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生长素在根中的运输:IX. 玉米根段中 IAA 的放射性的移动、外排、再吸收和损失。

Auxin transport in roots : IX. Movement, export, resorption and loss of radioactivity from IAA by Zea root segments.

机构信息

Department of Botany, The University, Glassgow, Scotland.

出版信息

Planta. 1972 Dec;106(4):291-310. doi: 10.1007/BF00384767.

Abstract

The reasons underlying the initial increase and subsequent decrease in the amount of radioactivity in the receiver block at the apical end of a Zea root segment supplied with a basal donor block containing labelled IAA have been investigated.The phenomenon was observed in segments supplied with IAA-1-(14)C, IAA-2-(14)C and IAA-5-(3)H. An acropetal polarity in the movement of radioactivity into the receiver blocks was observed using donor blocks containing IAA-5-(3)H at concentrations as low as 10(-10)M.The decrease in the amount of radioactivity in the receiver block begins after 6-8 h of transport at 25° C, and is unaffected by renewal of the donor block every 2 h, or the presence of 2% sucrose in the donor and receiver blocks.The net export of radioactivity into the receiver block at the apical end of the segment virtually ceases after 6-8 h of transport at 25° C, and is not prolonged by the presence of 2% sucrose in the donor and receiver blocks. At 10° C, net export of radioactivity continues for at least the first 50 h of transport, and the amount of radioactivity in a continuously applied receiver block continues to increase over this period.Receiver blocks removed from the apical end of segments after 8 h of transport and placed on planchettes show little or no decrease in the amount of radioactivity they contain as a function of time, in marked contrast to those left in contact with the segment.There is a marked, and metabolically dependent, resorption of radioactivity from the receiver block at the apical end of the segment after about 8 h of transport at 25° C; most of the resorbed radioactivity remains in the apical 2-4 mm of the segment.There is a loss of radioactive CO2 from segments supplied with a basal donor block containing 10(-6)M IAA-1-(14)C at 25° C, the emission beginning after 6-8 h of transport. Segments similarly supplied with 10(-6)M IAA-2-(14)C did not begin to lose radioactive CO2 until after about 10-12 h of transport.The ability of the segments to transport radioactivity in a polar manner declines with time after they are excised from the root, regardless of whether their cut ends are kept in the intervening period in contact with plain agar blocks, or ones containing unlabelled IAA at 10(-6)M. By the 6th h after excision at 25° C no transport of radioactivity through the segments and into the receiver blocks could be detected in either the aropetal or basipetal direction.The decrease in radioactivity in the receiver block after transport periods of 6-8 h at 25° C is therefore due to (1) a cessation of net export of radioactivity into the block, and (2) the onset of a metabolically-dependent, net resorption of radioactivity. At this time substantial amounts of radioactive CO2 begin to be evolved from segments supplied with IAA-1-(14)C, whereas with IAA-2-(14)C radioactive CO2 is not evolved for a further 4-6 h.

摘要

用含有标记 IAA 的基部供体块供给 Zea 根段的顶端接收器块的放射性总量起初增加,随后减少,其原因已得到研究。用含有 IAA-1-(14)C、IAA-2-(14)C 和 IAA-5-(3)H 的供体块供给根段时,观察到放射性向接收器块移动具有向顶极性。用含有浓度低至 10(-10)M 的 IAA-5-(3)H 的供体块时,观察到放射性进入接收器块的量的减少始于 25°C 下运输 6-8 小时后,并且每 2 小时更新供体块或在供体和接收器块中存在 2%蔗糖都不受影响。在 25°C 下运输 6-8 小时后,几乎停止了放射性进入段顶端接收器块的净输出,并且在供体和接收器块中存在 2%蔗糖也不会延长其净输出。在 10°C 下,放射性的净输出至少在运输的前 50 小时内继续进行,并且在这段时间内,连续施加的接收器块中的放射性总量继续增加。在运输 8 小时后从段的顶端取出接收器块并放在载玻片上,它们所含的放射性物质的量几乎没有或随着时间的推移没有减少,与留在段上的接收器块形成鲜明对比。在 25°C 下运输约 8 小时后,段的顶端接收器块中放射性物质明显且依赖于代谢的再吸收;大部分再吸收的放射性物质仍留在段的顶端 2-4mm 内。用含有 10(-6)M IAA-1-(14)C 的基部供体块供给的段在 25°C 下开始失去放射性 CO2,发射始于运输 6-8 小时后。类似地用含有 10(-6)M IAA-2-(14)C 的段在运输 10-12 小时后才开始失去放射性 CO2。从根上切除后,无论它们的切割端在间隔期间是否保持与普通琼脂块或含有 10(-6)M 未标记 IAA 的琼脂块接触,段以极性方式运输放射性的能力都会随着时间的推移而下降。在 25°C 下切除后第 6 小时,在向顶或向基方向均不能检测到放射性通过段进入接收器块的运输。因此,在 25°C 下运输 6-8 小时后接收器块中放射性的减少是由于 (1) 放射性进入块的净输出停止,和 (2) 代谢依赖性的、放射性的净再吸收开始。此时,从供给 IAA-1-(14)C 的段中开始大量释放放射性 CO2,而用 IAA-2-(14)C 供给的段则在另外 4-6 小时内不会释放放射性 CO2。

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