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Temperature related instability of a naturally induced cytoplasmic male sterility in industrial chicory (Cichorium intybus L.)

机译:在工业菊苣(Cichorium Intybus L.)中天然诱导的细胞质雄性不育的温度相关不稳定性

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摘要

Natural alloplasmic cytoplasmic male sterile (CMS) clones of industrial chicory were obtained after crossing wild chicory with selected breeding lines. We investigated the CMS stability of 10 clones in various environmental growing conditions. CMS was stable under cool growing conditions in most of them. Fertility restoration, based on pollen production scores, was observed in all clones after a period of hot temperatures. The early flower bud stage was sensitive, resulting in fertile flowers 12-17days after exposure to high temperatures. Experiments under controlled growing conditions at 15 degrees C demonstrated that a heat shock of 2days at 25 or 30 degrees C was sufficient to restore fertility. Sterile flowers were formed when plants were again grown at lower temperatures. Significant differences between individual clones were observed, indicating the potential of genetic selection to obtain stable CMS parent lines.
机译:在用选定的育种线过野生菊苣生物菊苣生物菊苣生物菊苣生物菊苣生物质的天然异质细胞质雄性无菌(CMS)克隆。 我们调查了各种环境生长条件下的10个克隆的CMS稳定性。 在大多数情况下,CMS在凉爽的生长条件下稳定。 在一段炎热的温度之后,在所有克隆中观察到基于花粉生产评分的生育恢复。 早期花芽阶段敏感,导致肥沃的花朵12-17天暴露在高温后。 在15摄氏度的受控生长条件下的实验证明了25或30℃的2天的热冲击足以恢复生育能力。 当在较低温度下植物生长植物时,形成无菌花。 观察到各个克隆之间的显着差异,表明遗传选择的可能性,以获得稳定的CMS母线。

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