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Cytological characterization of a thermo-sensitive cytoplasmic male-sterile wheat line having K-type cytoplasm of Aegilops kotschyi

机译:具有热型Aegilops kotschyi K型细胞质的雄性不育小麦品系的细胞学特征

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Male sterility is an important tool for obtaining crop heterosis. A thermo-sensitive cytoplasmic male-sterile (TCMS) line was developed recently using a new method based on tiller regeneration. In the present study, we explored the critical growth stages required to maintain thermo-sensitive male sterility in TCMS lines and found that fertility is associated with abnormal tapetal and microspore development. We investigated the fertility and cytology of temperature-treated plant anthers at various developmental stages. TCMS line KTM3315A exhibited thermo-sensitive male sterility in Zadoks growth stages 41–49 and 58–59. Morphologically, the line exhibited thermo-sensitive male sterility at 3–9 days before heading and at 3–6 days before flowering, and it was partially restored in three locations during spring and summer. TCMS line KTM3315A plants exhibited premature tapetal programmed cell death (PCD) from the early uninucleate stage of microspore development until the tapetal cells degraded completely. Microspore development was then blocked and the pollen abortion type was stainable abortion. Thus, male fertility in the line KTM3315A is sensitive to temperature and premature tapetal PCD is the main cause of pollen abortion, where it determines the starting period and affects male fertility conversion in K-type TCMS lines at certain temperatures.
机译:雄性不育是获得作物杂种优势的重要工具。最近,使用基于分based再生的新方法开发了热敏细胞质雄性不育(TCMS)品系。在本研究中,我们探索了维持TCMS系热敏雄性不育所需要的关键生长阶段,并发现生育能力与绒毛和小孢子发育异常有关。我们调查了不同发育阶段的温度处理过的植物花药的育性和细胞学。 TCMS系KTM3315A在Zadoks生长阶段41-49和58-59表现出对热敏感的雄性不育。从形态上看,该品系在抽穗前3-9天和开花前3-6天表现出对热敏感的雄性不育,并且在春季和夏季在三个位置部分恢复。 TCMS系KTM3315A植物表现出从小孢子发育的早期单核阶段到绒毡层细胞完全降解之前的绒毡层程序性细胞死亡(PCD)。然后阻止小孢子发育,并且花粉流产类型为可染色流产。因此,KTM3315A品系中的雄性育性对温度敏感,过早的绒毡膜PCD是花粉流产的主要原因,它决定了起始时期并在一定温度下影响K型TCMS品系中的雄性育性转化。

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