首页> 外文OA文献 >Anti-transpirant activity in xylem sap from flooded tomato (Lycopersicon esculentum Mill.) plants is not due to pH-mediated redistributions of root- or shoot-sourced ABA
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Anti-transpirant activity in xylem sap from flooded tomato (Lycopersicon esculentum Mill.) plants is not due to pH-mediated redistributions of root- or shoot-sourced ABA

机译:淹水番茄(Lycopersicon esculentum Mill。)植物木质部汁液中的抗潮剂活性不是由于pH介导的根或芽来源ABA的重新分布

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摘要

In flooded soils, the rapid effects of decreasing oxygen availability on root metabolic activity are likely to generate many potential chemical signals that may impact on stomatal apertures. Detached leaf transpiration tests showed that filtered xylem sap, collected at realistic flow rates from plants flooded for 2 h and 4 h, contained one or more factors that reduced stomatal apertures. The closure could not be attributed to increased root output of the glucose ester of abscisic acid (ABA-GE), since concentrations and deliveries of ABA conjugates were unaffected by soil flooding. Although xylem sap collected from the shoot base of detopped flooded plants became more alkaline within 2 h of flooding, this rapid pH change of 0.5 units did not alter partitioning of root-sourced ABA sufficiently to prompt a transient increase in xylem ABA delivery. More shoot-sourced ABA was detected in the xylem when excised petiole sections were perfused with pH 7 buffer, compared with pH 6 buffer. Sap collected from the fifth oldest leaf of 'intact' well-drained plants and plants flooded for 3 h was more alkaline, by ~0.4 pH units, than sap collected from the shoot base. Accordingly, xylem [ABA] was increased 2-fold in sap collected from the fifth oldest petiole compared with the shoot base of flooded plants. However, water loss from transpiring, detached leaves was not reduced when the pH of the feeding solution containing 3-h-flooded [ABA] was increased from 6.7 to 7.1 Thus, the extent of the pH-mediated, shoot-sourced ABA redistribution was not sufficient to raise xylem [ABA] to physiologically active levels. Using a detached epidermis bioassay, significant non-ABA anti-transpirant activity was also detected in xylem sap collected at intervals during the first 24 h of soil flooding.
机译:在淹没的土壤中,减少氧气供应对根部代谢活性的快速影响可能会产生许多可能影响气孔孔径的潜在化学信号。分离的叶片蒸腾试验表明,过滤后的木质部树液以实际流速从淹没2 h和4 h的植物中收集,含有一种或多种减少气孔孔径的因子。封闭不能归因于脱落酸葡萄糖酯(ABA-GE)的根输出增加,因为ABA结合物的浓度和传递不受土壤洪水的影响。尽管从淹没的水淹植物的芽基中收集到的木质部树液在淹水后2小时内变得更碱性,但0.5个pH单位的这种快速变化并不能充分改变根源ABA的分配,从而不会引起木质部ABA传递的短暂增加。与pH 6缓冲液相比,当用pH 7缓冲液灌注切下的叶柄切片时,木质部中检测到更多的芽来源ABA。从“完整”排水良好的植物的第五片最老叶子收集的汁液和淹没3 h的植物比从芽基收集的汁液具有更强的碱性(约0.4个pH单位)。因此,与淹没植物的芽基相比,从第五个最古老的叶柄收集的汁液中木质部[ABA]增加了2倍。但是,当含有3-h泛水[ABA]的进料溶液的pH从6.7增加到7.1时,从蒸腾,脱落的叶片失水并没有减少。因此,pH介导的芽来源ABA的重新分布程度为不足以将木质部[ABA]提升至生理活性水平。使用分离的表皮生物测定法,在土壤淹没的前24小时内,在间隔收集的木质部树液中还检测到了显着的非ABA抗透明质活性。

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