H2020Индивидуална стипендия2017–2019

POSEIDoN · Atlantidae: Predators at the Ocean SurfacE as InDicators of chaNge.

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

Период
2017-07-03 → 2019-12-03
Финансиране от ЕС
177 599 €
Участници
1
Схема
MSCA-IF-EF-ST

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Накратко на български

Планктонните охлюви от семейство Atlantidae се изследват като индикатори за промените в океана, тъй като техните арагонитни черупки са силно чувствителни към киселинността на водата. Разбирането на тези процеси помага за планирането на бъдещето на хранителните вериги в открития океан.

Този кратък обзор е генериран от изкуствен интелект

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

Резултати накратко

Atlantidae: Predators at the Ocean SurfacE as InDicators of chaNge.

Anthropogenic release of CO2 into the atmosphere is causing ocean acidification (OA) and ocean warming (OW) at a rate unprecedented during the last 66 million years. Planktonic organisms are amongst the most vulnerable to these changes, living close to the atmosphere/ocean boundary where CO2 dissolves into the ocean and direct warming occurs. As a vital component of all open ocean food chains and an essential food source for commercially fished species, understanding the effects of ocean changes upon plankton is crucial if we are to plan for the future. The central aim of this study was to assess the atlantid heteropods, a group of planktonic snails, for their use as bio-indicators of ocean changes in a past, present and future framework. These snails build a shell of aragonite, a form of calcium carbonate that is extremely sensitive to OA, being more difficult to grow and maintain as pH decreases. To meet this aim, the project had three main objectives. 1) Assess species boundaries. Responses to ocean changes are likely to be species-specific, so we need to understand diversity within the atlantids. 2) Determine environmental tolerances in the present by modeling geographical distributions (e.g. temperature tolerance) and carrying out experiments (e.g. responses to changing pH). 3) Evaluate the effects of ocean changes in the past and the future. Using the fossil record we can assess how past ocean changes affected the diversity and distribution of atlantid species. Using Species Distribution Models (SDMs) we can also forecast changes in distribution for predicted future environmental scenarios. Through integrated analysis of shell morphology, molecular phylogeny and geographic distribution patterns of atlantids, we found >35% more diversity than previously thought. Our results identified 37 hypothetical species (clades), while there are only 24 atlantid species currently described. One of these species, Atlanta vanderspoeli, was described as part of this project. Geographical distributions were updated, and used to determine species-specific environmental tolerances to physical ocean parameters. For example, distributions of Atlanta ariejansseni indicate a temperature tolerance of 7.9–20.1°C, whereas the closely related Atlanta inflata has a broader temperature tolerance of 7.1–31.1°C. A fossil calibration of our atlantid phylogeny suggests that great diversification has occurred over the last ~25 Ma, potentially in response to environmental changes. These results demonstrate that confident species identification is crucial for OA experiments. If species containing multiple cryptic clades (where they cannot be identified from each other) are used, species/clade specific responses to experimental conditions could produce misleading experimental results. During the Atlantic Meridional Transect 2017 (AMT27) expedition, eight atlantid species were kept under laboratory conditions. Analysis of one growth rate experiment and one OA experiment, both on the most southerly distributed atlantid species, A. ariejansseni indicate a negative response to decreasing ocean pH, but a positive response to increased food availability. Together, our results show that atlantids would be excellent indicators of many different ocean parameters. Fossil analysis of two sediment cores collected offshore of the Balearic Islands (Mediterranean Sea) demonstrates that variation in abundance and diversity of atlantids over the last 15-20 ka (since the LGM) reflects known changes in ocean temperature as indicated by commonly used proxies (planktonic foraminifera abundance, diversity and oxygen isotope ratios). This suggests that atlantids could be used as palaeo-temperature indicators. Initial modelling of future atlantid biogeography shows that distributions change considerably with predicted future conditions, often showing a reduction in potential habitat. The results of this study demonstrate that the atlantid heteropods would be excellent bio-indicators of past and future ocean changes. The study also highlights that juvenile atlantids are good experimental organisms, being easily maintained under laboratory conditions and having a growth rate that is measurable on a scale of days.

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

Цел на проекта

Large-scale ocean changes, including ocean acidification (OA) and ocean warming (OW), are projected to occur over the next 50-100 years as a result of elevated atmospheric CO2. Living close to the atmosphere/ocean boundary, plankton are particularly vulnerable to, but also excellent indicators of these changes. Euthecosome pteropods (small swimming gastropods) have been highlighted as bio-indicators because their delicate aragonite shells are susceptible to OA. However complex feeding behaviours have impeded laboratory experiments on pteropods, limiting research to short term studies.The proposed action will apply an interdisciplinary approach to investigate the past, present and future effects of OA and OW upon the planktonic family Atlantidae, and to evaluate their use as bio-indicators. Atlantid heteropods are also small (max. 14 mm), aragonite shelled, planktonic gastropods that are sensitive to OA and OW. Unlike pteropods, atlantids are predatory and have the potential to be excellent experimental organisms with which to investigate the effects of these surface ocean changes. Atlantids also provide a unique opportunity to investigate the effect of OA and OW at an as-yet unstudied and potentially more sensitive trophic level.The Experienced Researcher has worked with atlantids for >8 years and is one of very few researchers able to identify atlantid species. As such, she is uniquely positioned to deliver the objectives of this interdisciplinary project. The proposed research will provide opportunities for the Researcher to advance her career and skill-set through specialist training and teaching opportunities. The proposed action will improve our appreciation of how surface ocean changes will affect zooplankton and produce high impact data that are relevant to a wide body of marine scientists. The atlantids are also beautiful, charismatic gastropods, and excellent ambassadors for engaging the public and policy makers with current ocean changes.

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз