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Extracellular freezing in leaves of freezing-sensitive species

机译:冷冻敏感物种叶片中的细胞外冷冻

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Low-temperature scanning-electron microscopy was used to study the freezing of leaves of five species that have no resistance to freezing: bean (Phaseolus vulgaris L.), tobacco (Nicotiana tabacum L.), tomato (Lycopersicon esculentum L.), cucumber (Cucumis sativus L.), and corn (Zea mays L.). In the leaves of the four dicotyledonous species, ice was extracellular and the cells of all tissues were collapsed. In contrast, in maize leaves ice was extracellular in the mesophyll, and these cells were collapsed, but the epidermal and bundle-sheath cells apparently retained their original shapes and volume. It is concluded that the leaves of the freezing-sensitive dicotyledonous species tested were killed by cellular dehydration induced by extracellular freezing, and not by intracellular freezing. Freezing injury in maize leaves apparently resulted from a combination of freezing-induced cellular dehydration of some cells and intracellular ice formation in epidermal and bundle-sheath cells.
机译:低温扫描电子显微镜用于研究对冷冻无抵抗力的五种植物的叶片的冷冻:豆类(菜豆),烟草(烟草),番茄(番茄),黄瓜(Cucumis sativus L.)和玉米(Zea mays L.)。在这四个双子叶植物物种的叶子中,冰在细胞外,所有组织的细胞都崩溃了。相反,在玉米叶片中,冰在叶肉中位于细胞外,这些细胞被破坏,但表皮和束鞘细胞显然保留了其原始形状和体积。结论是测试的对冷冻敏感的双子叶植物物种的叶片被细胞外冷冻诱导的细胞脱水杀死,而不是被细胞内冷冻杀死。玉米叶片的冻害显然是由于冷冻诱导的某些细胞的细胞脱水和表皮和束鞘细胞中细胞内冰的形成的结合。

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