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首页> 外文期刊>Functional Plant Biology >Gradients in stomatal conductance, xylem sap ABA and bulk leaf ABA along canes of Vitis vinifera cv. Shiraz: molecular and physiological studies investigating their source
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Gradients in stomatal conductance, xylem sap ABA and bulk leaf ABA along canes of Vitis vinifera cv. Shiraz: molecular and physiological studies investigating their source

机译:葡萄藤茎上气孔导度,木质部汁液ABA和散叶ABA的梯度。设拉子:分子和生理学研究其来源

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摘要

Gradients were observed in xylem sap ABA and in stomatal conductance along canes of Vitis vinifera L. cv. Shiraz. To investigate the source of the ABA responsible for these gradients a series of girdling and decapitation experiments were carried out. Leaf stomatal conductance and bulk ABA of leaves and apices were measured in control plants and in response to apex removal or girdling. Gradients in leaf ABA were observed over the first eight expanded leaves of field-grown Shiraz, with higher concentrations of ABA observed towards the apex. Gradients in stomatal conductance that correlated negatively with the concentration of ABA in the leaf ([ABA](leaf)) were also observed over the first eight leaves. No significant effect of decapitation was observed on either leaf ABA or stomatal conductance except for the leaf immediately below the apex where a transient increase in [ABA](leaf) was observed after 24 h with no corresponding decrease in conductance. Girdling resulted in an increase in [ABA](leaf) in leaves distal to the girdle without the corresponding effect on conductance. These effects were further studied at the level of gene activity. To facilitate this, gene sequences encoding two key enzymes involved in the biosynthetic pathway of ABA in grape, zeaxanthin epoxidase (Zep) and 9-cis-epoxycarotenoid dioxygenase (NCED), were isolated and characterised. The cDNA sequences were used as probes to measure the abundances of their respective mRNAs in the leaf and apical material. Levels of expression of one of the two genes encoding NCED, VvNCED1, reflected the gradients in [ABA](leaf) in control vines, however treatment-induced changes in ABA were not always associated with corresponding changes in VvNCED1 expression. The abundances of both the VvNCED2 mRNA and Zep mRNA increased with increasing leaf age and did not appear to be associated with either the [ABA](leaf) or the expression of VvNCED1.
机译:观察到沿木质部汁液ABA和沿Vitis vinifera L. cv的甘蔗的气孔导度存在梯度。设拉子为了研究造成这些梯度的ABA的来源,进行了一系列的环绕和断头实验。在对照植物中以及响应于去除顶点或环剥后,测量了叶片和顶点的叶片气孔导度和大量ABA。在田间生长的设拉子(Shiraz)的前八张扩展叶片上观察到叶片ABA的梯度,其中向顶端的ABA浓度更高。在前八片叶片中还观察到气孔导度与叶片中ABA浓度([ABA](叶))呈负相关的梯度。除在顶端以下的叶片外,未观察到断头对叶片ABA或气孔导度的显着影响,在24 h后观察到[ABA](叶)瞬时增加,而电导率没有相应降低。环剥使腰带远端叶片中的[ABA](叶)增加,而对电导没有相应的影响。在基因活性水平上进一步研究了这些作用。为了促进这一点,分离并鉴定了编码与葡萄中ABA的生物合成途径有关的两种关键酶的玉米蛋白,玉米黄质环氧酶(Zep)和9-顺式-环氧类胡萝卜素双加氧酶(NCED)。 cDNA序列用作探针以测量其各自的mRNA在叶和顶端材料中的丰度。编码NCED的两个基因之一VvNCED1的表达水平反映了对照藤本植物[ABA](叶)中的梯度,但是,由治疗引起的ABA变化并不总是与VvNCED1表达的相应变化相关。 VvNCED2 mRNA和Zep mRNA的丰度都随着叶龄的增加而增加,并且似乎与[ABA](叶)或VvNCED1的表达均无关。

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