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首页> 外文期刊>Journal of Plant Physiology >Identification of duplicated and stress-inducible Aox2b gene co-expressed with Aox1 in species of the Medicago genus reveals a regulation linked to gene rearrangement in leguminous genomes
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Identification of duplicated and stress-inducible Aox2b gene co-expressed with Aox1 in species of the Medicago genus reveals a regulation linked to gene rearrangement in leguminous genomes

机译:在苜蓿属物种中与Aox1共表达的重复和胁迫诱导的Aox2b基因的鉴定揭示了与豆科基因组中基因重排有关的调控

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In flowering plants, alternative oxidase (Aox) is encoded by 3-5 genes distributed in 2 subfamilies (Aoxl and Aox2). In several species only Aoxl is reported as a stress-responsive gene, but in the leguminous Vigna unguiculata Aox2b is also induced by stress. In this work we investigated the Aox genes from two leguminous species of the Medicago genus (Medicago sativa and Medicago truncatula) which present one AoxI, one Aox2a and an Aox2b duplication (named here Aox2b1 and Aox2b2). Expression analyses by semi-quantitative RT-PCR in M. sativa revealed that Aox1, Aox2b1 and Aox2b2 transcripts increased during seed germination. Similar analyses in leaves and roots under different treatments (SA, PEG, H202 and cysteine) revealed that these genes are also induced by stress, but with peculiar spatio-temporal differences. Aox1 and Aox2b1 showed basal levels of expression under control conditions and were induced by stress in leaves and roots. Aox2b2 presented a dual behavior, i.e., it was expressed only under stress conditions in leaves, and showed basal expression levels in roots that were induced by stress. Moreover, Aox2a was expressed at higher levels in leaves and during seed germination than in roots and appeared to be not responsive to stress. The Aox expression profiles obtained from a M. truncatula microarray dataset also revealed a stress-induced co-expression of Aoxl, Aox2b1 and Aox2b2 in leaves and roots. These results reinforce the stress-inducible co-expression of Aoxl lAox2b in some leguminous plants. Comparative genomic analysis indicates that this regulation is linked to Aoxl lAox2b proximity in the genome as a result of the gene rearrangement that occurred in some leguminous plants during evolution. The differential expression of Aox2b1 12b2 suggests that a second gene has been originated by recent gene duplication with neofunctionalization
机译:在开花植物中,替代氧化酶(Aox)由分布在2个亚科(Aox1和Aox2)中的3-5个基因编码。在一些物种中,仅Aoxl被报道为胁迫响应基因,但在豆科植物豆豆Vigna unguiculata中,Aox2b也被胁迫诱导。在这项工作中,我们研究了来自两种豆科药用植物苜蓿(Medicago sativa和Medicago truncatula)的Aox基因,它们呈现出一个AoxI,一个Aox2a和一个Aox2b重复(在此命名为Aox2b1和Aox2b2)。半定量RT-PCR在水稻中的表达分析表明,种子萌发过程中Aox1,Aox2b1和Aox2b2转录本增加。在不同处理(SA,PEG,H2O2和半胱氨酸)下对叶和根进行的类似分析显示,这些基因也受胁迫诱导,但具有独特的时空差异。 Aox1和Aox2b1在对照条件下显示基础表达水平,并由叶和根中的胁迫诱导。 Aox2b2表现出双重行为,即仅在胁迫条件下在叶片中表达,并在胁迫诱导的根中显示基础表达水平。此外,Aox2a在叶片和种子发芽过程中的表达水平高于根部,并且似乎对胁迫没有反应。从梅花苜蓿微阵列数据集获得的Aox表达谱还揭示了在叶和根中胁迫诱导的Aox1,Aox2b1和Aox2b2共表达。这些结果增强了在一些豆科植物中Aoxl 1Aox2b的胁迫诱导共表达。比较基因组分析表明,由于某些豆科植物在进化过程中发生的基因重排,该调控与基因组中的Aoxl 1Aox2b邻近性相关。 Aox2b1 12b2的差异表达表明第二个基因是由具有新功能的最近基因复制产生的

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