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Auxin Polar Transport is Essential for the Early Growth Stage of Etiolated Maize (Zea maysL. cv. Honey Bantam) Seedlings

机译:生长素的极地传输对于黄光玉米早期生长阶段至关重要(Zea Maysl。CV。蜂蜜胆甘蓝)幼苗

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摘要

The important role of auxin polar transport in the early growth stage of etiolated maize (Zea mays L. cv. Honey Bantam) seedlings was intensively studied. Rapid growth in the basal region of coleoptile and the apical region of mesocotyl was observed in etiolated maize seedlings in the dark. Indole-3-acetic acid (IAA) applied to the top of coleoptile substantially promoted the growth of coleoptile and mesocotyl dose-dependently, suggesting that endogenous IAA is responsible for the growth of coleoptile and mesocotyl in etiolated maize seedlings. Polar transport of radiolabeled IAA ([14C]IAA) in the coleoptile segment was significantly higher than that in the mesocotyl segment from etiolated maize seedlings. Auxin polar transport in the coleoptile and mesocotyl segments from etiolated maize seedlings increased with the growth of the seedlings from which the segments were excised. Maximum expression of the gene (ZmPIN1a) closely related to auxin polar transport was observed just prior to maximum levels of auxin polar transport in the coleoptile and mesocotyl segments. In addition, the growth rate was well correlated with the auxin polar transport and the expression of ZmPIN1a gene in coleoptile and mesocotyl of etiolated maize seedlings. These results strongly suggest that auxin polar transport regulated by ZmPIN1a protein is essentially required for the growth of coleoptile and mesocotyl in the early growth stage of etiolated maize seedlings.
机译:蟾蜍素极性转运在光学玉米早期生长阶段的重要作用(Zea Mays L.CV.蜂蜜胆甘蓝)幼苗进行了深入研究。在黑暗中观察到在黑暗的光学玉米幼苗中观察到植物植物植物基部和胚轴顶部区域的快速生长。吲哚-3-乙酸(IAA)施加到植物精孔的顶部,依赖性地促进了植物精中和胚轴剂量的生长,表明内源性IAA负责植物玉米幼苗中菌液和中塞替尼氏植物的生长。在植物精化区段中的放射性标记IAA([14C] IAA)的极性标记IAA([14C] IAA)显着高于来自硫酸盐玉米幼苗的中象胶区段中的显着高。植物化学玉米菌的植物素和胚轴段中的植物素极性转运随着叶片的生长而增加。在菌液和中骨胶囊中的最高毒素极性输送之前,观察到与生长素极性转运密切相关的基因(Zmpin1a)的最大表达。此外,生长速率与植物素极性传输和Zmpin1a基因在植物精中的玉米蛋白和玉米胶质植物的表达良好。这些结果强烈表明,Zmpin1a蛋白调节的植物素极性传输基本上是植物精化玉米幼苗早期生长阶段的植物精菌和中塞替植物的生长所必需的。

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