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在基因表达、激素组成和抗冻性水平上,去分化大麦细胞的冷响应:愈伤组织培养研究。

Cold response of dedifferentiated barley cells at the gene expression, hormone composition, and freezing tolerance levels: studies on callus cultures.

机构信息

Department of Plant Molecular Biology, Hungarian Academy of Sciences, Brunszvik u. 2, Hungary.

出版信息

Mol Biotechnol. 2013 Jun;54(2):337-49. doi: 10.1007/s12033-012-9569-9.

Abstract

In this study, data is presented how dark-grown, embryogenic barley callus cells respond to cold without any light-dependent, chloroplast-related mechanism, independently of the systemic signals. The expression of HvCBF9, HvCBF14, and HvCOR14b genes, members of one of the most important cold-inducible regulatory system, was measured by real-time PCR. Characteristic of the cold response was similar in the crowns of seedlings and in dark-grown callus cultures, however, gene expression levels were lower in calli. Endogenous concentration of auxins, abscisic acid, and salicylic acid did not change, but phaseic acid and neophaseic acid showed robust accumulation after cold acclimation. Freezing tolerance of the cultures was also higher after 7 days of cold-hardening. The results suggest the presence of a basal, light-independent, cold-responsive activation of the CBF-COR14b pathway in barley cultures. The effects of Dicamba, the exogenous auxin analog used for maintaining tissue cultures were also studied. Dicamba seems to be a general enhancer of the gene expression and physiological responses to cold stress, but has no specific effect on the activation. Our data along with previous findings show that this system might be a suitable model for studying certain basic cellular mechanisms involved in the cold acclimation process in cereals.

摘要

在这项研究中,展示了黑暗生长的胚性大麦愈伤组织细胞在没有任何依赖光的、与叶绿体相关的机制的情况下,独立于系统信号对寒冷的反应。通过实时 PCR 测量了属于最重要的冷诱导调节系统之一的 HvCBF9、HvCBF14 和 HvCOR14b 基因的表达。在幼苗的冠部和黑暗生长的愈伤组织培养物中,冷反应的特征相似,但在愈伤组织中基因表达水平较低。内源生长素、脱落酸和水杨酸的浓度没有变化,但在冷驯化后,相位酸和新相位酸表现出强烈的积累。经过 7 天的耐寒处理后,培养物的抗冻能力也更高。研究结果表明,在大麦培养物中存在一种基础的、不依赖光的、冷响应的 CBF-COR14b 途径的激活。还研究了 Dicamba(用于维持组织培养的外源生长素类似物)的作用。Dicamba 似乎是增强基因表达和对冷应激生理反应的通用增强剂,但对激活没有特异性影响。我们的数据以及以前的研究结果表明,该系统可能是研究谷物冷驯化过程中某些基本细胞机制的合适模型。

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