首页> 外文期刊>Journal of Plant Physiology >Cell division versus cell elongation: the control of radicle elongation during thermoinhibition of Tagetes minuta achenes
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Cell division versus cell elongation: the control of radicle elongation during thermoinhibition of Tagetes minuta achenes

机译:细胞分裂与细胞伸长:热抑制万寿菊热抑制过程中胚根伸长的控制

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摘要

Endogenous embryo factors, which act mainly in the radicle, prevent germination in Tagetes minuta at high temperatures. These factors act to prevent cell elongation, which is critical for radicle protrusion under optimal conditions. Once the radicle has emerged both cell elongation and cell division are required for post-germination growth. Germination can be induced at high temperatures by fusicoccin, which rapidly stimulates cell elongation. In addition, priming seeds at 25 degrees C on polyethylene glycol (PEG) 6000 and mannitol could also induce germination on water at 36 degrees C, indicating that priming prevents radicle protrusion at a point subsequent to the point of control in thermoinhibited achenes. Flow cytometry studies revealed that DNA synthesis occurs during thermoinhibition and the inhibition of DNA synthesis during this process inhibits subsequent germination on water under optimal conditions, suggesting a protective role for DNA synthesis in thermoinhibited achenes of T. minuta.
机译:主要在胚根中起作用的内源性胚胎因子可防止高温下万寿菊的发芽。这些因素可防止细胞伸长,这对于在最佳条件下胚根突出至关重要。一旦胚根出现,发芽后的生长既需要细胞伸长又需要细胞分裂。融合霉素可在高温下诱导发芽,迅速刺激细胞伸长。此外,在25摄氏度下在聚乙二醇(PEG)6000和甘露醇上引发种子也可以在36摄氏度的水中诱导发芽,这表明在热抑制瘦果的控制点之后,引发可以防止胚根突出。流式细胞术研究表明,DNA合成发生在热抑制过程中,在此过程中对DNA合成的抑制作用会在最佳条件下抑制随后在水中的萌发,这表明DNA合成在热抑制的T. minuta瘦果中具有保护作用。

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