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玉米胚芽鞘中 IAA 横向运输与代谢的关系。

Relationship Between Metabolism and the Lateral Transport of IAA in Corn Coleoptiles.

机构信息

School of Biological Sciences, University of East Anglia, Norwich, NOR 77H, U.K.

出版信息

Plant Physiol. 1968 Sep;43(9):1435-42. doi: 10.1104/pp.43.9.1435.

Abstract

The lateral movement of IAA in coleoptiles of Zea mays has been investigated under aerobic and anaerobic conditions. The IAA-1-(14)C was supplied asymmetrically to the apical end of the segment. The results were as follows: A) In air more (14)C was found in the lower half of horizontal segments supplied with an upper donor than in the half opposite the donor in vertical segments. The enhanced lateral movement of (14)C in geotropically stimulated segments of corn coleoptiles under aerobic conditions has thus been confirmed. B) This increased lateral movement of (14)C in geotropically stimulated segments is greatly reduced, but is not completely abolished, under anaerobic conditions. C) The lateral movement of (14)C in vertical segments is significantly less under anaerobic conditions than in air. D) Under anaerobic conditions, the lateral movement of (14)C in horizontal segments can be reduced to the level found in vertical segments by pre-soaking the tissue in a 1 mm solution of the metabolic inhibitor sodium fluoride for 2 hours. The inhibitor has no effect on lateral movement of (14)C in vertical anaerobic segments. E) In air, sodium fluoride has no effect on the lateral movement of (14)C in either vertical or horizontal segments.On the assumption that the movement of (14)C reflects the movement of IAA, these results show that the enhanced polarized lateral movement of IAA observed in horizontal corn coleoptile segments is totally abolished only when both aerobic and anaerobic metabolism are arrested. In addition, there appears to be a small metabolically dependent component in the lateral movement of IAA in vertical segments supplied with an asymmetric donor in air.

摘要

在有氧和无氧条件下研究了玉米胚芽鞘中 IAA 的侧向运动。IAA-1-(14)C 不对称地供应给节段的顶端。结果如下:A)在空气中,与供体相对的垂直节段的一半相比,供应有上供体的水平节段的下半部分中发现更多的(14)C。因此,已经证实了在有氧条件下玉米胚芽鞘中向地性刺激段中(14)C 的增强侧向运动。B)这种向地性刺激段中(14)C 的增强侧向运动在厌氧条件下大大降低,但并未完全消除。C)与空气相比,厌氧条件下垂直节段中(14)C 的侧向运动明显减少。D)在厌氧条件下,通过将组织在 1mm 浓度的代谢抑制剂氟化物钠溶液中预浸泡 2 小时,可以将水平节段中(14)C 的侧向运动降低到与垂直节段相同的水平。抑制剂对厌氧垂直节段中(14)C 的侧向运动没有影响。E)在空气中,氟化物钠对垂直或水平节段中(14)C 的侧向运动没有影响。根据(14)C 的运动反映 IAA 的运动的假设,这些结果表明,只有当有氧和无氧代谢都被阻止时,在水平玉米胚芽鞘段中观察到的增强的极化侧向 IAA 运动才会完全消除。此外,在空气中供应不对称供体的垂直节段中 IAA 的侧向运动似乎存在一个依赖代谢的小组成分。

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