicily)

2010

Settore BIO/07 - EcologiaSettore BIO/18 - GeneticaCoastal lagoon Posidonia oceanica atolls genotipic diversity lepidochronology
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Effect of explosive shallow hydrothermal vents on δ13C and growth performance in the seagrass Posidonia oceanica

2010

1. Explosive volcanic submarine activity is expected to affect seagrass communities due to sudden and dramatic changes in the physical and chemical features of sea water and sediments, with possibly large ecosystem effects. However, seagrass response to the harsh environmental conditions that arise due to explosive volcanism is as yet unexplored as it is not easy to predict when and where an eruption will occur. Here, we investigate the uptake of hydrothermal carbon within the seagrass Posidonia oceanica by the analysis of d13C and growth rates in tissue laid down before and after an exceptional and massive hydrothermal gas release in the Aeolian Islands (Italy, Mediterranean Sea). 2. Hydro…

Settore BIO/07 - Ecologiaaquatic plant ecology carbon stable isotopes CO2 emissions hydrothermal fluids lepidochronology Mediterranean Sea ocean acidification seagrasses temperature
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