HappyFish · Understanding the role of the rainbow trout metagenome on growth and health in aquaculturally farmed fish
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2018-08-01 → 2020-07-31
- Финансиране от ЕС
- 212 195 €
- Участници
- 1
- Схема
- MSCA-IF-EF-RI
Линиите свързват координатора с партньорите.
Накратко на български
Микроорганизмите в червата на пъстървата се анализират, за да се разбере как смяната на месото с растителни храни влияе върху здравето ѝ. Това помага за създаването на по-ефективни режими на хранене, които намаляват разходите и вредата за околната среда.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Understanding the role of the rainbow trout metagenome on growth and health in aquaculturally farmed fish
Aquaculture is the fastest growing food-producing sector world-wide, but is simultaneously challenged by suboptimal conversion of fish feed limiting revenue and burdening the environment. This project used state-of-the-art metagenome sequencing to obtain new functional insights about the health effects of the microorganisms inhabiting the rainbow trout (Oncorhynchus mykiss) gut. The results will facilitate development of more effective feed protocols in fish farming. The ability to reduce the use of expensive fish feed, antibiotics and vaccines in aquaculture, offers a huge potential to boost economic gains and reduce environmental impacts. Currently, more than 50% of consumed fish are farmed and the increasing human demand for high quality protein indicates that this global trend will continue. A key challenge for securing the continued growth and development of the aquaculture industry is to develop sustainable solutions to improve feed efficiency as feed accounts for >50% of the total cost of producing a fish. Animal protein is often used in fish feed, but it is increasingly being substituted by plant based ingredients, such as rapeseed and sunflower, due to the increasing prices and the insufficient availability of animal derived ingredients. Hence, originally piscivorous (meat eating) fish are being turned into vegetarians, but the effects of such a radical diet change on the composition of gut-microorganisms, gut health and ultimately on the growth of farmed fish remains poorly understood. It is well established that microorganisms in the gut play a crucial role in the overall health of the host organism, including us humans, by conveying nutritional advantages and increased immunity against pathogens. Research detailing the complete assembly of all enteric microorganisms (gut-microbiota), and their combined genome (i.e. metagenome), is currently revolutionizing the way that we understand how microbes shape human and animal health by interacting with metabolic and immunological pathways of the host. While these methods are quickly advancing into livestock production, their use in fish farming lacks behind even though the FAO prioritizes the increased integration of genomic tools into aquaculture research. So, if we are to gain a more complete understanding of the overall health and growth in farmed fish, we have to use of a hologenomic ‘metaorganism’ perspective including knowledge about host-microbe interactions. In this project I have taken advantage of a new potential offered by metagenome sequencing to characterize hitherto unknown functions of individual genes in the metagenome for the aquaculturally important rainbow trout. This is in contrast to any previous study in fish that have all relied on a single gene marker for characterising broad changes in species composition, but have not been able to directly study the functions provided by the gut microbiota. The overall objectives have been to introduce metagenomic techniques into the aquaculture research field by using an interdisciplinary approach to current challenges by investigating the effects on the rainbow trout microbiota when reared on different types of feed with and without addition of supposedly beneficial bacteria as we already know from our everyday dairy products.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Aquaculture is the fastest growing food-producing sector world-wide: >50% of consumed fish are farmed and the increasing human demand for high quality protein will continue. The most important challenge for securing continued development of green aquaculture is sustainable solutions to improve feed efficiency as feed makes up >50% of the total cost for producing a fish. Further, animal protein is increasingly substituting plant based ingredients for fish feed; this has yet unknown effects on related metabolic processes affecting growth and health. Promising solutions for optimizing feed efficiency and fish health stem from recent studies that sequence metagenomes (combined microbial DNA in the host gut) to detail out how the complete gut microbiome (the microbial community in the gut) interacts with metabolic and immunological pathways in human and mice; results that have revolutionized the way we understand how microbes affects human health. Identification of beneficial bacteria holds a huge potential for optimizing feed efficiency and boost immunity in farmed fishes. The aim of this project is to pursue this potential. I will apply a multidisciplinary approach using metagenomics to describe, for the first time, the complete metagenome of the rainbow trout gut. This combined genomic resource will be coupled with carefully planned feeding experiments to identify associations with the host trout gut-microbiota and i) animal vs. plant based diets, ii) genes of the host fish, and iii) individual growth and metabolic traits such as growth rate and fat content of the host trout. Results will yield new knowledge on microbe-host interactions in rainbow trout and may lead to new products (e.g. probiotics and fish feed) enhancing fish health by actively modulating the microbiota. The project will additionally establish trout as a general model for the study of how modulation of the microbiota can give rise to increased health and meat quality in any farmed animal.
Оригинален текст от CORDIS (на английски).
Участници
- KOBENHAVNS UNIVERSITET · KOBENHAVNКоординаторДания
Връзки
Данни: CORDIS, © Европейски съюз
