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On the other hand, the sensibly higher transfer rate to B. distachyon than to rice confirms the usefulness of Brachypodium as a model species for barley and wheat and gave us the species of choice for rooting the phylogenetic tree in the present study.
The aim of this paper was to derive agroclimatic regions of Ireland using hydro-thermal climate (as expressed by climographs using mean monthly rainfall and temperature) in conjunction with a statistical clustering technique (k-means clustering) to relate crop yield, estimated using mathematical simulation models for grass, barley, maize, potato and soybean to hydro-thermal climate data.
For plants, highly compartmentalized stoichiometric models have been developed for barley seeds [ 18] and Chlamydomonas [ 14], especially several models have been reported for Arabidopsis [ 19- 22].
The Golden Promise-Maythorpe genotypic combination provided an attractive model for understanding salt tolerance in barley at the molecular level.
Brachypodium distachyon is a temperate wild grass species that has been explored as a monocot model for studies on wheat and barley because of their genetic and genomic structural similarities [ 24].
The advantages and disadvantages of both indirect and direct methods have already been evaluated in many species, including the model for cereals, rice [ 21] and barley [ 22, 23].
Barley is a susceptible host plant for M. oryzae, so that interactions between M. oryzae and barley provide a model for the molecular analysis of compatible interactions between monocot plants and fungal pathogens [ 18].
These data confirm that wild barley alleles own the capability to alter protein sequences (non-synonymous SNPs), codon usage (synonymous SNPs) and the splicing process (intronic SNPs) and emphasize the potential of the Brenda/HS584 introgression line population to serve as a model for the investigation of favourable wild barley alleles.
The database also includes models of secondary structure predictions performed using the PSIPRED Protein Structure Prediction Server [ 13] for barley, rice and Arabidopsis protein homologs.
The barley- Puccinia hordei (barley leaf rust) pathosystem is a model for investigating partial disease resistance in crop plants and genetic mapping of phenotypic resistance has identified several quantitative trait loci (QTL) for partial resistance.
In cereal crops, the barley- Puccinia hordei Otth (barley leaf rust) pathosystem is a model for investigating partial and non-host resistance.
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