首页> 外文期刊>Frontiers in Plant Science >HorTILLUS—A Rich and Renewable Source of Induced Mutations for Forward/Reverse Genetics and Pre-breeding Programs in Barley ( Hordeum vulgare L.)
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HorTILLUS—A Rich and Renewable Source of Induced Mutations for Forward/Reverse Genetics and Pre-breeding Programs in Barley ( Hordeum vulgare L.)

机译: Hor TILLUS-大麦正向/反向遗传和预育程序的诱变诱变的丰富且可更新的来源( Hordeum vulgare L.)

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TILLING (Targeting Induced Local Lesions IN Genomes) is a strategy used for functional analysis of genes that combines the classical mutagenesis and a rapid, high-throughput identification of mutations within a gene of interest. TILLING has been initially developed as a discovery platform for functional genomics, but soon it has become a valuable tool in development of desired alleles for crop breeding, alternative to transgenic approach. Here we present the Hor TILLUS ( Hor deum — TILL ING— U niversity of S ilesia) population created for spring barley cultivar “Sebastian” after double-treatment of seeds with two chemical mutagens: sodium azide (NaN_(3)) and N-methyl-N-nitrosourea (MNU). The population comprises more than 9,600 M_(2)plants from which DNA was isolated, seeds harvested, vacuum-packed, and deposited in seed bank. M_(3)progeny of 3,481 M_(2)individuals was grown in the field and phenotyped. The screening for mutations was performed for 32 genes related to different aspects of plant growth and development. For each gene fragment, 3,072–6,912 M_(2)plants were used for mutation identification using LI-COR sequencer. In total, 382 mutations were found in 182.2 Mb screened. The average mutation density in the Hor TILLUS, estimated as 1 mutation per 477 kb, is among the highest mutation densities reported for barley. The majority of mutations were G/C to A/T transitions, however about 8% transversions were also detected. Sixty-one percent of mutations found in coding regions were missense, 37.5% silent and 1.1% nonsense. In each gene, the missense mutations with a potential effect on protein function were identified. The Hor TILLUS platform is the largest of the TILLING populations reported for barley and best characterized. The population proved to be a useful tool, both in functional genomic studies and in forward selection of barley mutants with required phenotypic changes. We are constantly renewing the Hor TILLUS population, which makes it a permanent source of new mutations. We offer the usage of this valuable resource to the interested barley researchers on cooperative basis.
机译:TILLING(靶向基因组中的诱导局部病变)是一种用于基因功能分析的策略,该策略结合了经典诱变和快速,高通量鉴定目标基因中的突变。 TILLING最初被开发为功能基因组学的发现平台,但很快它已成为开发作物育种所需等位基因的有价值的工具,可以替代转基因方法。在这里,我们介绍了用两种化学诱变剂:叠氮化钠(NaN_(3))和N-甲基-N-亚硝基脲(MNU)。该种群包含9600多个M_(2)植物,从这些植物中分离出DNA,收获种子,进行真空包装并保存在种子库中。在田间种植了3,481个M_(2)个体的M_(3)后代并对其表型进行了表型分析。对与植物生长和发育的不同方面有关的32个基因进行了突变筛选。对于每个基因片段,使用LI-COR测序仪将3072-6912 M_(2)植物用于突变鉴定。在筛选的182.2 Mb中总共发现了382个突变。 Hor TILLUS中的平均突变密度估计为每477 kb 1个突变,是大麦报道的最高突变密度之一。大多数突变是从G / C到A / T的转变,但是也检测到了大约8%的转变。在编码区发现的突变中有61%为错义,37.5%沉默和1.1%无意义。在每个基因中,鉴定出对蛋白质功能具有潜在影响的错义突变。 Hor TILLUS平台是报道的大麦中最大的TILLING种群,并且特征最明显。在功能基因组研究和正向选择具有所需表型变化的大麦突变体中,该种群被证明是有用的工具。我们正在不断更新Hor TILLUS种群,这使其成为新突变的永久来源。我们以合作的方式将这种宝贵资源的使用提供给感兴趣的大麦研究人员。

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