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In the summer of 2011, the seed setting rate of 52 testcross F1 lines was analyzed.
Seed setting rate was not different (Additional file 1: Figure S9H).
The anthers of F1 hybrids between Lebed and T65 contained both starch-engorged and empty pollen grains, showing a seed setting rate of 36.2%, as against a 51.3% seed setting rate in Lebed (Additional file 2: Figure S1).
This comparison revealed that the seed setting rate of ZH11 el1) was about 12%% lower than that of ZH11 (Additional file 6: Figure S6).
In particular, the seed setting rate of Koshihikari was close to 90%%, suggesting no negative effect of the el1 mutation on anther development or spikelet fertility in Koshihikari.
While conducting flowering-time experiments, we observed a severe decrease in the seed setting rate of HNIL(H143) plants in field conditions.
The seed setting rate of the restorer lines was 82.8 ± 3.9 % for BC4F1 plants of CWR x IR24 (Rf17rf17) when tested in 2014 (Fig. 2).
Understandably, the seed setting rate of 7302R (Figure 1D) was decreased, which might have been a negative result of the huge increase in grain number.
Setting rate parameters of and to be equal to and, respectively, the cumulative distribution function (CDF) and PDF of and are, respectively, [14] (14).
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TS4 produced more productive panicles per plant with higher seed-setting rate but fewer grain number per panicle than Siputeh grown in both field trials (Table 3).
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