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Genome-wide characterization and expression analysis of ATP-binding cassette (ABC) transporters in strawberry reveal the role of FvABCC11 in cadmium tolerance

机译:草莓中ATP结合盒(ABC)转运蛋白的基因组特征及表达分析揭示了FVABCC11在镉耐镉中的作用

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The ATP-binding cassette (ABC) transporter is the largest gene family and is associated with the transport of various molecules, such as heavy metal ions, secondary metabolites, and phytohormones. Strawberry is an important berry fruit and a model plant for studying fleshy fruits. However, the ABC gene family has not been identified in strawberry. In present study, 115 putative ABC genes were identified in the genome of woodland strawberry (Fragaria vesca). Based on the phylogenetic analysis results, the ABC genes were grouped into eight subfamilies (6 ABCAs, 29 ABCBs, 16 ABCCs, 1 ABCDs, 2 ABCEs, 5 ABCFs, 46 ABCGs, and 10 ABCIs). Additionally, gene structure analysis revealed that the intron-exon patterns of the ABC genes are not conserved in F. vesca. Some additional conserved motifs with group specificity were found. Quantitative reverse transcription-polyrnerase chain reaction (qRT-PCR) analysis indicated ABCC subfamily gene expression across different fruit and seed developmental stages and organ profiling revealed functional diversification. Most ABCC genes exhibited preferential expression in the stems and leaves. All ABCC genes showed significant increases during the seed development stages but only ABCC8 and ABCC11 showed significant increases during fruit development. The significant changes of the 16 ABCC genes exhibited during abiotic stress treatments suggested that they might be stress-responsive genes. Over-expression of FvABCC11 in Arabidopsis partially restored seedling development under cadmium (Cd) treatment, indicated that FvABCC11 increased Cd tolerance. The results of this study provide useful information for heavy metal resistance that can be utilized to improve agricultural production.
机译:ATP结合盒(ABC)转运蛋白是最大的基因家族,并且与各种分子的运输相关,例如重金属离子,次级代谢物和植物激素。草莓是一个重要的浆果果实和用于研究肉质水果的模型植物。然而,ABC基因家族尚未在草莓中鉴定出来。在目前的研究中,在林地草莓(Fragaria Vesca)的基因组中鉴定了115个推定的ABC基因。基于系统发育分析结果,将ABC基因分为八个亚壳(6 ABCAS,29 ABCB,16 ABCC,1 ABCD,2 ABCCS,5 ABCF,46 ABCG和10 ABCIS)。另外,基因结构分析显示,ABC基因的内外外显子模式在F. VESCA中不保守。发现了一些具有群体特异性的额外保守的主题。定量逆转录 - 聚酶链反应(QRT-PCR)分析表明,在不同果实和种子发育阶段的ABCC亚家族基因表达和器官分析显示功能多样化。大多数ABCC基因在茎和叶中表现出优先表达。所有ABCC基因在种子发育阶段期间所有ABCC基因显示出显着增加,但在水果发育过程中只有ABCC8和ABCC11显示出显着增加。在非生物胁迫处理期间表现出的16个ABCC基因的显着变化表明它们可能是应激响应基因。拟南芥中FVABCC11的过度表达部分恢复了镉(CD)处理下的幼苗发育,表明FVABCC11增加了CD耐受性。本研究的结果提供了可用于改善农业生产的重金属抗性的有用信息。

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