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Role of ABA Signaling in Regulation of Stem Sugar Metabolism and Transport under Post- Flowering Drought Stress in Sweet Sorghum

机译:ABA信令在甜高粱开花后干旱胁迫下茎糖代谢及运输调控中的作用

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Sugar remobilization from vegetative to reproductive tissues is an important process that determines grain yield in crops. Sweet sorghum stems store sugar and introgression of Stay green1 (Stg 1) locus from the grain sorghum genotype B35 into the sweet sorghum genotype S35 was previously shown to bring about a 2-fold higher stem sugar accumulation in the near-isogenic line (NIL) S35SG06040. We hypothesized that remobilization of stem sugar augments grain yield on exposure to drought stress and that the phytohormone abscisic acid (ABA) has a role to play in this process. ABA levels were three times higher in the NIL as compared to those in S35 on drought stress exposure. Remobilization of stem sugars in the NIL was evident by the observed decrease in reducing sugar content in the stem but not in the peduncle in response to prolonged drought stress exposure. Drought-induced expression of some ABA response factors (ABFs) as well as invertase and sucrose transporter genes was seen to be higher in the NIL as compared to S35. An over-representation of ABA-responsive elements (ABREs) and sugar signaling motifs in the differentially expressed genes indicated the involvement of ABA and sugar signaling in regulation of their expression. Two ABF genes located on the Stg1 locus showed single nucleotide polymorphism, which possibly accounted for their differential regulation in S35 and the NIL. The results suggest that ABA signaling plays an important role in post-flowering drought-induced remobilization of sugars to the reproductive sinks.
机译:从植物生殖组织中从植物中重新化是确定作物中谷物产量的重要过程。从谷物高粱基因型B35进入甜点高粱基因型S35中的甜高粱茎糖和旋转的血液1(STG 1)基因座,以至于近同位素(NIL)中的茎糖积聚大约2倍以下S35SG06040。我们假设对干旱胁迫暴露的暴露的籽粒产量的重新化,并且植物激素脱落酸(ABA)在该过程中发挥作用。与干旱胁迫暴露的S35相比,ABA水平较高三倍。通过观察到的降低在降低茎中的糖含量但不应延长的干旱压力暴露时,观察到的降低,在茎中的降低,酸性含量的重新化是显而易见的。与S35相比,含有一些ABA响应因子(ABF)和转化酶和蔗糖转运物基因的干旱诱导的表达和蔗糖转运蛋白基因较高。在差异表达基因中的ABA响应元件(ABRES)和糖信号传导基序的过度表示表明ABA和糖信号传导在其表达调节中的累积。位于STG1基因座上的两个ABF基因显示出单一的核苷酸多态性,其可能占S35和零的差分调节。结果表明,ABA信号传导在开花后干旱诱导对生殖水槽的糖的重新染色中起重要作用。

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