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Red light causes a reduction in IAA levels at the apical tip by inhibiting de novo biosynthesis from tryptophan in maize coleoptiles

机译:红光通过抑制玉米胚芽鞘中色氨酸的从头生物合成而导致根尖的IAA水平降低

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When maize coleoptiles were unilaterally exposed to red light (7.9 μmol m−2s−1 for 5 min), 3 h after treatment IAA levels in coleoptiles decreased in all regions, from top to basal, with levels about 60% of dark controls. Localized irradiation in the 5 mm top zone was sufficient to cause the same extent of IAA reduction in the tips to that in the tips of whole irradiated shoots. When coleoptiles were treated with N-1-naphthylphthalamic acid (NPA), an accumulation of IAA in the tip and a decrease of diffusible IAA from tips were simultaneously detected. IAA accumulation in red-light treated coleoptiles by NPA was much lower than that of dark controls. NPA treatment did not affect the content of conjugated IAA in either dark or light treated coleoptile tips. When 13C11 15N2-tryptophan (Trp) was applied to the top of coleoptiles, substantial amounts of stable isotope were incorporated into free IAA in dark and red-light treated coleoptile tips. The ratio of incorporation was slightly lower in red-light treated coleoptile tips than that in dark controls. The label could not be detected in conjugated IAA. The rate of basipetal transport of IAA was about 10 mm h−1 and the velocity was not affected by red light. These results strongly suggest that red light does not affect the rates of conversion of free IAA to the conjugate form or of the basipetal transport, but just reduces the IAA level in the tips, probably inhibited by IAA biosynthesis from Trp in this region.
机译:当玉米胚芽鞘单侧暴露于红光下(7.9μmolm-2 s-1 5分钟)时,处理后3 h胚芽鞘中的IAA水平在所有区域(从上到下)均下降。水平约为黑暗对照的60%。在5毫米顶部区域的局部照射足以使针尖中的IAA减少程度与整个辐照芽的针尖中的IAA减少程度相同。当胚芽鞘用N-1-萘基邻苯二甲酸(NPA)处理时,同时检测到尖端中IAA的积累和尖端中可扩散IAA的减少。 NPA在红光处理的胚芽鞘中的IAA积累远低于黑暗对照。 NPA处理在暗或亮处理的胚芽鞘尖端中均不影响缀合IAA的含量。当将13 C11 15 N2 -色氨酸(Trp)应用于胚芽鞘顶部时,大量的稳定同位素在暗色和红光条件下被掺入游离IAA中处理的胚芽鞘尖端。红光处理的胚芽鞘尖端的掺入率略低于暗对照。在共轭IAA中无法检测到标记。 IAA的基床运输速度约为10 mm h-1 ,速度不受红光的影响。这些结果有力地表明,红光不会影响游离IAA转化为结合物形式或基团转运的速率,而只是降低了尖端中的IAA水平,这可能受到该区域Trp的IAA生物合成的抑制。

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