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The other 39 divergent genes (5.5%) were genotype specific, that is, expression divergence was observed only in either Nipponbare or Pokkali (fig. 7 E).
The highest interspecific divergence was observed among Antilope cervicapra and Gazella erlangeri (12.6%).
Significant divergence was observed when traits were considered in combination or when using phylogeny as a proxy of functional similarity.
Whereas for herbage quality no substantial divergence was observed between both countries, herbage offers clearly differed on the summer pastures.
Similar divergence was observed for all the targets, including those of the DUD-E (data not shown).
According to similarity searches and alignments amplified clone sequences affiliated with glycosyl hydrolase family 7 and glycosyl hydrolase family 45 though significant sequence divergence was observed.
The chemists seemed to agree on synthetic accessibility for very simple and quite complex molecules; in the middle range, however, larger divergence was observed.
A good agreement between the experimental data and the estimated data are obtained except for the biomass where a divergence was observed after 40 h of investigation.
The highest contribution toward total divergence was observed for leaf width (18.30%) followed by oil yield g/plot (14.41%) and leaf area (11.37%), while, leaf stem ratio (5.74%) and plant height (5.66%) contributed lowest.
Likewise, the genetic divergence between Auxis thazard and Auxis rochei was surveyed based on PCR RFLP analysis of mtDNA D-Loop region and high level of genetic divergence was observed (Kumar et al. 2014).
In the NU varieties, divergence was observed in quantitative agronomic traits and apparent phenotypes (Ikeda et al. 2009; Sanni et al. 2009; Fukuta et al. 2012; Saito et al. 2012; Rodenburg et al. 2015).
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