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Genome-wide identification and transcriptional profiling analysis of auxin response-related gene families in cucumber

机译:黄瓜生长素应答相关基因家族的全基因组鉴定和转录谱分析

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Background Auxin signaling has a vital function in the regulation of plant growth and development, both which are known to be mediated by auxin-responsive genes. So far, significant progress has been made toward the identification and characterization of auxin-response genes in several model plants, while no systematic analysis for these families was reported in cucumber ( Cucumis sativus L.), a reference species for Cucurbitaceae crops. The comprehensive analyses will help design experiments for functional validation of their precise roles in plant development and stress responses. Results A genome-wide search for auxin-response gene homologues identified 16 auxin-response factors (ARFs), 27 auxin/indole acetic acids (Aux/IAAs), 10 Gretchen Hagen 3 (GH3s), 61 small auxin-up mRNAs (SAURs), and 39 lateral organ boundaries (LBDs) in cucumber. Sequence analysis together with the organization of putative motifs indicated the potential diverse functions of these five auxin-related family members. The distribution and density of auxin response-related genes on chromosomes were not uniform. Evolutionary analysis showed that the chromosomal segment duplications mainly contributed to the expansion of the CsARF, CsIAA, CsGH3, and CsLBD gene families. Quantitative real-time RT-PCR analysis demonstrated that many ARFs, AUX/IAAs, GH3s, SAURs, and LBD genes were expressed in diverse patterns within different organs/tissues and during different development stages. They were also implicated in IAA, methyl jasmonic acid, or salicylic acid response, which is consistent with the finding that a great number of diverse cis-elements are present in their promoter regions involving a variety of signaling transduction pathways. Conclusion Genome-wide comparative analysis of auxin response-related family genes and their expression analysis provide new evidence for the potential role of auxin in development and hormone response of plants. Our data imply that the auxin response genes may be involved in various vegetative and reproductive developmental processes. Furthermore, they will be involved in different signal pathways and may mediate the crosstalk between various hormone responses.
机译:背景生长素信号转导在调节植物生长和发育中起着至关重要的作用,已知两者均由植物生长素应答基因介导。迄今为止,在几种模式植物中植物生长素应答基因的鉴定和表征方面已经取得了重大进展,而黄瓜(Cucumis sativus L。)(葫芦科作物的参考物种)尚未对这些科进行系统分析。全面的分析将有助于设计实验,以对其在植物发育和胁迫响应中的确切作用进行功能验证。结果在全基因组范围内对生长素反应基因同源物的搜索确定了16个生长素反应因子(ARF),27个生长素/吲哚乙酸(Aux / IAAs),10个Gretchen Hagen 3(GH3s),61个小生长素上调mRNA(SAURs) )和黄瓜中的39个侧向器官边界(LBD)。序列分析以及推定的基序组织表明这五个生长素相关家族成员的潜在多样化功能。生长素应答相关基因在染色体上的分布和密度不均匀。进化分析表明,染色体片段重复主要促进了CsARF,CsIAA,CsGH3和CsLBD基因家族的扩展。实时定量RT-PCR分析表明,许多ARF,AUX / IAA,GH3,SAUR和LBD基因在不同器官/组织中以及在不同的发育阶段以不同的模式表达。它们还与IAA,甲基茉莉酸或水杨酸反应有关,这与发现在其启动子区域中存在大量不同的顺式元件有关的发现相一致,这些顺式元件涉及多种信号转导途径。结论生长素应答相关家族基因的全基因组比较分析及其表达分析为植物生长素在植物发育和激素应答中的潜在作用提供了新的证据。我们的数据表明,生长素反应基因可能参与了各种营养和生殖发育过程。此外,它们将参与不同的信号途径,并可能介导各种激素反应之间的串扰。

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