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菠菜CAP160基因的特性及两种菠菜冷驯化蛋白在烟草中的表达

Characterization of a gene for spinach CAP160 and expression of two spinach cold-acclimation proteins in tobacco.

作者信息

Kaye C, Neven L, Hofig A, Li Q B, Haskell D, Guy C

机构信息

Plant Molecular and Cellular Biology Program, Department of Environmental Horticulture, University of Florida, Gainesville 32611-0670, USA.

出版信息

Plant Physiol. 1998 Apr;116(4):1367-77. doi: 10.1104/pp.116.4.1367.

Abstract

The cDNA sequence for CAP160, an acidic protein previously linked with cold acclimation in spinach (Spinacia oleracea L.), was characterized and found to encode a novel acidic protein of 780 amino acids having very limited homology to a pair of Arabidopsis thaliana stress-regulated proteins, rd29A and rd29B. The lack of similarity in the structural organization of the spinach and Arabidopsis genes highlights the absence of a high degree of conservation of this cold-stress gene across taxonomic boundaries. The protein has several unique motifs that may relate to its function during cold stress. Expression of the CAP160 mRNA was increased by low-temperature exposure and water stress in a manner consistent with a probable function during stresses that involve dehydration. The coding sequences for CAP160 and CAP85, another spinach cold-stress protein, were introduced into tobacco (Nicotiana tabacum) under the control of the 35S promoter using Agrobacterium tumefaciens-based transformation. Tobacco plants expressing the proteins individually or coexpressing both proteins were evaluated for relative freezing-stress tolerance. The killing temperature for 50% of the cells of the transgenic plants was not different from that of the wild-type plants. As determined by a more sensitive time/temperature kinetic study, plants expressing the spinach proteins had slightly lower levels of electrolyte leakage than wild-type plants, indicative of a small reduction of freezing-stress injury. Clearly, the heterologous expression of two cold-stress proteins had no profound influence on stress tolerance, a result that is consistent with the quantitative nature of cold-stress-tolerance traits.

摘要

CAP160是一种酸性蛋白,先前已发现其与菠菜(Spinacia oleracea L.)的冷驯化有关,对其cDNA序列进行了表征,发现它编码一种780个氨基酸的新型酸性蛋白,该蛋白与拟南芥的一对胁迫调节蛋白rd29A和rd29B的同源性非常有限。菠菜和拟南芥基因在结构组织上缺乏相似性,这突出表明这种冷胁迫基因在分类学界限上缺乏高度保守性。该蛋白有几个独特的基序,可能与其在冷胁迫期间的功能有关。CAP160 mRNA的表达通过低温暴露和水分胁迫而增加,其方式与在涉及脱水的胁迫期间的可能功能一致。利用基于根癌农杆菌的转化方法,在35S启动子的控制下,将CAP160和另一种菠菜冷胁迫蛋白CAP85的编码序列导入烟草(Nicotiana tabacum)。对单独表达这些蛋白或共表达这两种蛋白的烟草植株进行了相对冻害胁迫耐受性评估。转基因植株50%细胞的致死温度与野生型植株无异。通过更敏感的时间/温度动力学研究确定,表达菠菜蛋白的植株电解质渗漏水平略低于野生型植株,这表明冻害胁迫损伤略有减轻。显然,两种冷胁迫蛋白的异源表达对胁迫耐受性没有深远影响,这一结果与冷胁迫耐受性性状的数量性质一致。

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