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Visualization of water transport into soybean nodules by Tof-SIMS cryo system

机译:通过Tof-SIMS冷冻系统可视化水向大豆根瘤中的运移

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This paper examined the route of water supply into soybean nodules through the new visualization technique of time of flight secondary ion mass spectrometry (Tof-SIMS) cryo system, and obtained circumstantial evidence for the water inflow route. The maximum resolution of the Tof-SIMS imaging used by this study was 1.8 mu m (defined as the three pixel step length), which allowed us to detect water movement at the cellular level. Deuterium-labeled water was supplied to soybean plants for 4 h and the presence of deuterium in soybean nodules was analyzed by the Tof-SIMS cryo system. Deuterium ions were found only in the endodermis tissue surrounding the central cylinder in soybean nodules. Neither xylem vessels nor phloem complex itself did not indicate any deuterium accumulation. Deuterium-ion counts in the endodermis tissue were not changed by girdling treatment, which restricted water movement through the phloem complex. The results strongly indicated that nodule tissues did not receive water directly from the phloem complex, but received water through root cortex apoplastic pathway from the root axis. (C) 2015 Elsevier GmbH. All rights reserved.
机译:本文通过飞行时间二次离子质谱(Tof-SIMS)低温系统的可视化新技术,研究了向大豆根瘤中供水的途径,并获得了入水途径的环境证据。这项研究使用的Tof-SIMS成像的最大分辨率为1.8微米(定义为三个像素步长),这使我们能够检测细胞水平上的水运动。将氘标记的水供应到大豆植株中4 h,然后通过Tof-SIMS冷冻系统分析大豆根瘤中氘的存在。氘离子仅在大豆结节中央圆柱体周围的内胚层组织中发现。木质部血管和韧皮部复合体本身均未表明任何氘积累。环剥处理不会改变内胚层组织中的氘离子计数,这限制了水通过韧皮部复合体的运动。结果强烈表明,结节组织没有直接从韧皮部复合物中吸收水分,而是从根轴通过根皮层质外体途径吸收了水分。 (C)2015 Elsevier GmbH。版权所有。

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