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SYNBREED S1: Network Coordination (Project)

The project S1 is responsible for optimizing internal collaboration at the scientific and technological level. A scientific steering committee advises the individual project partners on potential synergies and cross-linking. Together with a board of external, very distinguished scientific reviewers the steering committee will supervise project progress as well as make recommendations for future...


Funding period: 2009 - 2014

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SYNBREED S2: Education and Training (Project)

Training and education must keep pace with progress in research and development. The field of plant and animal breeding has a great demand for highly qualified young talents. Genome-based breeding requires excellent knowledge in quantitative and population as well as molecular genetics. In addition, management and stewardship of massive amounts of data with bioinformatic tools as well as a...


Funding period: 2009 - 2014

Relevancy: 100%

SYNBREED S3: Independent Group 'Population Genetics' (Project)

Within the TUM faculty of Life and Food Sciences Weihenstephan a tenure track position “Population Genetics” dedicated to genome based research on crop and livestock breeding will be established to strengthen the research cluster Synbreed. The group is expected to bridge theoretical and experimental population genetics and genomics by implementing novel molecular methods such as next-generation...


Funding period: 2010 - 2014

Relevancy: 100%

SYNBREED T1: Genome wide high-throughput sequencing in maize, chicken and cattle (Project)

Next generation sequencing technologies allow sequencing of complex genomes in manageable periods and at much lower costs than conventional sequencing technologies. Based on investments from the innovation cluster and the existing infrastructure at the Helmholtz Center Munich, next generation sequencing technologies will be systematically expanded. The methodology allows the identification of...


Funding period: 2009 - 2014

Relevancy: 100%

SYNBREED T2: Establishment and utilization of a platform for high-throughput SNP genotyping (Project)

High-throughput genotyping is a key technology of modern breeding research. A platform for high-throughput genotyping is a prerequisite for population genomic analyses in the context of genomic selection and the identification of trait relevant genes in cattle, chicken and maize as planned in Synbreed. SNPs resulting from the next generation sequencing technology platform (T1) will be used for...


Funding period: 2009 - 2013

Relevancy: 100%

SYNBREED T3: Bioinformatics (Project)

Genomic selection with genome wide SNP genotyping arrays aims at optimizing breeding processes in plants and animals. Within the Synbreed project the first step is the resequencing of European maize, chicken and cattle genotypes using conventional Sanger and next generation sequencing technologies. Massive sequence information generated by the sequencing platform T1 will be integrated with...


Funding period: 2009 - 2014

Relevancy: 100%

Collaborative project: Co-operative project: Sensor supported control system for resource preserving irrigation of field and fruit vegetables by means of close range photogrammetry - Subproject 1 (Project)

The PLANTSENS system has been developed to analyze the water supply state of a horticultural crop and to trigger georeferenced watering when needed. The sensory system is based on methods of short range photogrammetry combined with remote measurements of reflection and crop surface temperatures. Data and trigger transfer are conducted wireless. Within a glasshouse the sensory system will be fixed...


Funding period: 2017 - 2020