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首页> 外文期刊>Science in China. Series C, Life sciences >Exogenous ethylene influences flower opening of cut roses (Rosa hybrida) by regulating the genes encoding ethylene biosynthesis enzymes
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Exogenous ethylene influences flower opening of cut roses (Rosa hybrida) by regulating the genes encoding ethylene biosynthesis enzymes

机译:外源乙烯通过调节编码乙烯生物合成酶的基因来影响切花玫瑰(Rosa hybrida)的开花

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摘要

The purpose of this paper is to investigate the differential responses of flower opening to ethylene in two cut rose cultivars, 'Samantha', whose opening process is promoted, and 'Kardinal', whose opening process is inhibited by ethylene. Ethylene production and 1-aminocyclopropane-1-carboxylate (ACC) synthase and oxidase activities were determined first. After ethylene treatment, ethylene production, ACC synthase (ACS) and ACC oxidase (ACO) activities in petals increased and peaked at the earlier stage (stage 3) in 'Samantha', and they were much more dramatically enhanced and peaked at the later stage (stage 4) in 'Kardinal' than control during vasing. cDNA fragments of three Rh-ACSs and one Rh- ACO genes were cloned and designated as Rh-ACS1, Rh-ACS2, Rh-ACS3 and Rh-ACO1 respectively. Northern blotting analysis revealed that, among three genes of ACS, ethylene-in- duced expression patterns of Rh-ACS3 gene corresponded to ACS activity and ethylene production in both cultivars. A more dramatic accumulation of Rh-ACS3 mRNA was induced by ethylene in 'Kardinal' than that of 'Samantha'. As an ethylene action inhibitor, STS at concentration of 0.2 mmol/L generally inhibited the expression of Rh-ACSs and Rh-ACO in both cultivars, although it induced the expression of Rh-ACS3 transiently in 'Kardinal'. Our results suggests that 'Kardinal' is more sensitive to ethylene than 'Samantha'; and the changes of Rh-ACS3 expression caused by ethylene might be related to the acceleration of flower opening in 'Samantha' and the inhibition in 'Kardinal'. Additional results indicated that three Rh-ACSs genes were differentially associated with flower opening and senescence as well as wounding.
机译:本文的目的是研究两个切花月季品种“ Samantha”和“ Kardinal”的花开度对乙烯的差异响应,“ Samantha”的促花过程促进了乙烯的开放,而“ Kardinal”的促花过程受到乙烯的抑制。首先确定乙烯的产生和1-氨基环丙烷-1-羧酸(ACC)合酶和氧化酶的活性。乙烯处理后,花瓣中的乙烯生成,ACC合酶(ACS)和ACC氧化酶(ACO)活性在“ Samantha”的较早阶段(第3阶段)增加并达到峰值,而在随后的阶段则大大增强并达到峰值(第4阶段)在“发声”期间比在发声期间的控制要好。克隆了三个Rh-ACS和一个Rh-ACO基因的cDNA片段,分别命名为Rh-ACS1,Rh-ACS2,Rh-ACS3和Rh-ACO1。 Northern印迹分析表明,在三个ACS基因中,乙烯诱导的Rh-ACS3基因表达模式与两个品种的ACS活性和乙烯产量相对应。乙烯在“ Kardinal”中诱导的Rh-ACS3 mRNA积累比“ Samantha”更显着。作为乙烯作用抑制剂,浓度为0.2 mmol / L的STS通常抑制两个品种中Rh-ACSs和Rh-ACO的表达,尽管它会短暂诱导“ Kardinal”中Rh-ACS3的表达。我们的结果表明,“ Kardinal”对乙烯的敏感性要高于“ Samantha”。乙烯引起的Rh-ACS3表达的变化可能与Samantha花开放加速和Kardinal花抑制有关。另外的结果表明,三个Rh-ACSs基因与花的开放和衰老以及受伤有差异。

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