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Both pollen viability and spikelet fertility were significantly reduced in IR64 but not in N22 and NH219.
Both pollen viability and spikelet fertility were not reduced significantly in N22 and NH219 but reduced by 20% in IR64.
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In both tall fescue and switchgrass, no difference in pollen viability and longevity was found between transgenic and non-transgenic control plants.
Pollen viability and spikelet fertility were high in both IR64 and NH219 under normal ambient temperature.
Figure 2 Decreased pollen viability and increased variation frequency of pollen viability in regenerated plants of torenia.
Plants that have excessive GA-induced signaling show decreased pollen viability and a sterile phenotype.
This could be one reason for low reduction in pollen viability and seed set.
With the development of a single flower, pollen viability and stigma receptivity would increase.
Whereafter, pollen viability and stigma receptivity decreased gradually until flowers wilted.
However, in heat stress treatment, pollen viability and spikelet fertility in IR64 were significantly lower than in NH219 and N22.
These results indicated that oslap6 is a strong mutant of OsLAP6/OSPKS1 gene, and suggested a crucial role for OsLAP6/OsPKS1 in pollen viability and pollen exine formation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com