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This modification of ontogenetic development drives much of the associated interspecific variability in intestinal length evident in terapontids.
An example of the Li 2 mutant and WT fiber development stages from the DOA to maturity are shown in Figure 1 with slight differences in fiber length evident as early as 5 DPA.
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In vessels with high cell flux, such as the dorsal aorta, periodic changes in apparent cell length are evident and reflect the periodic change in cellular velocity caused by ventricular contraction and subsequent relaxation.
Several patterns of ontogenetic development of increased intestinal length were evident in the terapontid species examined.
Variation in exon length is evident, even within individual subfamilies, although variation in exon length is greater between subfamilies [see Additional file 3].
Lengths were not measured if any damage to the bone that might influence the length, was evident The right and left scapula, humerus, radius and ulna were also weighed to the nearest gram on a digital balance.
The significant diet-intestinal length relationship evident in approximately 55% of extant terapontid species suggests that the capacity to develop long intestines during ontogeny has facilitated the widespread shifts away from carnivorous diets across the family.
Enhanced germination efficiency associated with increase in radicle and hypocotyl length was evident only at the early stages of plant development (5-day-old seedlings) with both LDR and HDR doses.
In addition to the pitting micro-wear, fine scratches or striations of different length were evident along the food escape pathways of the occlusal surfaces of almost every restoration.
Limb bud cilia from wild-type and mutant embryos were similarly analysed (Fig. 2D,E), and although there was a far smaller variability in these innately short cilia, a small but significant drop (P=0.011; Fig. 2G) in cilia length was evident in Atmin gpg6/gpg6.
With respect to Ex2 genealogy, two major clades separated by long branch lengths are evident (Fig. 4B), each containing common haplotypes.
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