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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Dehydrins are highly expressed in overwintering buds and enhance drought and freezing tolerance in Gentiana triflora.
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Dehydrins are highly expressed in overwintering buds and enhance drought and freezing tolerance in Gentiana triflora.

机译:脱水素在越冬芽中高度表达,并增强了三叶秦ent的干旱和冷冻耐受性。

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摘要

Gentians, herbaceous perennials, produce overwintering buds (OWBs) to survive the cold season. Although gentians are known to have strong stress tolerances against drought, cold and freezing, the molecular mechanisms of tolerance are unclear. We explored genes more highly expressed in OWBs than in other tissues and identified two gentian orthologs of dehydrins, denoted GtDHN1 and GtDHN2. These GtDHNs possess several ABA or dehydration responsive elements. Furthermore, GtDHN1 and GtDHN2 transcripts in OWBs accumulated during the winter but decreased prior to spring, suggesting that GtDHNs may be induced by dehydration stress during cold periods and may act as a stress protectant mediated by ABA. Likewise, cultured gentian plantlets accumulated GtDHN transcripts in response to ABA as well as cold and drought stresses. Moreover, transgenic gentian plantlets overexpressing GtDHN1 or GtDHN2 showed improved cold and drought stress tolerance. Metabolome analysis revealed that major antioxidants such as glutathione and ascorbate were accumulated in all transgenic plantlets. Overexpression of GtDHNs also affected the activities of the antioxidant enzymes, ascorbate peroxidase and glutathione peroxidase. Based on the results of this study, GtDHNs are induced by ABA and dehydration stress and have an ability to alleviate dehydration stress, probably via activating antioxidant mechanisms. Accumulation of GtDHNs may be part of the strategy for winter survival of gentian OWBs.
机译:龙胆草(多年生草本植物)会产生越冬芽(OWB),以在寒冷季节生存。尽管人们知道龙胆对干旱,寒冷和寒冷具有很强的压力耐受性,但耐受性的分子机制尚不清楚。我们探索了在OWBs中比在其他组织中更高表达的基因,并鉴定了两个脱水龙胆直系同源物,称为GtDHN1和GtDHN2。这些GtDHN具有几种ABA或脱水反应元件。此外,OWBs中的GtDHN1和GtDHN2转录本在冬季积累,但在春季之前减少,这表明GtDHNs可能在寒冷时期由脱水胁迫诱导,并且可以充当由ABA介导的胁迫保护剂。同样,培养的龙胆植物幼苗对ABA以及寒冷和干旱胁迫也积累了GtDHN转录本。此外,过表达GtDHN1或GtDHN2的转基因龙胆苗显示出改善的耐寒和耐旱性。代谢组学分析表明,主要抗氧化剂如谷胱甘肽和抗坏血酸积累在所有转基因植株中。 GtDHNs的过表达也影响抗氧化酶,抗坏血酸过氧化物酶和谷胱甘肽过氧化物酶的活性。根据这项研究的结果,GtDHNs是由ABA和脱水胁迫诱导的,并具有缓解脱水胁迫的能力,可能是通过激活抗氧化剂机制来实现的。 GtDHN的积累可能是龙胆OWB冬季生存策略的一部分。

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