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首页> 外文期刊>Cell biology international. >Cytoskeleton-induced alterations of the lectin activity in winter wheat under cold hardening and abscisic acid (ABA).
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Cytoskeleton-induced alterations of the lectin activity in winter wheat under cold hardening and abscisic acid (ABA).

机译:冷硬化和脱落酸(ABA)作用下细胞骨架诱导的冬小麦凝集素活性变化。

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The roots and leaves of 7-day seedlings of three winter wheat cultivars differing in frost resistant were used to study changes in lectin activity under cytoskeleton modifiers (DMSO-7%; colchicine-1 m m; oryzalin-15 microm; cytochalasin B-15 microm) of non-hardened (23 degrees C) and hardened (2-3 degrees C, 3-7 day) plants. Plants were grown with ABA (30 microm) or without ABA. Pretreatment with colchicine, oryzalin [inhibitors of microtubules (MT) polymerization], cytochalasin B [inhibitor of microfilament (MF) polymerization] increased the activity of cell wall lectins, although pretreatment with DMSO (stabilizer of microtubules) decreased the activity. Both hardening and ABA decreased the effect of the cytoskeletal modifiers. These results could be explained by the appearance of tolerant MTs with less affinity. It is probable that increase in the activity of cell wall lectins may be the compensatory mechanism which stabilizes the cytoskeleton structure in conditions tending to disrupt it. The genotype with low resistance had higher sensitivity of lectin activity to cytoskeleton modifiers than the frost resistant genotype. The results suggest that leaves have more stable MTs and MFs and stronger MT-MF binding than roots. Copyright 2000 Academic Press.
机译:使用三个抗冻性不同的冬小麦品种的7天幼苗的根和叶,研究细胞骨架修饰剂(DMSO-7%;秋水仙碱-1 mm;稻草素-15 microm;细胞松弛素B-15 microm)下凝集素活性的变化。 )非硬化(23摄氏度)和硬化(2-3摄氏度,3-7天)植物。使植物与ABA(30微米)或不与ABA一起生长。秋水仙碱,谷维素[微管(MT)的抑制剂],细胞松弛素B [微丝(MF)的抑制剂]预处理增加了细胞壁凝集素的活性,尽管用DMSO(微管的稳定剂)预处理降低了细胞壁凝集素的活性。硬化和ABA均可降低细胞骨架修饰剂的作用。这些结果可以通过亲和力较小的耐受性MT的出现来解释。细胞壁凝集素活性的增加可能是在倾向于破坏细胞骨架结构的条件下稳定细胞骨架结构的补偿机制。具有低抗性的基因型比抗冻性基因型对植物骨架调节剂的凝集素活性敏感性更高。结果表明,叶片比根部具有更稳定的MT和MF,以及更强的MT-MF结合力。版权所有2000学术出版社。

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