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Correlations between Gravitropic Curvature and Auxin Movement across Gravistimulated Roots of Zea mays

机译:玉米Gra的重力引力曲率与生长素运动的关系

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摘要

We compared the kinetics of auxin redistribution across the caps of primary roots of 2-day-old maize (Zea mays, cv Merit) seedlings with the time course of gravitropic curvature. [3H] indoleacetic acid was applied to one side of the cap in an agar donor and radioactivity moving across the cap was collected in an agar receiver applied to the opposite side. Upon gravistimulation the roots first curved upward slightly, then returned to the horizontal and began curving downward, reaching a final angle of about 67°. Movement of label across the caps of gravistimulated roots was asymmetric with preferential downward movement (ratio downward/upward = ca. 1.6, radioactivity collected during the 90 min following beginning of gravistimulation). There was a close correlation between the development of asymmetric auxin movement across the root cap and the rate of curvature, with both values increasing to a maximum and then declining as the roots approached the final angle of curvature. In roots preadapted to gravity (alternate brief stimulation on opposite flanks over a period of 1 hour) the initial phase of upward curvature was eliminated and downward bending began earlier than for controls. The correlation between asymmetric auxin movement and the kinetics of curvature also held in comparisons between control and preadapted roots. Both downward auxin transport asymmetry and downward curvature occurred earlier in preadapted roots than in controls. These findings are consistent with suggestions that the root cap is not only the site of perception but also the location of the initial redistribution of effectors that ultimately leads to curvature.
机译:我们比较了两天大的玉米(Zea mays,cv Merit)幼苗的初生根冠上生长素重新分布的动力学与重力弯曲的时间过程。在琼脂供体中将[ 3 H]吲哚乙酸施加于盖的一侧,并在施加于相反侧的琼脂接收器中收集穿过盖的放射性。受到去毛刺后,根部首先略微弯曲,然后回到水平方向并开始向下弯曲,最终形成约67°的角度。标记物在去离子化的根冠上的移动是不对称的,具有优先向下的移动(向下/向上的比率=大约1.6,在开始去离子化后90分钟内收集的放射性)。生长素穿过根冠的不对称运动的发展与曲率之间有着密切的相关性,两个值都增加到最大值,然后随着根接近最终曲率角而下降。在预适应重力作用的根部(在1小时内对相反的侧面进行短暂的短暂刺激),消除了向上弯曲的初始阶段,并且开始向下弯曲的时间要早​​于对照。生长素的不对称运动与曲率动力学之间的相关性在对照根和预适应根之间的比较中也得到保持。向下的生长素转运不对称和向下的弯曲发生在比对照更早的根中。这些发现与以下建议相吻合:即根冠不仅是感知的位置,而且还是最终导致曲率的效应子的初始重新分布的位置。

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