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首页> 外文期刊>Plant Molecular Biology >Depletion of abscisic acid levels in roots of flooded Carrizo citrange (Poncirus trifoliata L. Raf. x Citrus sinensis L. Osb.) plants is a stress-specific response associated to the differential expression of PYR/PYL/RCAR receptors
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Depletion of abscisic acid levels in roots of flooded Carrizo citrange (Poncirus trifoliata L. Raf. x Citrus sinensis L. Osb.) plants is a stress-specific response associated to the differential expression of PYR/PYL/RCAR receptors

机译:淹水康罗克里斯植物根系中的脱落酸水平(Poncirus Trifoliata L. Raf. x柑橘Sinensis L.SB。)植物是与Pyr / Pyl / RCAR受体的差异表达相关的应激特异性响应

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Soil flooding reduces root abscisic acid (ABA) levels in citrus, conversely to what happens under drought. Despite this reduction, microarray analyses suggested the existence of a residual ABA signaling in roots of flooded Carrizo citrange seedlings. The comparison of ABA metabolism and signaling in roots of flooded and water stressed plants of Carrizo citrange revealed that the hormone depletion was linked to the upregulation of CsAOG, involved in ABA glycosyl ester (ABAGE) synthesis, and to a moderate induction of catabolism (CsCYP707A, an ABA 8'-hydroxylase) and buildup of dehydrophaseic acid (DPA). Drought strongly induced both ABA biosynthesis and catabolism (CsNCED1, 9-cis-neoxanthin epoxycarotenoid dioxygenase 1, and CsCYP707A) rendering a significant hormone accumulation. In roots of flooded plants, restoration of control ABA levels after stress release was associated to the upregulation of CsBGLU18 (an ABA beta-glycosidase) that cleaves ABAGE. Transcriptional profile of ABA receptor genes revealed a different induction in response to soil flooding (CsPYL5) or drought (CsPYL8). These two receptor genes along with CsPYL1 were cloned and expressed in a heterologous system. Recombinant CsPYL5 inhibited Delta NHAB1 activity in vitro at lower ABA concentrations than CsPYL8 or CsPYL1, suggesting its better performance under soil flooding conditions. Both stress conditions induced ABA-responsive genes CsABI5 and CsDREB2A similarly, suggesting the occurrence of ABA signaling in roots of flooded citrus seedlings. The impact of reduced ABA levels in flooded roots on CsPYL5 expression along with its higher hormone affinity reinforce the role of this ABA receptor under soil-flooding conditions and explain the expression of certain ABA-responsive genes.
机译:土壤淹水降低了柑橘根系脱落酸(ABA)水平,与干旱情况相反。尽管这种减少,微阵列分析表明,在被水淹没的柠檬黄幼苗的根中存在残留的ABA信号。对淹水和水分胁迫下的柠檬橙植物根系中ABA代谢和信号转导的比较表明,激素缺失与CsAOG的上调有关,CsAOG参与ABA糖基酯(ABAGE)的合成,并适度诱导分解代谢(CsCYP707A,ABA 8'-羟化酶)和脱氢丙酸(DPA)的积累。干旱强烈诱导ABA生物合成和分解代谢(CsNCED1、9-顺式-新黄嘌呤-环氧类胡萝卜素双加氧酶1和CsCYP707A),导致激素大量积累。在水淹植物的根系中,胁迫释放后对照ABA水平的恢复与切割ABA的CsBGLU18(一种ABAβ糖苷酶)的上调有关。ABA受体基因的转录谱显示,土壤淹水(CsPYL5)或干旱(CsPYL8)对ABA受体基因有不同的诱导作用。这两个受体基因以及CsPYL1被克隆并在异源系统中表达。重组CsPYL5在体外以低于CsPYL8或CsPYL1的ABA浓度抑制δNHAB1活性,表明其在土壤淹水条件下表现更好。这两种胁迫条件都诱导了ABA响应基因CsABI5和CsDREB2A,这表明ABA信号在淹水柑橘幼苗的根中发生。淹水根中ABA水平降低对CsPYL5表达的影响及其较高的激素亲和力加强了这种ABA受体在土壤淹水条件下的作用,并解释了某些ABA响应基因的表达。

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