Bartolo M E, Carter J V
Department of Horticultural Science, University of Minnesota, St. Paul, Minnesota 55108.
Plant Physiol. 1991 Sep;97(1):175-81. doi: 10.1104/pp.97.1.175.
Responses of cortical microtubules in spinach (Spinacia oleracea L. cv Bloomsdale) mesophyll cells to freezing, thawing, supercooling, and dehydration were assessed. Microtubules were visualized using a modified procedure for indirect immunofluorescence microscopy. Leaf sections of nonacclimated and cold-acclimated spinach were slowly frozen to various temperatures, fixed while frozen, and microtubules immunolabelled. Both nonacclimated and cold-acclimated cells exhibited nearly complete microtubule depolymerization after ice formation. After 1 hour thawing at 23 degrees C, microtubules in both nonacclimated and cold-acclimated cells repolymerized. With time, however, microtubules in nonacclimated cells again depolymerized. Since microtubules in cells of leaf tissue frozen slowly are subjected to dehydration as well as subzero temperatures, these stresses were applied separately and their effects on microtubules noted. Supercooling induced microtubule depolymerization in both nonacclimated and cold-acclimated cells, but to a smaller extent than did freezing. Exposing leaf sections to solutions of sorbitol (a cell wall-penetrating osmoticum) or polyethylene glycol 10,000 (a nonpenetrating osmoticum) at room temperature caused microtubule depolymerization. The effects of low temperature and dehydration are roughly additive in producing the observed microtubule responses during freezing. Only small differences in microtubule stability were resolved between nonacclimated and cold-acclimated cells.
评估了菠菜(Spinacia oleracea L. cv Bloomsdale)叶肉细胞中皮层微管对冷冻、解冻、过冷和脱水的反应。使用改良的间接免疫荧光显微镜方法观察微管。将未驯化和冷驯化的菠菜叶片切片缓慢冷冻至不同温度,在冷冻状态下固定,然后对微管进行免疫标记。在结冰后,未驯化和冷驯化的细胞均表现出近乎完全的微管解聚。在23摄氏度解冻1小时后,未驯化和冷驯化细胞中的微管都重新聚合。然而,随着时间的推移,未驯化细胞中的微管再次解聚。由于缓慢冷冻的叶片组织细胞中的微管会受到脱水以及零下温度的影响,因此分别施加了这些胁迫,并记录了它们对微管的影响。过冷在未驯化和冷驯化细胞中均诱导微管解聚,但程度小于冷冻。在室温下将叶片切片暴露于山梨醇(一种可穿透细胞壁的渗透剂)或聚乙二醇10,000(一种不可穿透的渗透剂)溶液中会导致微管解聚。在冷冻过程中,低温和脱水对微管反应的影响大致是累加的。未驯化和冷驯化细胞之间微管稳定性的差异很小。