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Mechanism of Export of Organic Material from the Developing Fruits of Pea 1

机译:豌豆1的发育果实输出有机物质的机理

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摘要

Pisum sativum L. fruits export a small quantity of radiolabeled substances to other plant parts after the fruits are allowed to photosynthesize in the presence of 14CO2. Export was uninhibited by peduncle girdling suggesting an apoplastic route for transport of material, presumably by `reverse' flow in the peduncle xylem. To determine if any diurnal water potential gradient formed between pea leaves and fruit might be responsible for the observed export, the water potentials of the various organs were monitored over 24 hours. Water potential differences of up to 7.5 bars existed between leaves and fruit in long photoperiods, and up to 2.5 bars in short photoperiods. Pulses of 14CO2 labeling indicated that initial delivery of exported label was to `transpirational sinks,' with subsequent redistribution of label to metabolic sinks. Export to the apical bud appeared to be direct via the xylem. Application of membrane-impermeable inulin to a surgically opened seed coat `cup' resulted in export mainly to the subtending leaf with little redistribution. Simultaneous application of sucrose to the seed coat resulted in more extensive distribution of the sucrose, consistent with reloading of the sucrose into mature leaf phloem. Thus, export of material from fruits appears to occur via a xylem pathway in response to transpirationally derived water potential gradients.
机译:豌豆(Pisum sativum L.)果实在14CO2存在下允许光合作用后,将少量放射性标记的物质输出到其他植物部位。花序束环暗示着物料的质外途径,这可能是由于花梗木质部的“逆向”流动所致。为了确定豌豆叶和果实之间形成的昼夜水势梯度是否可能与观察到的出口有关,在24小时内监测了各个器官的水势。在长光周期中,叶片和果实之间的水势差高达7.5 bar,而在短光周期中,高达2.5 bar。 14CO2标记的脉冲表明,出口标签的最初传递是“蒸腾池”,随后将标签重新分布到代谢池。出口到顶芽似乎是通过木质部直接进行的。膜不透性菊粉在外科手术打开的种皮“杯”上的施用导致出口到主要是对向的叶片,几乎没有重新分布。同时将蔗糖施用到种皮上导致蔗糖更广泛的分布,这与将蔗糖重新装载到成熟叶韧皮部中是一致的。因此,响应蒸腾作用得出的水势梯度,似乎是通过木质部途径从水果中输出物质。

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