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Genetic control of seed dormancy and pre-harvest sprouting in wheat

机译:种子休眠的遗传控制和小麦萌芽的初步萌芽

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Pre-harvest sprouting (PHS) damage leads to occasional massive losses in all wheat producing areas, causing downgrading of grain quality, that severely limits end-use applications and results in substantial financial losses to farmers and food processors. Red grain color is a traditional marker for resistance to sprouting in wheat breeding programs, however red-grained genotype alone does not always guarantee effective resistance. The objective of this work was to find genes for resistance to PHS and investigate its inheritance in Brazilian wheat cultivars. Genetic variation for dormancy was investigated in the parents, F1 and 300 F2 lines derived from the cross Frontana × OR1 and its reciprocal. The germination/dormancy sprouted grains was evaluated on fifty seeds per replication, germinated in paper towel rolls at 20oC for 5 days. A bimodal distribution for dormancy occurred in the Frontana/OR1 and OR1/Frontana derived F2 populations. The mean ratio of dormant and non-dormant seeds of the cross and its reciprocal was 85:1115, fitting a digenic model of 1:15 (P < 0.05). In fact, all non after-ripened F1 seeds germinated. The F2 distribution indicates that two major genes, here called A,a and B,b, control seed dormancy, which it appears to be recessive to dormancy. Only the homozygous aabb is dormant. As expected, there was no effect of maternal tissues.
机译:收获前发芽(PHS)损坏导致所有小麦生产区域偶尔的大量损失,导致谷物质量降级,严重限制了最终用途的应用,并导致农民和食品加工的实质性损失。红色谷物颜色是一种传统的标记,用于小麦养殖计划的抗萌芽,但是单独的红粒性基因型并不总能保证有效的抗性。这项工作的目的是找到抗pHS的基因,并调查其在巴西小麦品种的遗产。在父母,F1和300 F2线中研究了休眠的遗传变异,衍生自交叉前纳×OR1及其互易的线。在每复制50个种子上评估发芽/休眠发芽晶粒,在纸巾卷在20℃下搅拌5天​​。 Frontana / OR1和OR1 / Frontana衍生的F2种群中发生了对休眠的双峰分布。交叉休眠和非休眠种子的平均比例及其倒数为85:1115,拟合1:15的能力模型(P <0.05)。事实上,所有非成熟的F1种子发芽。 F2分布表明,两个主要基因,这里称为A,A和B,B,控制种子休眠,其似乎是隐性休眠的隐性。只有纯合AABB是休眠。正如预期的那样,母体​​组织没有影响。

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