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Freeze-Induced Membrane Ultrastructural Alterations in Rye (Secale cereale) Leaves.

机译:黑麦(黑麦)叶片中的冷冻诱导膜超微结构改变。

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摘要

Freezing injury in protoplasts isolated from leaves of nonaccli-mated rye (Secale cereale cv Puma) is associated with the formation of the inverted hexagonal (HII) phase. However, in protoplasts from cold-acclimated rye, injury is associated with the occurrence of localized deviations in the fracture plane, a lesion referred to as the "fracture-jump lesion." To establish that these ultrastructural consequences of freezing are not unique to protoplasts, we have examined the manifestations of freezing injury in leaves of non-acclimated and cold-acclimated rye by freeze-fracture electron microscopy. At -10[deg]C, injury in nonacclimated leaves was manifested by the appearance of aparticulate domains in the plasma membrane, aparticulate lamellae subtending the plasma membrane, and by the frequent occurrence of the HII phase. The HII phase was not observed in leaves of cold-acclimated rye frozen to -35[deg]C. Rather, injury was associated with the occurrence of the fracture-jump lesion between the plasma membrane and closely appressed cytoplasmic membranes. Studies of the time dependence of HII phase formation in nonacclimated leaves indicated that freeze-induced dehydration requires longer times in leaves than in isolated protoplasts. These results demonstrate that the freeze-induced formation of the HII phase in nonacclimated rye and the fracture-jump lesion in cold-acclimated rye are not unique to protoplasts but also occur in the leaves from which the protoplasts are isolated.
机译:从未定型黑麦(Secale graine cv Puma)的叶片中分离出的原生质体中的冻害与倒六角相(HII)相的形成有关。然而,在来自冷适应的黑麦的原生质体中,损伤与骨折平面中局部偏斜的发生有关,该损伤称为“断裂跳跃损伤”。为了确定冷冻的这些超微结构后果不是原生质体所独有的,我们通过冷冻断裂电子显微镜检查了非适应性黑麦和冷适应性黑麦叶片的冻害表现。在-10℃下,通过在质膜上出现细小区域,在质膜上细小的薄片以及频繁发生的HII相,表明未适应的叶片受到了伤害。在冷冻至-35℃的冷驯化黑麦叶片中未观察到HII相。相反,损伤与质膜和紧密贴合的细胞质膜之间的骨折跳跃病变的发生有关。对未适应的叶片中HII相形成的时间依赖性的研究表明,与分离的原生质体相比,冷冻诱导的脱水在叶片中需要更长的时间。这些结果表明,在非适应性黑麦中HII相的冷冻诱导形成和在非适应性黑麦中的断裂跳跃损伤不是原生质体所独有的,而且还存在于分离原生质体的叶片中。

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