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Varied Expression of Senescence-Associated and Ethylene-Related Genes during Postharvest Storage of

机译:在采后储存过程中变化相关和乙烯相关基因的表达

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摘要

The genus Brassica comprises a highly diverse range of vegetable crops varying in morphology, harvestable crop product, and postharvest shelf-life that has arisen through domestication, artificial selection and plant breeding. Previous postharvest studies on the shelf-life of Brassica species has mainly focused on the variable rates of physiological changes including respiration and transpiration. Therefore, further understanding of the molecular basis of postharvest senescence in Brassica vegetables is needed to understand its progression in improving their postharvest shelf-life. The aim of this study was to better understand the trajectory of molecular responses in senescence-associated genes but not induced by ethylene and ethylene-induced genes towards altered postharvest storage conditions. After storage at different temperatures, the expression levels of the key senescence-associated genes (SAGs) and the ethylene biosynthesis, perception, and signaling genes were quantitatively analyzed in cabbage, broccoli and kale. The expression levels of these genes were tightly linked to storage temperature and phase of senescence. Expression of ORE15, SAG12, and NAC29 were continuously increased during the twelve days of postharvest storage at room temperature. Prolonged exposure of these three vegetables to cold temperature reduced the variation in the expression levels of ORE15 and SAG12, observed as mostly decreased which resulted in limiting senescence. The transcript levels of the ethylene receptor were also decreased at lower temperature, further suggesting that decreased ethylene biosynthesis and signaling in cabbage during postharvest storage would delay the senescence mechanism. These results enhanced our understanding of the transcriptional changes in ethylene-independent SAGs and ethylene-related genes in postharvest senescence, as well as the timing and temperature sensitive molecular events associated with senescence in cabbage, broccoli and kale and this knowledge can potentially be used for the improvement of postharvest storage in Brassica vegetables.
机译:Grassica Grassica包含一种高度多样化的蔬菜作物,随着形态,可收购的作物产品和采后保质期而变化,通过驯化,人工选择和植物育种产生。先前对芸苔属物种的保质期的采访研究主要集中在包括呼吸和蒸腾的生理变化的可变率。因此,需要进一步了解甘蓝型蔬菜中采后衰老的分子基础,以了解其进展改善其采后保存人寿。本研究的目的是更好地了解衰老相关基因中的分子反应的轨迹,但未通过乙烯和乙烯诱导的基因诱导改变的去除汽油储存条件。在不同温度下储存后,在白菜,西兰花和羽衣甘蓝中定量分析关键衰老相关基因(凹凸)和乙烯生物合成,感知和信号传导基因的表达水平。这些基因的表达水平与衰老和衰老的储存温度和阶段紧密相关。在室温下的前期采后储存的12天内,ORE15,SAG12和NAC29的表达在室温下连续增加。这三种蔬菜的长时间暴露于寒冷的温度降低了矿石15和SAG12的表达水平的变化,观察到大多数降低,导致衰老。在较低温度下,乙烯受体的转录物水平也降低,进一步表明在前后储存期间,卷心菜中的乙烯生物合成和信号传导将延迟衰老机制。这些结果提高了我们对采后衰老的乙烯 - 无关的凹凸和乙烯相关基因的转录变化的理解,以及卷心菜,西兰花和羽衣甘蓝衰老相关的时序和温度敏感分子事件,并且可能会用于甘蓝型蔬菜采后贮藏的改善。

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