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首页> 外文期刊>Functional Plant Biology >Alternation of wet and dry sides during partial rootzone drying irrigation alters root-to-shoot signalling of abscisic acid.
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Alternation of wet and dry sides during partial rootzone drying irrigation alters root-to-shoot signalling of abscisic acid.

机译:在部分根区干燥灌溉过程中,湿侧和干侧的交替改变会改变脱落酸的根到茎信号。

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摘要

Partial rootzone drying (PRD) is an irrigation technique where water is distributed unevenly to the root system such that part is irrigated while the remainder is allowed to dry the soil. Tomato (Lycopersicon esculentum Mill.) plants were grown with their roots in two soil columns to compare the physiological consequences of alternation of wet and dry columns during PRD irrigation (alternate PRD, PRD-A) with retention of the same wet and dry columns (fixed PRD, PRD-F). When PRD plants received 50% less water than well-watered (WW) plants, xylem ABA concentration ([X-ABA]) increased and stomatal conductance decreased relative to WW plants. Although both sets of PRD plants received the same amount of water, [X-ABA] of PRD-A plants increased up to 2-fold above that of PRD-F plants, which further decreased stomatal conductance. Differences in [X-ABA] were detected within an hour of alternation, but did not persist beyond the photoperiod of alternation. [X-ABA] increased linearly as whole-pot soil water content ( theta pot) and leaf water potential ( Psi leaf) declined, but the difference in [X-ABA] between the two sets of PRD plants was not due to differences in either theta pot or Psi leaf. In PRD-F plants, the unwatered part of the root system contributes proportionally less to the transpiration stream as the soil progressively dries (Yao et al. 2001, Plant, Cell & Environment 24, 227-235). In PRD-A plants, we hypothesise that re-watering the dry part of the root system allows these roots to contribute proportionally more to total sap flux, thus liberating a pulse of ABA to the transpiration stream as the root ABA pool accumulated during soil drying is depleted. Since the enhancement of [X-ABA] caused by PRD-A increased as theta pot and Psi leaf declined, an optimal frequency of alternation to maximise the cumulative physiological effects of this ABA pulse must consider possible negative impacts of leaf water deficit as soil water status declines..
机译:局部根区干燥(PRD)是一种灌溉技术,其中水分不均匀地分布在根系上,这样就可以灌溉部分土壤,同时让其余部分干燥土壤。番茄(Lycopersicon esculentum Mill。)的植物的根系生长在两个土壤柱中,以比较PRD灌溉(交替使用PRD,PRD-A)时保留干湿柱不变的干湿柱交替发生的生理后果(固定PRD,PRD-F)。当珠三角植物的水分比浇水的植物少50%时,木质部ABA浓度([X-ABA])相对于WW植物增加,气孔导度降低。尽管两组PRD植物都接受相同量的水,但是PRD-A植物的[X-ABA]增加到PRD-F植物的2倍,从而进一步降低了气孔导度。在交替的一个小时内检测到[X-ABA]的差异,但在交替的光周期内并未持续存在。 [X-ABA]随整盆土壤含水量(theta pot)和叶水势(Psi叶)的下降而线性增加,但两组PRD植物之间[X-ABA]的差异并不是由于西塔锅或Psi叶。在PRD-F植物中,随着土壤逐渐干燥,根系的未浇水部分对蒸腾作用的贡献成比例地降低(Yao等,2001,Plant,Cell&Environment 24,227-235)。在PRD-A植物中,我们假设重新浇灌根系的干燥部分可使这些根成比例地对总树液通量做出贡献,从而在蒸腾流中释放ABA脉冲,因为土壤干燥过程中累积了ABA根已耗尽。由于PRD-A引起的[X-ABA]的增强随着theta pot和Psi叶片的下降而增加,因此要使该ABA脉冲的累积生理效应最大化的最佳交替频率必须考虑叶片缺水对土壤水分的可能负面影响地位下降

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