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小麦(Triticum aestivum)品系 07OR1074 中多酚氧化酶(PPO)活性极低的遗传特征和表达分析。

Genetic characterization and expression analysis of wheat (Triticum aestivum) line 07OR1074 exhibiting very low polyphenol oxidase (PPO) activity.

机构信息

Department of Plant Sciences and Plant Pathology, Montana State University, Bozeman, MT, 59717-3150, USA.

出版信息

Theor Appl Genet. 2015 Aug;128(8):1605-15. doi: 10.1007/s00122-015-2535-8. Epub 2015 May 16.

Abstract

Characterized novel mutations present at Ppo loci account for the substantial reduction of the total kernel PPO activity present in a putative null Ppo - A1 genetic background. Wheat (Triticum aestivum) polyphenol oxidase (PPO) contributes to the time-dependent discoloration of Asian noodles. Wheat contains multiple paralogous and orthologous Ppo genes, Ppo-A1, Ppo-D1, Ppo-A2, Ppo-D2, and Ppo-B2, expressed in wheat kernels. To date, wheat noodle color improvement efforts have focused on breeding cultivars containing Ppo-D1 and Ppo-A1 alleles conferring reduced PPO activity. A major impediment to wheat quality improvement is a lack of additional Ppo alleles conferring reduced kernel PPO. In this study, a previously reported very low PPO line, 07OR1074, was found to contain a novel allele at Ppo-A2 and null alleles at the Ppo-A1 and Ppo-D1 loci. To examine the impact of each mutation upon kernel PPO, populations were generated from crosses between 07OR1074 and the hard white spring wheat cultivars Choteau and Vida. Expression analysis using RNA-seq demonstrated no detectable Ppo-A1 transcripts in 07OR1074 while Ppo-D1 transcripts were present at less than 10% of that seen in Choteau and Vida. Novel markers specific for the Ppo-D1 and Ppo-A2 mutations discovered in 07OR1074, along with the Ppo-A1 STS marker, were used to screen segregating populations. Evaluation of lines indicated a substantial genotypic effect on PPO with Ppo-A1 and Ppo-D1 alleles contributing significantly to total PPO in both populations. These results show that the novel mutations in Ppo-A1 and Ppo-D1 present in 07OR1074 are both important to lowering overall wheat seed PPO activity and may be useful to produce more desirable and marketable wheat-based products.

摘要

在假定的 Ppo-A1 遗传背景下,Ppo 基因座上的特有新型突变导致总核 PPO 活性显著降低。小麦多酚氧化酶(PPO)导致亚洲面条的时间依赖性变色。小麦含有多个多基因和直系同源的 Ppo 基因,Ppo-A1、Ppo-D1、Ppo-A2、Ppo-D2 和 Ppo-B2,在小麦籽粒中表达。迄今为止,改善小麦面条颜色的努力主要集中在培育含有降低 PPO 活性的 Ppo-D1 和 Ppo-A1 等位基因的品种上。缺乏赋予降低的核 PPO 的额外 Ppo 等位基因是提高小麦品质的主要障碍。在这项研究中,发现之前报道的 Ppo 活性非常低的 07OR1074 品系在 Ppo-A2 基因座上含有一个新型等位基因,而在 Ppo-A1 和 Ppo-D1 基因座上则含有无效等位基因。为了研究每个突变对核 PPO 的影响,从 07OR1074 与硬质春小麦品种 Choteau 和 Vida 之间的杂交中产生了群体。使用 RNA-seq 进行的表达分析表明,在 07OR1074 中没有检测到 Ppo-A1 转录本,而 Ppo-D1 转录本的含量低于 Choteau 和 Vida 的 10%。在 07OR1074 中发现的 Ppo-D1 和 Ppo-A2 突变的特异性新型标记物,以及 Ppo-A1 STS 标记物,用于筛选分离群体。对品系的评估表明,PPO 存在显著的基因型效应,Ppo-A1 和 Ppo-D1 等位基因对两个群体中的总 PPO 都有重要贡献。这些结果表明,07OR1074 中 Ppo-A1 和 Ppo-D1 的新型突变都对降低小麦种子总 PPO 活性很重要,可能有助于生产更理想和更具市场价值的小麦产品。

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