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首页> 外文期刊>Frontiers in Plant Science >Foxtail Millet NF-Y Families: Genome-Wide Survey and Evolution Analyses Identified Two Functional Genes Important in Abiotic Stresses
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Foxtail Millet NF-Y Families: Genome-Wide Survey and Evolution Analyses Identified Two Functional Genes Important in Abiotic Stresses

机译:谷子NF-Y家族:全基因组调查和进化分析确定了两个非生物胁迫中重要的功能基因

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摘要

It was reported that Nuclear Factor Y (NF-Y) genes were involved in abiotic stress in plants. Foxtail millet ( Setaria italica ), an elite stress tolerant crop, provided an impetus for the investigation of the NF-Y families in abiotic responses. In the present study, a total of 39 NF-Y genes were identified in foxtail millet. Synteny analyses suggested that foxtail millet NF-Y genes had experienced rapid expansion and strong purifying selection during the process of plant evolution. De novo transcriptome assembly of foxtail millet revealed 11 drought up-regulated NF-Y genes. SiNF-YA1 and SiNF-YB8 were highly activated in leaves and/or roots by drought and salt stresses. Abscisic acid (ABA) and H_(2)O_(2)played positive roles in the induction of SiNF-YA1 and SiNF-YB8 under stress treatments. Transient luciferase (LUC) expression assays revealed that SiNF-YA1 and SiNF-YB8 could activate the LUC gene driven by the tobacco ( Nicotiana tobacam ) NtERD10, NtLEA5, NtCAT, NtSOD , or NtPOD promoter under normal or stress conditions. Overexpression of SiNF-YA1 enhanced drought and salt tolerance by activating stress-related genes NtERD10 and NtCAT1 and by maintaining relatively stable relative water content (RWC) and contents of chlorophyll, superoxide dismutase (SOD), peroxidase (POD), catalase (CAT) and malondialdehyde (MDA) in transgenic lines under stresses. SiNF-YB8 regulated expression of NtSOD, NtPOD, NtLEA5 , and NtERD10 and conferred relatively high RWC and chlorophyll contents and low MDA content, resulting in drought and osmotic tolerance in transgenic lines under stresses. Therefore, SiNF-YA1 and SiNF-YB8 could activate stress-related genes and improve physiological traits, resulting in tolerance to abiotic stresses in plants. All these results will facilitate functional characterization of foxtail millet NF-Ys in future studies.
机译:据报道,核因子Y(NF-Y)基因参与植物的非生物胁迫。谷子(Setaria italica)是一种优良的耐逆性作物,为研究NF-Y家族的非生物反应提供了动力。在本研究中,在谷子中共鉴定出39个NF-Y基因。同源性分析表明,谷子NF-Y基因在植物进化过程中经历了快速扩增和强大的纯化选择。谷子的从头转录组组装揭示了11个干旱上调的NF-Y基因。在干旱和盐胁迫下,SiNF-YA1和SiNF-YB8在叶和/或根中被高度活化。脱落酸(ABA)和H_(2)O_(2)在胁迫处理下诱导SiNF-YA1和SiNF-YB8发挥积极作用。瞬时荧光素酶(LUC)表达测定表明,在正常或胁迫条件下,SiNF-YA1和SiNF-YB8可以激活烟草(Nicotiana tobacam)NtERD10,NtLEA5,NtCAT,NtSOD或NtPOD启动子驱动的LUC基因。通过激活与胁迫相关的基因NtERD10和NtCAT1并保持相对稳定的相对水含量(RWC)和叶绿素,超氧化物歧化酶(SOD),过氧化物酶(POD),过氧化氢酶(CAT)的含量,SiNF-YA1的过表达增强了干旱和盐分耐受性胁迫下转基因品系中的丙二醛和丙二醛(MDA)。 SiNF-YB8调节NtSOD,NtPOD,NtLEA5和NtERD10的表达,并赋予相对较高的RWC和叶绿素含量和较低的MDA含量,导致转基因品系在胁迫下的干旱和渗透耐受性。因此,SiNF-YA1和SiNF-YB8可以激活胁迫相关基因并改善生理特性,从而导致植物对非生物胁迫的耐受性。所有这些结果将有助于谷子NF-Ys在未来的研究中的功能表征。

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