首页> 外文期刊>Frontiers in Plant Science >Identification, isolation, and expression analysis of heat shock transcription factors in the diploid woodland strawberry Fragaria vesca
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Identification, isolation, and expression analysis of heat shock transcription factors in the diploid woodland strawberry Fragaria vesca

机译:二倍体林地草莓的热激转录因子的鉴定,分离及表达分析

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Heat shock transcription factors (Hsfs) are known to play dominant roles in plant responses to heat, as well as other abiotic or biotic stress stimuli. While the strawberry is an economically important fruit plant, little is known about the Hsf family in the strawberry. To explore the functions of strawberry Hsfs in abiotic and biotic stress responses, this study identified 17 Hsf genes ( FvHsfs ) in a wild diploid woodland strawberry ( Fragaria vesca , 2 n = 2 x = 14) and isolated 14 of these genes. Phylogenetic analysis divided the strawberry FvHsfs genes into three main groups. The evolutionary and structural analyses revealed that the FvHsf family is conserved. The promoter sequences of the FvHsf genes contain upstream regulatory elements corresponding to different stress stimuli. In addition, 14 FvHsf-GFP fusion proteins showed differential subcellular localization in Arabidopsis mesophyll protoplasts. Furthermore, we examined the expression of the 17 FvHsf genes in wild diploid woodland strawberries under various conditions, including abiotic stresses (heat, cold, drought, and salt), biotic stress (powdery mildew infection), and hormone treatments (abscisic acid, ethephon, methyl jasmonate, and salicylic acid). Fifteen of the seventeen FvHsf genes exhibited distinct changes on the transcriptional level during heat treatment. Of these 15 FvHsfs , 8 FvHsfs also exhibited distinct responses to other stimuli on the transcriptional level, indicating versatile roles in the response to abiotic and biotic stresses. Taken together, the present work may provide the basis for further studies to dissect FvHsf function in response to stress stimuli.
机译:已知热休克转录因子(Hsfs)在植物对热以及其他非生物或生物胁迫刺激的反应中起主要作用。草莓是一种经济上重要的水果植物,但对于草莓中的Hsf家族知之甚少。为了探索草莓Hsfs在非生物和生物胁迫响应中的功能,本研究在野生二倍体林地草莓(Fragaria vesca,2 n = 2 x = 14)中鉴定了17个Hsf基因(FvHsfs),并分离了14个这些基因。系统发育分析将草莓的FvHsfs基因分为三个主要组。进化和结构分析表明FvHsf家族是保守的。 FvHsf基因的启动子序列包含对应于不同应激刺激的上游调控元件。此外,14 FvHsf-GFP融合蛋白显示拟南芥叶肉原生质体中的亚细胞定位差异。此外,我们研究了野生二倍体林地草莓在各种条件下的17 FvHsf基因的表达,包括非生物胁迫(高温,寒冷,干旱和盐分),生物胁迫(粉状霉菌感染)和激素治疗(脱落酸,乙烯利) ,茉莉酸甲酯和水杨酸)。在热处理过程中,十七个FvHsf基因中的十五个在转录水平上表现出明显的变化。在这15个FvHsfs中,有8个FvHsfs在转录水平上还表现出对其他刺激的独特反应,表明在对非生物和生物胁迫的反应中具有多种作用。综上所述,目前的工作可能为进一步研究解剖FvHsf功能以应对应激刺激提供基础。

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