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首页> 外文期刊>BMC Plant Biology >Global analysis of expression profile of members of DnaJ gene families involved in capsaicinoids synthesis in pepper ( Capsicum annuum L)
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Global analysis of expression profile of members of DnaJ gene families involved in capsaicinoids synthesis in pepper ( Capsicum annuum L)

机译:辣椒(Capsicum Annuum L)中参与辣椒素合成的DNAJ基因家族成员表达谱的全局分析

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摘要

The DnaJ proteins play critical roles in plant development and stress responses. Recently, seventy-six DnaJ genes were identified through a comprehensive bioinformatics analysis in the pepper genome. However, there were no reports on understanding of phylogenetic relationships and diverse expression profile of pepper DnaJ genes to date. Herein, we performed the systemic analysis of the phylogenetic relationships and expression profile of pepper DnaJ genes in different tissues and in response to both abiotic stress and plant hormones. Phylogenetic analysis showed that all the pepper DnaJ genes were grouped into 7 sub-families (sub-family I, II, III, IV, V, VI and VII) according to sequence homology. The expression of pepper DnaJs in different tissues revealed that about 38% (29/76) of pepper DnaJs were expressed in at least one tissue. The results demonstrate the potentially critical role of DnaJs in pepper growth and development. In addition, to gain insight into the expression difference of pepper DnaJ genes in placenta between pungent and non-pungent, their expression patterns were also analyzed using RNA-seq data and qRT-PCR. Comparison analysis revealed that eight genes presented distinct expression profiles in pungent and non-pungent pepper. The CaDnaJs co-expressed with genes involved in capsaicinoids synthesis during placenta development. What is more, our study exposed the fact that these eight DnaJ genes were probably regulated by stress (heat, drought and salt), and were also regulated by plant hormones (ABA, GA3, MeJA and SA). In summary, these results showed that some DnaJ genes expressed in placenta may be involved in plant response to abiotic stress during biosynthesis of compounds related with pungency. The study provides wide insights to the expression profiles of pepper DanJ genes and contributes to our knowledge about the function of DnaJ genes in pepper.
机译:DNAJ蛋白在植物开发和压力反应中起着关键作用。最近,通过辣椒基因组中的综合生物信息学分析来确定七十六个DNAJ基因。然而,目前迄今为止,没有关于辣椒DNAJ基因的系统发育关系和不同表达谱的报道。在此,我们对不同组织中的辣椒DNAJ基因的系统发育关系和表达谱进行了全身分析,并响应非生物应激和植物激素。系统发育分析表明,根据序列同源性,将所有辣椒DNAj基因分成7个子家族(亚家族I,II,III,IV,V,VI和VII)。辣椒DNAJS在不同组织中的表达显示,在至少一种组织中表达了约38%(29/76)的胡椒DNAJ。结果表明DNAJS在辣椒生长和发展中的潜在关键作用。此外,为了深入了解尖牙和非刺激性之间胎盘在胎盘中辣椒DNAJ基因的表达差异,还使用RNA-SEQ数据和QRT-PCR分析它们的表达模式。比较分析表明,八种基因在刺鼻和非刺激性辣椒中呈现了不同的表达曲线。 CADNAJS与胎盘发育过程中含有辣椒素合成的基因。更重要的是,我们的研究暴露了这一八种DNAJ基因可能受到压力(热,干旱和盐)调节的事实,并且也受植物激素(ABA,GA3,MEJA和SA)调节。总之,这些结果表明,胎盘中表达的一些DNAJ基因可以参与植物反应与血型化合物的生物合成期间的非生物应激。该研究为辣椒丹吉基因的表达谱提供了广泛的见解,并有助于我们对辣椒中DNAJ基因的功能的了解。

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