Müller R, Stummann B M, Serek M
Department of Agricultural Sciences, Horticulture, The Royal Veterinary and Agricultural University, Thorvaldsensvej 57, 1871 Frederiksberg C, Denmark e-mail:
Department of Ecology; Genetics and Microbiology, Royal Veterinary and Agricultural University, Thorvaldsensvej 40, 1871 Frederiksberg C, Denmark, , , , , , DK.
Plant Cell Rep. 2000 Dec;19(12):1232-1239. doi: 10.1007/s002990000251.
To analyze differences in flower longevity and ethylene sensitivity, we isolated Rosa hybrida gene fragments with sequence similarity to the Arabidopsis thaliana ethylene receptor gene-family. A rose gene (RhETR1) highly similar to AtERS1 had been previously sequenced. Here, we report the isolation of three additional partial rose genes (RhETR2-4) belonging to different sub-groups of ethylene receptor genes. RhETR2 clusters with AtETR1, RhETR4 with AtERS1 and RhETR1, whereas RhETR3 shows high sequence similarity to AtETR2 and AtERS2. Expression analysis of RhETR2 and RhETR3 revealed that they are differentially expressed. RhETR2 is expressed at a constitutive level throughout flower development whereas RhETR3 expression increases in senescing flowers of the cultivar Bronze which has a short floral life while it remains at low levels in the long-lasting flowers of the cultivar Vanilla. Expression of both genes was increased by ABA and ethylene treatment, but transcript abundance differed between rose cultivars with different postharvest performance. These results indicate that differences in flower life among rose cultivars could be due to differences in receptor levels.
为了分析花朵寿命和乙烯敏感性的差异,我们分离了与拟南芥乙烯受体基因家族具有序列相似性的杂交玫瑰基因片段。此前已对一个与AtERS1高度相似的玫瑰基因(RhETR1)进行了测序。在此,我们报告分离出另外三个属于乙烯受体基因不同亚组的部分玫瑰基因(RhETR2 - 4)。RhETR2与AtETR1聚类,RhETR4与AtERS1和RhETR1聚类,而RhETR3与AtETR2和AtERS2具有高度序列相似性。RhETR2和RhETR3的表达分析表明它们存在差异表达。RhETR2在整个花朵发育过程中以组成型水平表达,而RhETR3在具有较短花期的“青铜”品种衰老花朵中的表达增加,在具有较长花期的“香草”品种持久花朵中则保持在低水平。ABA和乙烯处理均增加了这两个基因的表达,但不同采后表现的玫瑰品种之间转录本丰度存在差异。这些结果表明,玫瑰品种间花朵寿命的差异可能归因于受体水平的差异。