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首页> 外文期刊>BMC Plant Biology >Interactive effects of multiple vernalization ( Vrn-1 )- and photoperiod ( Ppd-1 )-related genes on the growth habit of bread wheat and their association with heading and flowering time
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Interactive effects of multiple vernalization ( Vrn-1 )- and photoperiod ( Ppd-1 )-related genes on the growth habit of bread wheat and their association with heading and flowering time

机译:多种vernalization(VRN-1) - 和光周期(PPD-1)的互动效应对面包小麦生长习惯的影响及其与开花时间的结合

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The precise identification of Winterness/Springness (growth habit) for bread wheat, which is determined by genes involved in vernalization and photoperiod, will contribute to the effective utilization of bread wheat varieties. Here, 198 varieties from the Yellow and Huai wheat production region (YHW) in China were collected to identify their vernalization (Vrn-1) and photoperiod (Ppd-1) gene composition via a series of functional markers and their association with vernalization and photoperiod requirements at three locations during two years of experiments. The growth habits were measured during the spring sowing season. The results showed that the semi-winter varieties (grades1–4) were most prevalent in the population. The relative effects of single Vrn alleles on the growth period, such as heading date (HD) and/or flowering date (FD), were as follows: Vrn-B1b??Vrn-B1a??Vrn-D1b??Vrn-D1a??vrn-D1?=?vrn-B1. The interactive effects of Vrn-B1 and Vrn-D1 on HD and FD were identical to those of Vrn-B1b. Approximately 35.3% of the cultivars carried Ppd-B1a (photoperiod-insensitive) and exhibited the earliest HD and FD. The Ppd-D1a-insensitive allele (Hapl II) was carried by just 0.5% of the varieties; however, the other two sensitive alleles were present at a higher frequency, and their effects were slightly weaker than those of Ppd-B1a. In addition, strong interactive effects between Ppd-B1 and Ppd-D1 were detected. In terms of mean values among various genotypes, the effects followed the order of Vrn-1??Ppd-1. According to the results of ANOVA and least significant range (LSR) tests, we can conclude that Vrn-1 rather than Ppd-1 played a major role in controlling vernalization and photoperiod responses in this region. This research will be helpful for precisely characterizing and evaluating the HD, FD and even growth habit of varieties in the YHW at molecular levels.
机译:通过参与春化和光周期的基因确定的面包小麦的休冬/春天(生长习惯)的精确鉴定将有助于面包小麦品种的有效利用。这里,来自中国黄色和淮麦生产区(YHW)的198个品种,通过一系列功能标志物和与富集和光周期的关系鉴定它们的葡萄酒(VRN-1)和光周期(PPD-1)基因组合物在两年的实验期间在三个位置的要求。在春季播种季节测量了生长习惯。结果表明,半冬季品种(Gradet1-4)在人口中最普遍。单个VRN等位基因对生长期的相对效果,例如标题日期(HD)和/或开花日期(FD)如下:VRN-B1B?>ΔVRN-B1A?>ΔVrn-d1b?> Vrn-d1a?> vrn-d1?=?Vrn-b1。 VRN-B1和VRN-D1对高清和FD的交互式效果与VRN-B1B的VRN-B1B相同。大约35.3%的品种携带PPD-B1A(光周期不敏感)并表现出最早的HD和FD。 PPD-D1A - 不敏感等位基因(HAPL II)仅为0.5%的品种;然而,其他两个敏感等位基因以较高的频率存在,它们的效果略微弱于PPD-B1A。此外,检测PPD-B1和PPD-D1之间的强互动效果。就各种基因型之间的平均值而言,效果遵循VRN-1?> PPD-1的顺序。根据ANOVA的结果和最重要的范围(LSR)测试,我们可以得出结论,VRN-1而不是PPD-1在控制该区域中的vernalization和Pheropheriod反应方面发挥了重要作用。本研究将有助于精确地表征和评估METIED的HD,FD甚至在分子水平的yhw中的生长习性。

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