H2020Индивидуална стипендия2021–2022

MetaDryNet · Drying river networks – Understanding and mitigating drought impacts on river ecosystem functioning and biodiversity (MetaDryNet)

„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“

Период
2021-01-01 → 2022-12-31
Финансиране от ЕС
184 708 €
Участници
1
Схема
MSCA-IF

Линиите свързват координатора с партньорите.

Накратко на български

Реч е за влиянието на изсъхването на речните мрежи върху биоразнообразието и процеси като разлагането на органичен въглерод. Това помага да се предвидят ефектите от климатичните промени върху екосистемите, питейната вода и емисиите на въглероден диоксид.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Drying river networks – Understanding and mitigating drought impacts on river ecosystem functioning and biodiversity (MetaDryNet)

Rivers are among the world’s most biodiverse ecosystems but also the most threatened by human activities. River networks and their constituent biological communities perform numerous ecosystem functions (e.g. decomposition) that contribute to the recycling of carbon and nutrients. Rivers also provide essential ecosystem services – such as drinking water and climate regulation – that enhance society’s well-being. However, climate change and humans’ increasing water demands are causing river networks to dry, altering river biodiversity, ecosystem functioning (EF) and the provision of key ecosystem services. Although ecological responses to drying have been intensively studied at the local river reach scale, little is known about its impacts at the river network scale, limiting our capacity to predict the far-reaching effects of drying on river biodiversity and EF. To fill this gap, we used the meta-system approach, which considers rivers as an ensemble of interacting terrestrial-aquatic sub-ecosystems among which organisms (e.g. microorganisms and invertebrates) disperse and resources (e.g. carbon and nutrients) are exchanged and transformed through EF (Fig. 1). In river networks, these fluxes of organisms and resources link small streams to the mainstem (longitudinal dimension) and terrestrial riparian habitats to instream aquatic habitats (horizontal dimension), ultimately linking terrestrial ecosystems to flood plains and oceans. As such, the meta-system approach integrates the multiple-facets of rivers, linking resources, biodiversity and EF across terrestrial-aquatic boundaries. In this project, we aimed to examine the effects of drying on river-network scale biodiversity and EF and their implication to carbon processing (decomposition) and emissions (CO2). More than 50% of the world’s rivers naturally dry for at least one day per year but climate and anthropogenic changes are exacerbating drying events worldwide. A better understanding of the contribution of drying rivers to carbon cycles will thus inform CO2 emission scenarios and the design of management strategies that best preserve the ecosystem services that rivers provide to our societies. The overall objectives of this project were to: (O1) Determine the mechanisms driving the structuring of resource (organic matter), community (invertebrates, bacteria and fungi) and EF (decomposition and CO2 emissions) across aquatic-terrestrial boundaries in river networks fragmented by drying. (O2) Identify where, when and under which conditions drying leads to mismatches between resource availability and organism activity, affecting carbon processing and meta-ecosystem dynamics.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

One of the greatest challenges of the 21st century is to understand and mitigate the effects of climate change on earth ecosystems. Climate change increases the frequency and intensity of hydrological droughts worldwide. In rivers, drying (i.e. the loss of surface water) is a severe disturbance that alters biodiversity and ecosystem functions such as organic matter (OM) decomposition with often negative consequences for ecosystem services (e.g. water purification) and human activities (e.g. water consumption). River networks are an aquatic continuum in a terrestrial matrix in which OM is transported, and organisms disperse laterally: from terrestrial to aquatic environment, vertically: from the riverbed surface to the subsurface and longitudinally: along the network. Drying, modifies OM transport and dispersal by cutting the water continuum, potentially altering an entire river network´s OM decomposition dynamics, and hence carbon cycling and CO2 emissions. Although, much is known about the effect of drying at local scales, very little is known about its effects at the entire river network scale. Only studies done at an appropriate large scale can adequately inform and help to develop an adaptive management that minimizes drying impacts on river ecosystems and human activities. By combining meta-analysis, network-scale field experiments and modelling, MetaDryNet will explore the effects of drying on OM transport and decomposer organism dispersal to determine how drying affects OM decomposition and CO2 emissions in river networks. Using new technologies, novel ecological theories and complex modelling approaches this research is highly innovative and will allow to improve our understanding of how resources and biodiversity are linked in space and time in drying river networks. This project will contribute to advance ecological theories but also offer guidance for river management and conservation under global changes.

Оригинален текст от CORDIS (на английски).

Участници

  • INSTITUT NATIONAL DE RECHERCHE POUR L'AGRICULTURE, L'ALIMENTATION ET L'ENVIRONNEMENT · ParisКоординаторФранция

Връзки

Данни: CORDIS, © Европейски съюз