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首页> 外文期刊>Postharvest Biology and Technology >Characterization of ethylene-induced organ abscission in F1 breeding lines of miniature roses (Rosa hybrida L.).
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Characterization of ethylene-induced organ abscission in F1 breeding lines of miniature roses (Rosa hybrida L.).

机译:微型玫瑰( Rosa hybrida L.)F1育种系中乙烯诱导的器官脱落的特征。

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摘要

Miniature potted roses are sensitive to ethylene and respond to it by bud and leaf abscission, leaf yellowing and/or flower senescence. The goal of this study was to develop a selection strategy for characterization of ethylene sensitivity in rose breeding lines. Two hundred and thirty-three F1 genotypes were obtained from a reciprocal crossing of 'Lavender' and 'Vanilla' cultivars, and evaluated in response to ethylene treatment. Based on ethylene-induced organ abscission, low- and high-sensitive genotypes were selected for physiological and molecular studies compared with the parent plants. After 1 week of ethylene treatment, leaf chroma values and chlorophyll degradation were increased in high-sensitive genotypes, much more than in low-sensitive genotypes. However, after 2 weeks of ethylene treatment, low-sensitive genotypes showed no difference in chroma values, but chlorophyll contents decreased in two out of three genotypes. Expression of ethylene receptor genes (RhETR1/3) and signal transduction genes (RhCTR1/2) was not correlated with ethylene sensitivity of the investigated genotypes. The relative expression of laccase (RhLAC) was evaluated with respect to the relationships of lignin deposition and abscission. Ethylene-induced expression of RhLAC in high-sensitive genotypes increased more strongly than in low-sensitive genotypes. The lowest level of RhLAC transcript was accumulated in pedicels of genotypes that showed the lowest bud abscission. Enhanced expression of the laccase gene by ethylene may be related to the abscission process.
机译:微型盆栽玫瑰对乙烯敏感,并通过芽和叶的脱落,叶黄化和/或花衰老来响应。这项研究的目的是开发一种表征玫瑰育种系中乙烯敏感性的选择策略。从“薰衣草”和“香草”两个品种的相互杂交中获得了233个F1基因型,并对其乙烯处理的反应进行了评估。基于乙烯诱导的器官脱落,与亲本植物相比,选择了低敏感性和高敏感性基因型进行生理和分子研究。乙烯处理1周后,高敏感性基因型的叶片色度值和叶绿素降解增加,而低敏感性基因型的则更大。但是,经过乙烯处理2周后,低敏感性基因型的色度值没有差异,但是三种基因型中有两种基因的叶绿素含量下降。乙烯受体基因( RhETR1 / 3 )和信号转导基因( RhCTR1 / 2 )的表达与所研究基因型的乙烯敏感性无关。相对于木质素沉积和脱落的关系,评估了漆酶( RhLAC )的相对表达。乙烯诱导的 RhLAC 在高敏感性基因型中的表达比在低敏感性基因型中的表达更强烈。最低水平的 RhLAC 转录物积累在芽型脱落最低的基因型花梗中。乙烯增强漆酶基因的表达可能与脱落过程有关。

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