Full seeds (n=20 siliques) | Aborted seeds | Seed yield mg plant−1 (n=6) | 1000 seed wt (mg) (n=5) | |
Ws-4 | 42.3±2.1 | 2.5±1.7 | 41.4±2.0 | 14.3±0.2 |
kat2-1 | 16.9±1.7 | 19.3±1.5 | 25.5±1.5 | 13.7±0.1 |
Full seeds (n=20 siliques) | Aborted seeds | Seed yield mg plant−1 (n=6) | 1000 seed wt (mg) (n=5) | |
Ws-4 | 42.3±2.1 | 2.5±1.7 | 41.4±2.0 | 14.3±0.2 |
kat2-1 | 16.9±1.7 | 19.3±1.5 | 25.5±1.5 | 13.7±0.1 |
Mature siliques were dissected and the number of full and aborted seeds determined. The thousand-seed weight was determined using seeds from the same plants. The total seed yield was determined in six individual plants of the wild type and mutant. All data represent the mean ±SE.
Full seeds (n=20 siliques) | Aborted seeds | Seed yield mg plant−1 (n=6) | 1000 seed wt (mg) (n=5) | |
Ws-4 | 42.3±2.1 | 2.5±1.7 | 41.4±2.0 | 14.3±0.2 |
kat2-1 | 16.9±1.7 | 19.3±1.5 | 25.5±1.5 | 13.7±0.1 |
Full seeds (n=20 siliques) | Aborted seeds | Seed yield mg plant−1 (n=6) | 1000 seed wt (mg) (n=5) | |
Ws-4 | 42.3±2.1 | 2.5±1.7 | 41.4±2.0 | 14.3±0.2 |
kat2-1 | 16.9±1.7 | 19.3±1.5 | 25.5±1.5 | 13.7±0.1 |
Mature siliques were dissected and the number of full and aborted seeds determined. The thousand-seed weight was determined using seeds from the same plants. The total seed yield was determined in six individual plants of the wild type and mutant. All data represent the mean ±SE.
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