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Moreover, both strains could be used for industrial applications, e.g., production of enantiopure DKPs or dipeptides.
Both strains could be easily distinguished by their fluorescence.
Generally, sequencing of both strains could be of interest for follow-up studies considering mutations that occur during adaptation to the host cell line CR.pIX and considering the presence of mutations that might be connected with the temperature-sensitive phenotype [ 40, 42, 43].
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The adhesion of both bacterial strains could be efficiently inhibited by the copolymer film only with a grafting density of 0.33 characterized by the highest PMOXA chain surface density and a surface potential close to zero.
Furthermore, there is a possibility that the failure of observing any putative "functional" ves αβ transcripts in both attenuated strains could be due to these parasites being sequestered within capillaries as peripheral blood was collected for the preparation of sample pairs [ 29].
By 18 and 21 dpi, when symptoms of the virulent strains were obvious on all plants, both race 1,2 strains could be reisolated all along the stems, although ISPaVe1018 was faster and more continuous than ISPaVe1083.
Based on the finite element method (FEM), it was verified that both tensile and compressive strains could be generated on the same side of the leaf spring.
Resistant corn strains could be genetically engineered.
Resilient strains could be used to restore damaged reefs.
If they were allowed to cross-pollinate with other varieties, whole strains could be lost.
Other strains could be drought-resistant, or bred to flourish in the winter.
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