首页> 外文期刊>Frontiers in Plant Science >Water-Deficit Tolerance in Sweet Potato [ Ipomoea batatas (L.) Lam.] by Foliar Application of Paclobutrazol: Role of Soluble Sugar and Free Proline
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Water-Deficit Tolerance in Sweet Potato [ Ipomoea batatas (L.) Lam.] by Foliar Application of Paclobutrazol: Role of Soluble Sugar and Free Proline

机译:红薯的水缺陷耐受性[ ipomoea batatas (L.)林]通过紫杉蛋白的裂缝应用:可溶性糖和游离脯氨酸的作用

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The objective of this study was to elevate water deficit tolerance by improving soluble sugar and free proline accumulation, photosynthetic pigment stabilization, photosynthetic abilities, growth performance and storage root yield in sweet potato cv. ‘Tainung 57’ using a foliar application of paclobutrazol (PBZ). The experiment followed a Completely Randomized Block Design with four concentrations of PBZ: 0 (control), 17, 34, and 51 μM before exposure to 47.5% (well irrigation), 32.3% (mild water deficit) or 17.5% (severe water deficit) soil water content. A sweet potato cultivar, ‘Japanese Yellow’, with water deficit tolerance attributes was the positive check in this study. Total soluble sugar content (sucrose, glucose, and fructose) increased by 3.96-folds in ‘Tainung 57’ plants treated with 34 μM PBZ grown under 32.3% soil water content (SWC) compared to the untreated plants, adjusting osmotic potential in the leaves and controlling stomatal closure (represented by stomatal conductance and transpiration rate). In addition, under the same treatment, free proline content (2.15 μmol g~(-1)FW) increased by 3.84-folds when exposed to 17.5% SWC. PBZ had an improved effect on leaf size, vine length, photosynthetic pigment stability, chlorophyll fluorescence, and net photosynthetic rate; hence, delaying wilting symptoms and maintaining storage root yield (26.93 g plant~(-1)) at the harvesting stage. A positive relationship between photon yield of PSII (Φ_(PSII)) and net photosynthetic rate was demonstrated ( r ~(2)= 0.73). The study concludes that soluble sugar and free proline enrichment in PBZ-pretreated plants may play a critical role as major osmoprotectant to control leaf osmotic potential and stomatal closure when plants were subjected to low soil water content, therefore, maintaining the physiological and morphological characters as well as storage root yield.
机译:本研究的目的是通过改善可溶性糖和游离脯氨酸积累,光合色素稳定,光合作用,光合作用能力,生长性能和储存根产量来提高水缺陷耐受性。 “Tainung 57”使用富紫杉醇(PBZ)的叶面施用。该实验遵循完全随机的嵌段设计,在暴露于47.5%(井灌)之前,具有四种浓度的PBZ:0(对照),17,34和51μm,32.3%(轻度水缺陷)或17.5%(严重水赤字)土壤含水量。红薯品种“日本黄色”,具有水缺陷耐受性的属性是本研究的正面检查。与未处理的植物相比,在32.3%的土壤含水量(SWC)下,在34μmPbz处理的“TainiNG 57”植物中,植物总溶解糖含量(蔗糖,葡萄糖和果糖)增加了3.96倍,调节叶片中的渗透潜力并控制气孔闭合(由气孔导度和蒸腾率表示)。另外,在相同的处理下,在暴露于17.5%的SWC时,自由脯氨酸含量(2.15μmolg〜(-1)fw增加3.84倍。 PBZ对叶子尺寸,藤蔓,光合色素稳定性,叶绿素荧光和净光合速​​率的影响有所改善;因此,在收获阶段延迟止血症状并维持储存根产率(26.93g植物〜(-1))。对PSII(φ_(PSII))的光子产量和净光合速​​率之间的阳性关系(R〜(2)= 0.73)。该研究的结论是,当植物经受低土壤含水量时,可溶于糖和自由植物在PBZ-预处理植物中的可溶性糖和游离脯氨酸富集在植物对植物含水含量降低时,可以发挥重要作用。以及储存根产量。

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