The physiological responses of potato (Solanum tuberosum L. cv. Folva) to partial root-zone drying (PRD) were investigated in potted plants in a greenhouse (GH) and in plants grown in the field under an automatic rain-out-shelter. In the GH, irrigation was applied daily to the whole root system (FI), or to one-half of the root system while the other half was dried, for 9 d. In the field, the plants were drip irrigated either to the whole root system near field capacity (FI) or using 70% water of FI to one side of the roots, and shifted to the other side every 5-10 d (PRD). PRD plants had a similar midday leaf water potential to that of FI, whereas in the GH their root water potential (Psi(r)) was significantly lowered after 5 d. Stomatal conductance (g(s)) was more sensitive to PRD than photosynthesis (A) particularly in the field, leading to greater intrinsic water use efficiency (WUE) (i.e. A/g(s)) in PRD than in FI plants on several days. In PRD, the xylem sap abscisic acid concentration ([ABA](xylem)) increased exponentially with decreasing Psi(r); and the relative [ABA](xylem) (PRD/FI) increased exponentially as the fraction of transpirable soil water (FTSW) in the drying side decreased. In the field, the leaf area index was slightly less in PRD than in FI treatment, while tuber biomass was similar for the two treatments. Compared with FI, PRD treatment saved 30% water and increased crop water use efficiency (WUE) by 59%. Restrictions on leaf area expansion and g(s) by PRD-induced ABA signals might have contributed to reduced water use and increased WUE.

译文

:在温室(GH)的盆栽植物和自动防雨棚田间种植的植物中,研究了马铃薯(Solanum tuberosum L. cv。Folva)对部分根区干燥(PRD)的生理响应。在GH中,每天对整个根系(FI)或一半的根系进行灌溉,而另一半干燥9 d。在田间,将植物滴灌至接近田间持水量(FI)的整个根系,或使用70%的FI水将其滴到根的一侧,然后每5-10 d(PRD)移至另一侧。珠三角植物的中午叶片水势与FI相似,而在GH中,其根系水势(Psi(r))在5天后显着降低。尤其是在田间,气孔电导(g(s))比光合作用(A)对PRD更敏感,因此在几个地方,PRD中的固有水分利用效率(WUE)(即A / g(s))比FI植物更大。天。在珠三角地区,木质部汁液中脱落酸的浓度([ABA](木质部))随着Psi(r)的降低呈指数增长。相对[ABA](木质部)(PRD / FI)随干旱侧可蒸发土壤水(FTSW)比例的减少呈指数增长。在田间,珠三角的叶面积指数略低于FI处理,而两种处理的块茎生物量相似。与FI相比,PRD处理节省了30%的水,并使作物水分利用效率(WUE)提高了59%。 PRD诱导的ABA信号对叶面积扩大和g(s)的限制可能有助于减少用水量和增加WUE。

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