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Visualization of Freezing Behaviors in Leaf and Flower Buds of Full-Moon Maple by Nuclear Magnetic Resonance Microscopy.

机译:核磁共振显微镜观察满月枫叶和花蕾中的冻结行为。

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摘要

1H-Nuclear magnetic resonance (NMR) microscopy was used to study the freezing behavior of wintering buds of full-moon maple (Acer japonicum Thunb.). The images obtained predominantly reflected the density of mobile (i.e. non-ice) protons from unfrozen water. A comparison of NMR images taken at different subfreezing temperatures revealed which tissues produced high- and low-temperature exotherms in differential thermal analyses. In leaf and lower buds of A. japonicum, the scales and stem bark tissues were already frozen by -7[deg]C, but the primordial inflorescence and terminal primordial shoots remained supercooled at -14[deg]C, and the lateral primordial shoots were unfrozen even at -21[deg]C. The freezing of these supercooled tissues was associated with their loss of viability. The size of the supercooled primordial shoots and inflorescences was gradually reduced with decreasing temperature, indicating extraorgan freezing in these tissues. During this process the formation of dark regions beneath the primordia and subsequent gradual darkening in the basal part of supercooled primordia were visible. As the lateral shoot primordia were cooled, the unfrozen area was considerably reduced. Since the lateral primordia remained viable down to -40[deg]C, with no detectable low-temperature exotherms, they probably underwent type I extraorgan freezing. Deep supercooling in the xylem was clearly imaged. NMR microscopy is a powerful tool for noninvasively visualizing harmonized freezing behaviors in complex plant organs.
机译:1 H-核磁共振(NMR)显微镜用于研究全月枫树(Acer japonicum Thunb。)越冬芽的冷冻行为。获得的图像主要反映了来自未冷冻水的可移动(即非冰)质子的密度。比较在不同的亚冰点温度下拍摄的NMR图像,可以发现在差异热分析中哪些组织产生了高温和低温放热。在A.japonicum的叶和下芽中,鳞片和茎皮组织已经在-7℃下冷冻,但是原始花序和原始原始芽在-14℃下仍然过冷,而外侧原始芽即使在-21℃也未冷冻。这些过冷的组织的冷冻与它们的生存能力降低有关。随着温度的降低,过冷的原始芽和花序的大小逐渐减小,表明这些组织中的器官发生了冻结。在此过程中,可以看到原基下方的深色区域的形成以及过冷的原基底部的逐渐变黑。当侧生芽原基被冷却时,未冻结的面积显着减小。由于外侧原基在低至-40℃仍保持活力,没有可检测到的低温放热,因此它们可能经历了I型器官外冷冻。清楚地看到了木质部中的深冷。 NMR显微镜是一种强大的工具,可用于无创地可视化复杂植物器官中的协调冷冻行为。

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