Rapid stalk elongation in tulip (Tulipa gesneriana L. cv. Apeldoorn) and the combined action of cold-induced invertase and the water-channel protein γTIP

被引:56
|
作者
Balk, PA
de Boer, AD
机构
[1] DLO, Agrotechnol Res Inst, Dept Mol Regulat & Plant Qual, NL-6700 AA Wageningen, Netherlands
[2] Genetwister Technol BV, NL-6700 AD Wageningen, Netherlands
关键词
cold-induced gene expression; elongation; invertase; sucrose synthase; tonoplast intrinsic protein; Tulipa;
D O I
10.1007/s004250050642
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Many bulbous plants need a low-temperature treatment for flowering. Cold, for example, affects the elongation of the stalk, thereby influencing the quality of the cut flower. How the elongation of the stalk is promoted by cold and which physiological and biochemical mechanisms are involved have remained obscure. As in invertase has been shown to be involved in the cold-induced elongation of the flower stalks of tulips (Lambrechts et al., 1994, Plant Physiol 104: 515-520), we further characterized this enzyme by cloning the cDNA and analysing its expression in various tissues of the tulip (Tulipa gesneriana L. cv. Apeldoorn) stalk. In addition, the role of sucrose synthase was investigated. Since turgor pressure is an important force driving cell elongation, the role of a water-channel protein (gamma TIP) was studied in relation to these two enzymes. The mRNA level of the invertase found was substantially upregulated as a result of cold treatment. Analysis of the amino acid sequence of this invertase revealed the presence of a vacuolar targeting signal. Two different forms of sucrose synthase were found, the expression of one of them appeared to be restricted to the vascular tissue while the other form was present in the surrounding tissue. Both sucrose synthases were present in the stalk during the entire period of bulb storage and after planting, but their activities declined during stalk elongation. The expression of the gamma TIP gene was restricted mainly to the vascular tissue and its expression profile was identical to that of invertase. Simultaneous expression of invertase and gamma TIP possibly leads to an increase in osmotic potential and vacuolar water uptake, thus providing a driving force for stretching the stalk cells.
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页码:346 / 354
页数:9
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