首页> 外文期刊>BMC Plant Biology >Identification, gene expression and genetic polymorphism of zinc finger A20/AN1 stress-associated genes, HvSAP, in salt stressed barley from Kazakhstan
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Identification, gene expression and genetic polymorphism of zinc finger A20/AN1 stress-associated genes, HvSAP, in salt stressed barley from Kazakhstan

机译:Zinc手指A20 / An1应力相关基因,HVSAP的鉴定,基因表达和遗传多态性,在盐康斯坦盐胁迫大麦

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BACKGROUND:A family of genes designated as the Zinc finger A20/AN1 Transcription factors encoding stress-associated proteins (SAP) are well described in Arabidopsis and rice, and include 14 AtSAP and 18 OsSAP genes that are associated with variable tolerances to multiple abiotic stresses. The SAP gene family displays a great diversity in its structure and across different plant species. The aim of this study was to identify all HvSAP genes in barley (Hordeum vulgare L.), to analyse the expression of selected genes in response to salinity in barley leaves and develop SNP marker for HvSAP12 to evaluate the association between genotypes of barley plants and their grain yield in field trials.RESULTS:In our study, 17 HvSAP genes were identified in barley, which were strongly homologous to rice genes. Five genes, HvSAP5, HvSAP6, HvSAP11, HvSAP12 and HvSAP15, were found to be highly expressed in leaves of barley plants in response to salt stress in hydroponics compared to controls, using both semi-quantitative RT-PCR and qPCR analyses. The Amplifluor-like SNP marker KATU-B30 was developed and used for HvSAP12 genotyping. A strong association (R 2 ?=?0.85) was found between KATU-B30 and grain yield production per plant of 50 F 3 breeding lines originating from the cross Granal × Baisheshek in field trials with drought and low to moderate salinity in Northern and Central Kazakhstan.CONCLUSIONS:A group of HvSAP genes, and HvSAP12 in particular, play an important role in the tolerance of barley plants to salinity and drought, and is associated with higher grain yield in field trials. Marker-assisted selection with SNP marker KATU-B30 can be applied in barley breeding to improve grain yield production under conditions of abiotic stress.
机译:背景:作为编码应力相关蛋白(SAP)的锌指A20 / An1转录因子指定的一系列基因在拟南芥和水稻中良好描述,包括14个ATSAP和18个OSSAP基因,其与多种非生物胁迫的可变耐受性相关联。 SAP基因系列在其结构和不同植物物种上显示出巨大的多样性。本研究的目的是鉴定大麦(Hordeum Vulgare L)中的所有HVSAP基因,以分析响应大麦叶子的盐度的所选基因的表达,并为HVSAP12发育SNP标记,评价大麦植物基因型之间的关联和他们的谷物产量在现场试验中。结果:在我们的研究中,在大麦中鉴定了17个HVSAP基因,这对水稻基因强烈同源。使用Semi定量的RT-PCR和QPCR分析,发现5个基因,HVSAP5,HVSAP6,HVSAP11,HVSAP12和HVSAP15在大麦植物的叶片中,在大麦植物的叶子中高度表达。发育并用于HVSAP12基因分型的扩增荧光样SNP标记物Katu-B30。在Katu-B30和谷物产量生产之间发现了强大的关联(R 2?= 0.85),该植物在50 f 3种育种线上源于北部和中央的干旱和低至中度盐度哈萨克斯坦。结论:特别是一组HVSAP基因,特别是HVSAP12,在大麦植物到盐度和干旱的耐受中起重要作用,并且与野外试验中的谷物产量有关。用SNP标记Katu-B30的标记辅助选择可用于大麦育种,以改善非生物应激条件下的谷物产量产量。
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