首页> 美国卫生研究院文献>PLoS Clinical Trials >Genome-wide characterization and expression analysis of citrus NUCLEAR FACTOR-Y (NF-Y) transcription factors identified a novel NF-YA gene involved in drought-stress response and tolerance
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Genome-wide characterization and expression analysis of citrus NUCLEAR FACTOR-Y (NF-Y) transcription factors identified a novel NF-YA gene involved in drought-stress response and tolerance

机译:柑橘核因子-Y(NF-Y)转录因子的全基因组表征和表达分析确定了涉及干旱胁迫响应和耐受性的新型NF-YA基因

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摘要

Nuclear factor Y (NF-Y) is a ubiquitous transcription factor found in eukaryotes. It is composed of three distinct subunits called NF-YA, NF-YB and NF-YC. NF-Ys have been identified as key regulators of multiple pathways in the control of development and tolerance to biotic and abiotic factors. The present study aimed to identify and characterize the complete repertoire of genes coding for NF-Y in citrus, as well as to perform the functional characterization of one of its members, namely CsNFYA5, in transgenic tobacco plants. A total of 22 genes coding for NF-Y were identified in the genomes of sweet orange (Citrus sinensis) and Clementine mandarin (C. clementina), including six CsNF-YAs, 11 CsNF-YBs and five CsNF-YCs. Phylogenetic analyses showed that there is a NF-Y orthologous in the Clementine genome for each sweet orange NF-Y gene; this was not observed when compared to Arabidopsis thaliana. CsNF-Y proteins shared the same conserved domains with their orthologous proteins in other organisms, including mouse. Analysis of gene expression by RNA-seq and EST data demonstrated that CsNF-Ys have a tissue-specific and stress inducible expression profile. qRT-PCR analysis revealed that CsNF-YA5 exhibits differential expression in response to water deficit in leaves and roots of citrus plants. Overexpression of CsNF-YA5 in transgenic tobacco plants contributed to the reduction of H2O2 production under dehydration conditions and increased plant growth and photosynthetic rate under normal conditions and drought stress. These biochemical and physiological responses to drought stress promoted by CsNF-YA5 may confer a productivity advantage in environments with frequent short-term soil water deficit.
机译:核因子Y(NF-Y)是在真核生物中普遍存在的转录因子。它由三个不同的亚基组成,分别称为NF-YA,NF-YB和NF-YC。 NF-Ys已被确定为控制生物和非生物因子发育和耐受性的多种途径的关键调节剂。本研究旨在鉴定和表征柑橘中编码NF-Y的基因的完整组成,以及在转基因烟草植物中进行其成员之一即CsNFYA5的功能表征。在甜橙(柑桔)和柑桔普通话(C. clementina)的基因组中共鉴定出22个编码NF-Y的基因,包括6个CsNF-YA,11个CsNF-YB和5个CsNF-YC。系统发育分析表明,柑桔基因组中每个甜橙的NF-Y基因都有一个同源的NF-Y。与拟南芥相比没有观察到。 CsNF-Y蛋白与其直系同源蛋白在其他生物(包括小鼠)中共享相同的保守域。通过RNA-seq和EST数据进行的基因表达分析表明,CsNF-Ys具有组织特异性和应激诱导型表达谱。 qRT-PCR分析表明,CsNF-YA5在柑橘类植物的叶和根中对缺水有响应。转基因烟草植物中CsNF-YA5的过表达导致脱水条件下H2O2的产生减少,并在正常条件和干旱胁迫下增加了植物的生长和光合速率。这些由CsNF-YA5促进的对干旱胁迫的生化和生理反应可能会在短期土壤水分缺乏频繁的环境中提高生产力。

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