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首页> 外文期刊>Journal of Experimental Botany >Accounting for sap flow from different parts of the root system improves the prediction of xylem ABA concentration in plants grown with heterogeneous soil moisture.
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Accounting for sap flow from different parts of the root system improves the prediction of xylem ABA concentration in plants grown with heterogeneous soil moisture.

机译:考虑到来自根系不同部分的汁液流动,提高了对土壤水分异质生长的植物木质部ABA浓度的预测。

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摘要

When soil moisture is heterogeneous, sap flow from, and ABA status of, different parts of the root system impact on leaf xylem ABA concentration ([X-ABA]leaf). The robustness of a model for predicting [X-ABA]leaf was assessed. 'Two root-one shoot' grafted sunflower (Helianthus annuus L.) plants received either deficit irrigation (DI, each root system received the same irrigation volumes) or partial rootzone drying (PRD, only one root system was watered and the other dried the soil). Irrespective of whether relative sap flow was assessed using sap flow sensors in vivo or by pressurization of de-topped roots, each root system contributed similarly to total sap flow during DI, while sap flow from roots in drying soil declined linearly with soil water potential (.soil) during PRD. Although .soil of the irrigated pot determined the threshold .soil at which sap flow from roots in drying soil decreased, the slope of this decrease was independent of the wet pot .soil. Irrespective of whether sap was collected from the wet or dry root system of PRD plants, or a DI plant, root xylem ABA concentration increased as .soil declined. The model, which weighted ABA contributions of each root system according to the sap flow from each, almost perfectly explained [X-ABA] immediately above the graft union. That the model overestimated measured [X-ABA]leaf may result from changes in [X-ABA] along the transport pathway or an artefact of collecting xylem sap from detached leaves. The implications of declining sap flow through partially dry roots during PRD for the control of stomatal behaviour and irrigation scheduling are discussed.
机译:当土壤水分不均匀时,来自根系不同部位的汁液流和ABA状态会影响叶片木质部ABA的浓度([X-ABA]叶)。评估了预测[X-ABA]叶片的模型的鲁棒性。 '两根一芽'嫁接的向日葵(Helianthus annuus L.)植物接受亏缺灌溉(DI,每个根系接受相同的灌溉量)或部分根区干燥(PRD,仅一个根系被浇水,另一个干燥)泥)。不管是使用体内的树液流量传感器还是通过去根根的加压来评估相对的树液流量,DI期间每个根系对总树液流量的贡献相似,而干燥土壤中来自根部的树液流量与土壤水势呈线性下降关系( .soil)。尽管灌溉锅的土壤决定了从干燥土壤中的根部流出的汁液减少的阈值土壤,但这种下降的斜率与湿锅土壤无关。不管是否从PRD植物的湿根系或干根系或DI植物中采集汁液,土壤木质素ABA的浓度均随土壤减少而增加。该模型根据来自每个根部的液流加权每个根系的ABA贡献,几乎可以完美地解释[X-ABA]紧邻移植物结合处的上方。该模型高估了测得的[X-ABA]叶,可能是由于沿运输途径的[X-ABA]变化或从离体叶片中收集木质部汁液的伪影所致。讨论了在珠三角期间通过部分干燥的根流减少的汁液流动对控制气孔行为和灌溉计划的影响。

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