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The AabHLH35 Transcription Factor Identified from Anthurium andraeanum is Involved in Cold and Drought Tolerance

机译:从红掌中鉴定到的AabHLH35转录因子与耐寒干旱有关

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摘要

Anthurium andraeanum Lind. is a popular potted and cut-flower plant with an attractive spathe and foliage. It is native to tropical rainforest areas and is able to blossom throughout the year under suitable conditions. However, various abiotic stresses seriously restrict the ornamental value of A. andraeanum and increase the costs of cultivation. A dark green (dg) leaf color mutant of A. andraeanum ‘Sonate’, which accumulates high levels of anthocyanin, has shown increased vigor and tolerance to stresses during cultivation and is, thus, an ideal germplasm for studying stress tolerance in this species. Here, we show that the anthocyanin content in dg mutant plants at different stages of leaf development was higher than in wild-type (WT) plants, and the ability to tolerate under low-temperature (LT, 14 °C) stress was stronger in dg than in WT plants. RNA-Seq of cDNA libraries from young leaves of dg and WT identified AabHLH35 as a differentially expressed gene (DEG) that was significantly up-regulated in dg. Furthermore, heterologous expression of AabHLH35 improved tolerance to cold and drought stresses in Arabidopsis. These results have built an important molecular foundation for further study of stress tolerance in A. andraeanum.
机译:安祖花andraeanum林德。是一种流行的盆栽和切花植物,具有诱人的茎秆和叶子。它原产于热带雨林地区,并能够在适当的条件下全年开花。然而,各种非生物胁迫严重地限制了红曲菌的观赏价值并增加了栽培成本。暗兰(dg)叶色突变体A. andraeanum'Sonate'积累了高水平的花色苷,在培养过程中显示出增强的活力和对压力的耐受力,因此是研究该物种抗逆性的理想种质。在这里,我们表明dg突变植物在叶片发育的不同阶段中的花色苷含量高于野生型(WT)植物,并且在低温(LT,14°C)胁迫下的耐受能力更强。 dg比野生植物。来自dg和WT幼叶的cDNA文库的RNA-Seq将AabHLH35鉴定为差异表达基因(DEG),该基因在dg中显着上调。此外,AabHLH35的异源表达提高了拟南芥对寒冷和干旱胁迫的耐受性。这些结果为进一步研究红掌A的抗逆性奠定了重要的分子基础。

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