MARBLED GENE · Identification of genes involved in colour pattern formation and growth regulation in brown and marble trout
6РП — Действия „Мария Кюри“
- Период
- 2006-03-01 → 2007-02-28
- Финансиране от ЕС
- 40 000 €
- Участници
- 1
- Схема
- ERG
Линиите свързват координатора с партньорите. За проекти отпреди 2014 г. CORDIS не винаги дава точни координати. Тези точки са на ниво град или държава.
Накратко на български
Гените, които определят мраморния модел на оцветяване и растежа при мраморната пъстърва, се анализират чрез сравнение с кафявата пъстърва. Това помага да се разбере как мутациите в определени гени променят външния вид на различните видове животни.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - MARBLED GENE (Identification of genes involved in colour pattern formation and growth regulation in brown and marble trout)
The proposed project represents the initial phase of a research work that aims to identify candidate genes involved in marble colour pattern formation in marble trout (Soca river, Slovenia). Marble trout (S. trutta marmoratus), one of the most phenotypically distinct evolutionary lineages of S. trutta, sometimes referred as a separate species (S. marmoratus), was chosen as a model due to: (i) it's highly distinct morphological characters (marbled colour pattern, growth), and (ii) due to the availability of the material from F1 and F2 generations of the cross between the marble and the brown trout. Species-specific colours and patterns on animal body are determined primarily by neural-crest-derived pigment cells in the skin. However, even closely related species display widely differing patterns. Mutations of orthologous genes were often found to produce a similar pigmentation phenotype in many animal species. Furthermore, using comparative approach, important genes implicated in other species skin colour determination were found through characterization of the model species mutant allele. Within the first year of a project, different approaches were undertaken to achieve the main goal of the project and can be divided in three sections: I. Publicly available databases with determined genomic / cDNA sequences, together with the relatively high DNA sequence identity observed even among distantly related taxa, enable an alternative approach for characterising genes in non-model species, i.e. comparative genomics approach in combination with candidate gene approach. The first part of this project made use of this approach, and can be divided in two parts: 1.) Sequence characterisation of Salmo salar skin cDNA library and determination of transcript specifically expressed in skin Transcripts expressed specifically in skin tissue of S. salar were identified based on differential screening of available skin cDNA library against cDNA library of other 15 S. salar tissues, cDNA libraries available at http://www.salmongenome.no/cgi-bin/sgp.cgi. Among 200 blasted sequences, 45 have shown high similarities with genes, characterised particularly in zebrafish (Danio rerio) and were according to predicted protein function (cell-cell, protein-protein interactions, filament proteins, etc.) chosen for further analyses. We predicted exon-intron boundaries and designed primers to amplify genomic DNA and cDNA isolated from skin. Screening included samples from different phylogenetic lineages of Salmo trutta and from 4-8 populations of pure Salmo marmoratus from river Soca. We optimized PCR protocol for 10 different fragments and with sequence analyses we located SNPs differentiating S. marmoratus from S. trutta in eight of the fragments. These regions will be included in SNP genotyping of F2 and F3 generation of hybrids between S. marmoratus x S. trutta. 2.) Identification of genes known to be involved in skin pattern formation in zebrafish Genes known to be involved in skin pigmentation in zebrafish were selected from Zebrafish database http://zfin.org/cgi-bin/webdriver?MIval=aa-ZDB_home.apg. Primers were designed for 21 genomic regions of Salmo and till now PCR was optimized for 10 of them. Based on sequence alignment, we located SNPs differentiating S. marmoratus from S. trutta in seven of the fragments. These regions will be included in SNP genotyping of F2 and F3 generation of hybrids between S. marmoratus x S. trutta. II. Construction of suppression subtractive hybridisation (SSH) library from skin tissue Subtractive cDNA library was produced from mRNA isolated from skin. Cloning the enriched subtracted cDNA produced over 300 clones. In order to confirm positive clones and to eliminate false positives, differential screening will be performed.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Brown trout (Salmo trutta L.), is a freshwater species, native to Europe, south-west Asia and northern Africa. It is one of the most polymorphic vertebrates, showing extensive variation and plasticity in morphology, ecology and behaviour. Several studies have shown that this pronounced phenotypic diversity reflects a corresponding geographical distribution of genetic diversity. So far, most of the studies attempted to genetically characterise local brown trout populations by applying neutral molecular markers.However, local populations may differ from each other in several traits that have evolved due to specific environment and different selection pressure, and therefore cannot be followed by neutral markers. In order to follow and characterize the differences at this stage, coding regions within nuclear DNA genes should be considered. The most phenotypically distinct evolutionary lineage of S. trutta, diagnosed by its characteristic marbled colour pattern and great growth capacity, represents marble trout, S. (trutta) marmoratus, which was chosen as a model species in this project. Marble trout mRNA isolated from tissues expressing genes evolved in pigmentation and growth will be subjected to subtractive hybridisation with brown trout mRNA in order to find genomic regions connected to the diagnostic features of marble trout.These genomic regions will represent a new marker set that we will be tested also in different S. trutta populations throughout its geographical range in order to infer new insights into phylogeography of S. trutta complex. We believe that knowledge about complex gene evolution will give new dimensions not only to understand evolutionary pathways of the species and its adaptation to environment, but also to identify genetic resources of high importance in a sense of adaptive potential.
Оригинален текст от CORDIS (на английски).
Участници
- UNIVERSITY OF LJUBLJANA, BIOTECHNICAL FACULTY, DEPARTMENT OF ANIMAL SCIENCE · LJUBLJANAКоординаторНиво градСловения
Връзки
Данни: CORDIS, © Европейски съюз
