H2020Индивидуална стипендия2018–2022

E FUNDIA · Ecosystem function and Diversity in Amazonia

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

Период
2018-08-01 → 2022-01-22
Финансиране от ЕС
251 858 €
Участници
3
Схема
MSCA-IF-GF

Линиите свързват координатора с партньорите.

Накратко на български

Разпределението на над 50 вида дървета в Амазония се проучва чрез анализ на химичния състав на листата от самолет. Това помага да се разбере как биоразнообразието влияе върху въглеродния и водния цикъл, които смекчават климатичните промени.

Този кратък обзор е генериран от изкуствен интелект

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

Резултати накратко

Ecosystem function and Diversity in Amazonia

The forests of Amazonia are celebrated for both their exceptional biodiversity and their vital role in the global carbon and water cycles, which contribute towards climate change mitigation. However, our understanding of the spatial organisation of biodiversity and its interaction with ecosystem function at large scales is limited, due primarily to the laborious nature of collecting biodiversity data in Earth’s largest tropical forest. The Carnegie Airborne Observatory (CAO) is a unique research platform, consisting of a custom-built aircraft providing airborne laser-guided spectral profiles of forest canopies at an unprecedented level of spatial and spectral resolution at large spatial scales (e.g. >100 km2). This ‘spectranomic’ approach presents a new paradigm in tropical forest ecology, as spectra reflect the chemical composition of leaves. When combined with careful field calibration, spectranomic techniques can be used to measure specific leaf traits (e.g. leaf N concentration), and potentially map the distribution of individual species at large spatial scales. The goal of E FUNDIA is to integrate state of the art, high fidelity imaging spectroscopy and extensive field plot networks in order to quantify the relationship between biodiversity and ecosystem function in lowland Amazonian tree communities at large spatial scales The specific objectives of the project are: 1: Map the spatial distribution of >50 common tree species at landscape and regional scales in lowland Amazonia. 2: Determine the extent to which taxonomic diversity drives functional diversity across environmental gradients in lowland Amazonia. 3: Quantify the role of hyperdominant taxa in driving patterns of functional diversity across environmental gradients in lowland Amazonia. Following the completion of the project the following conclusions have been made: 1. Most hyperdominant tree species in West Amazonian forests cannot be identified from airborne remotely sensed data with a 2m pixel size, this is because their crowns either cannot be seen at all from above, or cannot be isolated from the surrounding forest canopy. 2. Those tree species that dominate the uppermost canopy and emergent strata (i.e., those that are potentially visible in remotely sensed data) are different from those species that dominate lower strata. Moreover these canopy and emergent hyperdominant species are phylogenetically clustered in just a few key plant families. 3. While airborne spectranomic approaches have been used to successfully map variation in community level functional traits, using this data to observe trait data associated with specific tree species presents a major challenge and 2m ground resolution is likely insufficient in most instances. 4. The higher spatial resolution (<10 cm) of UAV data offers greatly enhanced potential for mapping hyperdominant tree species (particularly those with distinctive crown shapes) and potentially for measuring functional trait profiles if UAV-based hyperspectral sensors become more available. 5. More species rich forests do not appear to be necessarily more functionally diverse than more species poor, due to high functional redundancy in diverse Amazonian forests. Functional diversity is increased by including a range of different forest types, regardless of their species richness.

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

Цел на проекта

A key remaining challenge in ecology is understanding the relationship between biodiversity and ecosystem function at large spatial scales. Nowhere is this challenge more pressing than in the forests of western Amazonia, which not only harbour some of the most diverse forests on earth, but also hold a key role in global biogeochemical cycles. In E FUNDIA we seek to address this challenge with a unique and innovative approach, combining state-of-the-art airborne spectranomics with an exceptional floristic dataset across the most variable landscape in lowland Amazonia.E FUNDIA will bring together two of the most productive research groups in this field globally: the Asner lab at the Carnegie institution for Science and the Ecology and Global Change cluster at the University of Leeds. Working with these two groups Dr Draper (the fellow) will have the opportunity to be trained at the highest possible level, extending his knowledge and technical skills in hyperspectral remote sensing and macroecology. Whilst receiving this training Dr Draper will produce world-class science and greatly enhance his career development potential. The output of E FUNDIA will be of broad interest to the scientific community, policy makers and the general public. We are committed to disseminating the findings of the project though high impact publications, accessible policy summaries, and presenting the work at international conferences and directly to policy makers. Furthermore, we will engage with high profile media outlets to make sure as many people as possible outside the academic sphere are able to access the research. This communication will be supported by a range of outreach activities that will encourage non-specialists (both adults and children) to actively engage with the research.

Оригинален текст от CORDIS (на английски).

Участници

Връзки

Данни: CORDIS, © Европейски съюз