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首页> 外文期刊>Environmental and experimental botany >Measurement and modelling of ABA signalling in potato (Solanum tuberosum L.) during partial root-zone drying
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Measurement and modelling of ABA signalling in potato (Solanum tuberosum L.) during partial root-zone drying

机译:部分根区干燥过程中马铃薯(Solanum tuberosum L.)ABA信号传导的测量和建模

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The objective of this study was to develop a simple mechanistic model to predict the magnitude of ABA signalling ([X-ABA]) of potatoes (Solanum tuberosum L.) exposed to partial root-zone drying (PRD). Potatoes were grown in pots in a glasshouse with the roots split equally between two soil columns. At tuber initiation stage, plants were subjected to three irrigation treatments: (1) both soil columns were fully irrigated (FI) daily to a volumetric soil water content (theta) of 18.0%; (2) PRD, in which one soil column was irrigated daily to 18.0% while the other was allowed to dry, and the irrigation was shifted between columns when the theta of the drying soil column had decreased to 7-8%; (3) non-irrigation (NI), where irrigation was withheld after onset of treatments and lasted for 5 days until theta had decreased to 7%. In the PRD plants, the fraction of soil water extraction (FSWE) by the dry roots declined exponentially with declining soil water potential (Psi(soil-dry)); however, after shifting of irrigation, the previously dried roots immediately recovered the full capacity of water uptake. During the first PRD drying cycle, FI plants had the highest stomatal conductance (g(s)), and followed by PRD plants and NI plants had the lowest g(s). Photosynthesis (A) was similar for FI and PRD plants, and was significantly lower for the NI plants only on 3-4 days after treatment. In the NI plants, a linear relationship between Psi(soil) and [X-ABA] was obtained. Based on these relationships, a simple model predicting [X-ABA] in the PRD plants ([X-ABA](PRD)) was developed. Assuming that a constant [X-ABA] of 115 nM (similar to that found in the FI plants) originated from the wet roots; the simulation results indicated that irrigation should be shifted between the two sides when Psi(soil-dry) had decreased to similar to-80 kPa, and [X-ABA](PRD) had reached a peak of ca. 150 nM. However, the [X-ABA](PRD) predicted by the model was significantly lower than the measured value; whilst a simple average of [X-ABA] from the wet and the dry soil columns based on the [X-ABA]-Psi(soil) relationship better predicted [X-ABA](PRD). (C) 2007 Elsevier B.V. All rights reserved.
机译:这项研究的目的是建立一个简单的机械模型来预测暴露于部分根区干燥(PRD)的马铃薯(Solanum tuberosum L.)的ABA信号([X-ABA])的大小。将马铃薯种植在温室中的花盆中,其根部在两根土壤柱之间平均分配。在块茎萌芽阶段,对植物进行三种灌溉处理:(1)每天将两根土壤柱全部灌溉(FI),使土壤含水量(theta)达到18.0%; (2)珠三角,其中一根土壤柱每天灌溉至18.0%,另一根土壤允许干燥,当干燥土壤柱的theta降至7-8%时,灌溉在各柱之间转移; (3)非灌溉(NI),在开始治疗后停止灌溉,持续5天,直到theta降至7%。在珠江三角洲的植物中,根部土壤水提取量(FSWE)随土壤水势的下降而呈指数下降(Psi(干土))。但是,在转移灌溉之后,先前干燥的根部立即恢复了全部的水分吸收能力。在第一个PRD干燥周期中,FI植物的气孔导度(g(s))最高,其次是PRD植物和NI植物的g(s)最低。 FI和PRD植物的光合作用(A)相似,而NI植物仅在处理后的3-4天显着降低。在NI植物中,获得了Psi(土壤)和[X-ABA]之间的线性关系。基于这些关系,开发了预测PRD植物中[X-ABA]([X-ABA](PRD))的简单模型。假设恒定的[X-ABA]为115 nM(类似于FI植物中发现的),是由湿根产生的;模拟结果表明,当Psi(干土)降低至接近-80 kPa,且[X-ABA](PRD)达到峰值时,灌溉应在两侧之间转移。 150 nM。然而,模型预测的[X-ABA](PRD)明显低于测量值。而根据[X-ABA] -Psi(土壤)关系从湿土和干土柱中得到的[X-ABA]的简单平均值可以更好地预测[X-ABA](PRD)。 (C)2007 Elsevier B.V.保留所有权利。

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