首页> 外文期刊>Annals of Botany >Effects of molybdenum on expression of cold-responsive genes in abscisic acid (ABA)-dependent and ABA-independent pathways in winter wheat under low-temperature stress.
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Effects of molybdenum on expression of cold-responsive genes in abscisic acid (ABA)-dependent and ABA-independent pathways in winter wheat under low-temperature stress.

机译:钼对低温胁迫下冬小麦脱落酸(ABA)依赖性和ABA非依赖性途径冷应答基因表达的影响。

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BACKGROUND AND AIMS: Molybdenum (Mo) is an essential trace element for higher plants. It has been shown that application of Mo enhances the cold resistance of winter wheat. In order to improve our understanding of the molecular mechanisms of cold resistance arising from application of Mo in winter wheat, investigations were made regarding the transcription of cold-responsive (COR) genes in abscisic acid (ABA)-dependent and ABA-independent pathways in winter wheat regulated by Mo application under low-temperature stress. METHODS: Two cultivars of winter wheat (Triticum aestivum), Mo-efficient cultivar '97003' and Mo-inefficient cultivar '97014', were grown in control (-Mo) and Mo fertilizer (+Mo) treatments for 40 d at 15/12 pC (dayight), and the temperature was then reduced to 5/2 pC (dayight) to create low-temperature stress. Aldehyde oxidase (AO) activities, ABA contents, the transcripts of basic leucine zipper (bZIP)-type transcription factor (TF) genes, ABA-dependent COR genes, CBF/DREB transcription factor genes and ABA-independent COR genes were investigated at 0, 3, 6 and 48 h post cold stress. KEY RESULTS: Mo application significantly increased AO activity, ABA levels, and expression of bZIP-type TF genes (Wlip19 and Wabi5) and ABA-dependent COR genes (Wrab15, Wrab17, Wrab18 and Wrab19). Mo application increased expression levels of CBF/DREB transcription factor genes (TaCBF and Wcbf2-1) and ABA-independent COR genes (Wcs120, Wcs19, Wcor14 and Wcor15) after 3 and 6 h exposure to low temperature. CONCLUSIONS: Mo might regulate the expression of ABA-dependent COR genes through the pathway: Mo [rightward arrow] AO [rightward arrow] ABA [rightward arrow] bZIP [rightward arrow] ABA-dependent COR genes in winter wheat. The response of the ABA-dependent pathway to Mo was prior to that of the ABA-independent pathway. Similarities and differences between the Mo-efficient and Mo-inefficient wheat cultivars in response to Mo under cold stress are discussed.
机译:背景与目的:钼是高等植物必需的微量元素。已经表明,钼的施用增强了冬小麦的耐寒性。为了提高我们对Mo在冬小麦中施用引起的耐寒性分子机制的理解,对脱落酸(ABA)依赖性和ABA非依赖性途径中耐寒性(COR)基因的转录进行了研究。低温胁迫下钼施用调控的冬小麦。方法:在对照(-Mo)和Mo肥料(+ Mo)处理下,在15/40的条件下,分别种植了两个高效小麦品种(Mo),分别是Mo高效品种'97003'和Mo无效品种'97014'。 12 pC(日/夜),然后将温度降至5/2 pC(日/夜)以产生低温应力。在0处研究了醛氧化酶(AO)活性,ABA含量,碱性亮氨酸拉链(bZIP)型转录因子(TF)基因的转录本,ABA依赖的COR基因,CBF / DREB转录因子基因和ABA无关的COR基因,冷应激后第3、6和48小时。关键结果:钼的施用显着增加了AO活性,ABA水平以及bZIP型TF基因(Wlip19和Wabi5)和ABA依赖性COR基因(Wrab15,Wrab17,Wrab18和Wrab19)的表达。在低温下暴露3和6小时后,钼的施用增加了CBF / DREB转录因子基因(TaCBF和Wcbf2-1)和不依赖ABA的COR基因(Wcs120,Wcs19,Wcor14和Wcor15)的表达水平。结论:Mo可能通过以下途径调控ABA依赖的COR基因的表达:Mo [向右箭头] AO [向右箭头] ABA [向右箭头] bZIP [向右箭头]冬小麦ABA依赖的COR基因。 ABA依赖性途径对Mo的反应先于ABA依赖性途径的反应。讨论了低温胁迫下低效和低效小麦品种对钼响应的异同。

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