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A combination of multiple mapping approaches such as linkage and RH maps have demonstrated their feasibility for improving the assembly [ 20, 21].
This is to be expected as integration of an apple physical and genetic maps have demonstrated presence of both genome-wide and segmental duplications in the apple genome and providing further insights into the complex polyploid ancestral origin of the apple [ 36].
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Previous studies of flavivirus epitope mapping have demonstrated that different substitutions of an E-protein residue can have distinct effects on both MAb reactivities and VLP secretion, and that a specific substitution's effect on MAb binding can vary between flaviviruses [14], [19], [43], [44], [46].
Previous fate-maps have demonstrated that at embryonic day (E) 2 (stage [st.]10), r1 is defined by the boundaries of the expression domains of, rostrally, Otx2 [ 17] and, caudally, Hoxa2 [ 2].
However, structural studies of Map have demonstrated Map mimics the activation mechanism of RhoGEFs and is not a Cdc42 mimic as previous postulated [ 122].
Inducibility, constitutive overexpression, and genomic studies investigating quantitative trait loci (QTL) mapping have demonstrated tolerance or resistance to environmental chemicals due to CYPs [ 13, 16, 17].
Previous studies using T1ρ or T2 MRI mapping have demonstrated a relationship between meniscal and cartilage morphology as well as the cartilage biochemical composition [ 23, 24].
Gene mapping has demonstrated that at least one of the genes which affects eye development in Astyanax is closely linked to a gene that regulates metabolism (Borowsky and Wilkens 2002; Protas et al. 2008).
In the past decade, genetic mapping has demonstrated great promise for the analysis of complex traits.
Extensive comparative mapping has demonstrated that the genetic maps for tilapia and Malawi cichlids are almost perfectly collinear [ 41].
In the postmeiotic gametes, the gene expression map has demonstrated the similarities between plants and animals [ 89], which may also be true in meiosis.
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