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X-ray phase contrast imaging of Vitis spp. buds shows freezing pattern and correlation between volume and cold hardiness

机译:葡萄属的X射线相衬成像。芽显示出冻结模式以及数量与耐寒性之间的关系

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摘要

Grapevine (Vitis spp.) buds must survive winter temperatures in order to resume growth when suitable conditions return in spring. They do so by developing cold hardiness through deep supercooling, but the mechanistic process of supercooling in buds remains largely unknown. Here we use synchrotron X-ray phase contrast imaging to study cold hardiness-related characteristics of V. amurensis, V. riparia, and V. vinifera buds: time-resolved 2D imaging was used to visualize freezing; and microtomography was used to evaluate morphological changes during deacclimation. Bud cold hardiness was determined (low temperature exotherms; LTEs) using needle thermocouples during 2D imaging as buds were cooled with a N2 gas cryostream. Resolution in 2D imaging did not allow for ice crystal identification, but freezing was assessed by movement of tissues coinciding with LTE values. Freezing was observed to propagate from the center of the bud toward the outer bud scales. The freezing events observed lasted several minutes. Additionally, loss of supercooling ability appears to be correlated with increases in bud tissue volume during the process of deacclimation, but major increases in volume occur after most of the supercooling ability is lost, suggesting growth resumption processes are limited by deacclimation state.
机译:葡萄(葡萄)的芽必须在冬天的温度下生存,以便在春季合适的条件下恢复生长。他们通过深冷过冷来增强其抗寒性,但是芽中过冷的机理尚不清楚。在这里,我们使用同步加速器X射线相衬成像技术来研究V. amurensis,V。riparia和V. vinifera芽的耐寒性相关特征:使用时间分辨2D成像技术来观察冷冻。显微照相术用于评估去适应过程中的形态变化。当芽用N2气体低温流冷却时,在2D成像期间使用针式热电偶确定芽的抗寒性(低温放热; LTE)。 2D成像的分辨率无法识别冰晶,但是通过与LTE值一致的组织运动来评估冻结。观察到冻结从芽的中心向外部的芽鳞蔓延。观察到的冻结事件持续了几分钟。另外,过冷能力的丧失似乎与去驯化过程中芽组织体积的增加有关,但是在大部分过冷能力丧失之后,体积的主要增加发生了,这表明生长恢复过程受到去驯化状态的限制。

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