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The 3D window enabled the best navigation to the 125I seed (Figure 1c).
GUS activity was also present in the mature seed (Figure 2C), but almost absent in the leaf (Figure 2D).
Surprisingly, real-time PCR analysis on the CkTLP expression patterns of C. komarovii displayed more abundant mRNA in seed, flower, cotyledon and root than stem and leaf, which was consistent with GUS activity except seed (Figure S2).
The cuticle of the seed (figure 8a-f) shows small cells with mainly straight, rarely slightly curved anticlinal walls.
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We have evaluated 94 F2 individuals in terms of FGP by using the F2 3 seeds (Figure 2B).
In polished osvit2 seeds, the concentrations of Fe, Zn, and Cu were significantly elevated compared to WT seeds (Figure 5e g).
Additionally, F1 plants derived from a cross between WT and Srs5 plants show intermediate seed length of parents seeds (Figure 1A and 1D).
Similarly, high seed sucrose content at early stage (10 to 15 DAA) was also detected compared to the peaks of fructose and glucose in seeds (Figure 7B).
Results revealed a distinct down-regulation in the expression of MIPS gene in transgenic plants with respect to non-transgenic control seeds (Figure 4a).
The Pi concentration of transgenic rice seeds constitutes about 48.70% of the total phosphorus estimated in seeds, which was significantly higher than 4.33%, as observed in non-transgenic seeds (Figure 5a).
We found that the Fe concentration in the paddy field-grown T3 polished seeds was 4.4-fold higher than in non-transgenic seeds (Figure 2b), without any loss of yield.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com