首页> 美国卫生研究院文献>Journal of Experimental Botany >A specific group of genes respond to cold dehydration stress in cut Alstroemeria flowers whereas ambient dehydration stress accelerates developmental senescence expression patterns
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A specific group of genes respond to cold dehydration stress in cut Alstroemeria flowers whereas ambient dehydration stress accelerates developmental senescence expression patterns

机译:特定的一组基因对切出的六出花中的冷脱水压力有反应而环境脱水压力则加速了发育的衰老表达模式

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摘要

Petal development and senescence entails a normally irreversible process. It starts with petal expansion and pigment production, and ends with nutrient remobilization and ultimately cell death. In many species this is accompanied by petal abscission. Post-harvest stress is an important factor in limiting petal longevity in cut flowers and accelerates some of the processes of senescence such as petal wilting and abscission. However, some of the effects of moderate stress in young flowers are reversible with appropriate treatments. Transcriptomic studies have shown that distinct gene sets are expressed during petal development and senescence. Despite this, the overlap in gene expression between developmental and stress-induced senescence in petals has not been fully investigated in any species. Here a custom-made cDNA microarray from Alstroemeria petals was used to investigate the overlap in gene expression between developmental changes (bud to first sign of senescence) and typical post-harvest stress treatments. Young flowers were stressed by cold or ambient temperatures without water followed by a recovery and rehydration period. Stressed flowers were still at the bud stage after stress treatments. Microarray analysis showed that ambient dehydration stress accelerates many of the changes in gene expression patterns that would normally occur during developmental senescence. However, a higher proportion of gene expression changes in response to cold stress were specific to this stimulus and not senescence related. The expression of 21 transcription factors was characterized, showing that overlapping sets of regulatory genes are activated during developmental senescence and by different stresses.
机译:花瓣发育和衰老需要通常不可逆的过程。它从花瓣扩张和色素生成开始,到营养物重新定位并最终导致细胞死亡结束。在许多物种中,这伴随着花瓣的脱落。收获后的胁迫是限制切花花瓣寿命的重要因素,并加速了一些衰老过程,例如花瓣萎和脱落。但是,通过适当的处理,中度胁迫对幼花的某些影响是可逆的。转录组学研究表明,花瓣发育和衰老过程中表达了不同的基因集。尽管如此,尚未对任何物种的花瓣发育和应激诱导的衰老之间的基因表达重叠进行研究。在这里,使用了六株玫瑰制成的定制cDNA微阵列,研究发育变化(从花蕾到衰老的第一个迹象)和典型的收获后胁迫处理之间基因表达的重叠。在没有水的寒冷或环境温度下,幼花受到压力,随后恢复和补水。胁迫处理后,胁迫花仍处于萌芽阶段。微阵列分析表明,环境脱水应激会加速发育过程中通常发生的基因表达模式的许多变化。但是,响应冷应激的基因表达变化的比例更高,与该刺激有关,与衰老无关。表征了21种转录因子的表达,表明重叠的调控基因集在发育衰老过程中和受到不同的压力时被激活。

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