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Many of these factors leave marks on the genome itself – "epigenetic" tags that dictate the deployment of genes, and can be passed on to the next generation.
Because of the deployment of genes of plant origin, this system might not face biosafety problems in developing hybrids in food crops.
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They also indicate that REST and CoREST differentially regulate the deployment of gene networks preferentially involved in mediating broader developmental and homeostatic programs during neuronal subtype specification.
The deployment of gene microarrays can help obviate these challenges since only small quantities of scarce microbial tissues are required for preparation of targets for microarray analysis.
The diversity of contexts in which Hox genes are utilized in bilaterian development illustrates the need to examine the deployment of these genes in broader evolutionary lineages.
Further studies integrating population-level dynamics with evolutionary history for disease resistance genes in dominant natural plant species will also help to inform more effective deployment of resistance genes in biofuel and other agricultural systems.
Unlike these species, the 16 anthocyanin biosynthesis related genes in Aquilegia appear to be dispersed in the genome (Table 6), suggesting the unique deployment of the genes in this lower eudicot genus.
Deployment of such genes to improve crops or engineer microbes that produce valuable compounds heralds a potential paradigm shift for plant biology.
Important prerequisites to the deployment of R genes are as follows: 1) to have an intensive knowledge of Xoo population structure, race distribution and frequency 2) to determine the durability of resistance of R genes to be deployed.
Molecular breeding approaches facilitate the identification and deployment of resistance genes (Ashkani et al. 2015) and effective and durable resistance would be best achieved by combining both quantitative and qualitative resistance (Ballini et al. 2008; Boyd et al. 2013).
Efficient introgression of resistance genes (Bph1, bph2, Bph3, Bph14, Bph15, Bph18, Bph20, and Bph21) into elite rice cultivars by marker-assisted selection together with strategic deployment of these genes can be an important approach to develop stable resistance to BPH and sustain rice production in the tropical and temperate rice growing regions.
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