首页> 外文OA文献 >Petal abscission in rose is associated with the differential expression of two ethylene-responsive xyloglucan endotransglucosylase/hydrolase genes, RbXTH1 and RbXTH2
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Petal abscission in rose is associated with the differential expression of two ethylene-responsive xyloglucan endotransglucosylase/hydrolase genes, RbXTH1 and RbXTH2

机译:玫瑰中的花瓣脱落与两个乙烯反应性木葡聚糖内切葡糖苷酶/水解酶基因RbXTH1和RbXTH2的差异表达有关

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摘要

Abscission is a process that involves shedding of plant organs from the main plant body. In this study it is shown that the process of petal separation in the fragrant rose, Rosa bourboniana, is accompanied by the expression of two xyloglucan endotransglucosylase/hydrolase genes, RbXTH1 and RbXTH2. The sequences of the two genes show 52% amino acid identity but are conserved at the catalytic site. The genes are up-regulated soon after the initiation of the abscission process and their transcription is associated with the progression of abscission, being faster in ethylene-treated flowers but slower during field abscission. Transcription is ethylene responsive, with the ethylene response being tissue-specific for RbXTH1 but largely tissue-independent for RbXTH2. Expression is correlated with an increase in xyloglucan endotransglucosylase (XET) action in petal abscission zones of both ethylene-treated and field abscising flowers. Proximal promoters of both the genes drive β-glucuronidase expression in an ethylene-responsive and abscission-related manner in agrobacteria-infiltrated rose petals, indicating that cis-elements governing ethylene-responsive and abscission-related expression probably lie within the first 700 nucleotides upstream of the translational initiation codon. The results show that cell wall remodelling of the xyloglucan moieties through the XET action of XTHs may be important for cell separation during abscission.
机译:脱落是一个过程,涉及从植物主体中脱落植物器官。在这项研究中表明,香玫瑰蔷薇花的花瓣分离过程伴随着两个木葡聚糖内切葡糖苷酶/水解酶基因RbXTH1和RbXTH2的表达。这两个基因的序列显示出52%的氨基酸同一性,但在催化位点保守。这些基因在脱落过程开始后不久就被上调,它们的转录与脱落过程有关,在乙烯处理过的花中更快,而在田间脱落过程中则更慢。转录是乙烯响应的,乙烯响应是RbXTH1的组织特异性,但很大程度上是RbXTH2的组织独立性。表达与乙烯处理的和野外脱落的花的花瓣脱落区中的木葡聚糖内转葡糖基化酶(XET)作用的增加相关。这两个基因的近端启动子在农杆菌浸润的玫瑰花瓣中以乙烯响应和脱落相关的方式驱动β-葡萄糖醛酸苷酶的表达,表明控制乙烯响应和脱落相关表达的顺式元件可能位于上游的前700个核苷酸内翻译起始密码子。结果表明,通过XTH的XET作用,木葡聚糖部分的细胞壁重塑对于脱落期间的细胞分离可能很重要。

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