H2020Обмен на изследователи2015–2018

FlyHigh · Insect-plant relationships: insights into biodiversity and new applications

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

Период
2015-07-01 → 2018-06-30
Финансиране от ЕС
450 000 €
Участници
5
Схема
MSCA-RISE

Линиите свързват координатора с партньорите.

Накратко на български

Връзката между определени видове мухи и техните растения-гостоприемници в Южна Африка, като лилиите и алоето, е в центъра на анализа. Данните помагат за подобряване на условията за отглеждане на насекоми, които да разграждат органични отпадъци или да опрашват растения.

Този кратък обзор е генериран от изкуствен интелект

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

Резултати накратко

Insect-plant relationships: insights into biodiversity and new applications

Phytophagous and saprophagous hoverflies, blowflies and soldier flies occur worldwide and are diverse and important ecological groups in both natural ecosystems and agricultural environments, as pollinators of plants and as decomposers of organic waste. The phytophagous fly maggots (larvae) develop in living plants while saprophagous maggots utilize a wide range of decaying organic materials (like animal manure or vegetal wastes). Ecological data is available for some European groups of flies due to existing longer research history, while the characteristics of the South African fly fauna remain less explored. The issues addressed in the FlyHigh project are concerned with filling the gap in ecological and evolutionary knowledge on focal phytophagous and saprophagous South African flies and their host plants (specific bulbous plants such as lilies or aloe succulent plants), and to test if this data could be utilized in artificial rearing protocols of the new industrial-productive sector of flies and other insects. The FlyHigh project also explores ways to improve controlled rearing protocols for fly mass rearing. The potential benefits being beneficial endproducts for agriculture or ecological farming, including flies being used as bio-agents, providing effective pollination services in natural of greenhouse environments and larvae as effective biodecomposers or organic waste. The FlyHigh project explored ways to improve controlled rearing protocols for fly mass rearing including optimal ranges for different rearing parameters of e.g. temperature, humidity, diet and density for the Black Soldier Fly and other species also used in artificial rearing like the House Fly (Musca domestica) and the Green Bottle Fly (Lucilia sericata). New larval feeding media were developed and the performance of different strains of flies on these substrates was evaluated. The gained societal importance stems from the enhanced artificial rearing protocols increased maggot activity and produced flies more effectively and sustainably. Despite sharing some COI haplotypes, two industrial level domesticated strains of the BSF showed a significant phenotypic plasticity according to the biological parameters analysed. The overall objectives of the FlyHigh project is to obtain useful ecological and evolutionary data to be used for research for understanding interrelationships of phytophagous flies and geophyte plants, and, to obtain ecological data to be used for applied research for the increased knowledge on features of ecological processes and also for improving mass rearing protocols. The obtained taxonomic and ecological data was collected for phytophagous hoverfly species distributed in Mediterranean ecosystems of South Africa and Europe, and for some hoverfly species new host plants such as specific bulb plants (e.g. lilies) or aloe succulent plants were recorded. FlyHigh researchers systematically screened selected molecular markers and evaluated the genetic diversity and evolutionary patterns of the flies and their host plants, and these results were published in several scientific publications.

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

Цел на проекта

FlyHigh studies underexplored phytophagous and saprophagous flies and geophyte plants aiming to obtaining ecological and evolutionary data that will be used to elucidate ecological features of fly species that could be exploited for artificial mass production of flies. Artificial mass rearing of flies produces beneficial end products, the flies themselves or their larval stages, that could be applied for different services in agriculture, ecological farming or as bio-agents for e.g. complementary pollination services in natural or greenhouse environments. The main aim is to facilitate cross-sectorial transfer of knowledge and training of researchers as well as technical staff in bridging the gap between scientific results and their application into novel business ideas.The excellence of the project lies in the synergy of basic and applied ecology for exploring and developing new protocols and end products. FlyHigh brings together experts with well documented scientific achievements of the focal organismal groups and on evolutionary analyses with early stage researchers with the same research focus, with experts on insect mass rearing techniques. The relevance of FlyHigh results from integration of project aims that may result in innovative results of broader impact that will benefit the ERA institutions as well as the TC partner. The results could be advantageous in developing new ideas for future use e.g. flies could complement or even replace the presently used managed pollinators in greenhouse productions of many greenhouse products. The obtained data will also allow us to estimate the possible biogeographic events that can help explain the evolutionary history, current distributions and future biogeographic patterns of some bulb plant and fly groups in South Africa and in Euro-Mediterranean region. The outlined training course, workshops and secondments ensure transfer of knowledge between participant academic and non-academic partners, in both directions.

Оригинален текст от CORDIS (на английски).

Участници

Връзки

Данни: CORDIS, © Европейски съюз