首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Semi-dwarf barley (Hordeum vulgare L.) brh2 and ari-l mutants are deficient in a U-box E3 ubiquitin ligase
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Semi-dwarf barley (Hordeum vulgare L.) brh2 and ari-l mutants are deficient in a U-box E3 ubiquitin ligase

机译:半矮人大麦(Hordeum Vulgare L.)BRH2和ARI-L突变体缺乏U字箱E3泛素连接酶

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Lodging is the process where crop plants fall over and lie on the ground due to strong winds and heavy precipitation. This problem reduces yield and increases the risk of fungal infections and pre-harvest germination. In order to avoid lodging, plant breeders utilize short-culm mutants, which often have a robust culm that can support the weight of a heavy spike. In barley (Hordeum vulgare L.), thousands of short-culm mutants have been isolated in breeding programs around the world. Our long-term goal is to reveal the genetic network underlying culm length, with the objective to provide an enlarged repertoire of genes and alleles suitable for future breeding of lodging resistant barley. In the present work we studied a group of allelic brh2 and ari-l mutants, which have a relatively strong semi-dwarf phenotype and are phenotypically similar to previously identified mutants deficient in brassinosteroid signalling or metabolism. The Brh2 gene is located in the centromeric region of chromosome 4H and we applied a candidate gene approach to identify the gene. Brh2 is orthologous to TUD1 in rice (Orysa sativa L.), which encodes a U-box E3 ubiquitin ligase. We identified one missense mutation, one nonsense mutation and four deletions of the complete Brh2 gene. The mutants could respond to exogenously applied brassinolide, which suggests that the apparent brassinosteroid deficient phenotype of barley brh2 and ari-l mutants is related to brassinosteroid metabolism rather than signalling.
机译:住宿是由于强风和重度降水,裁剪植物跌倒并躺在地上的过程。该问题降低了产量并提高了真菌感染的风险和预先收获萌发。为了避免住宿,植物育种者利用短秆突变体,这通常具有强大的秆,可以支持沉重的尖峰的重量。在大麦(Hordeum Vulgare L.)中,成千上万的短秆突变体已被孤立在世界各地的繁殖计划中。我们的长期目标是揭示遗传网络底层秆长度,目的是提供适合未来养殖大麦的未来繁殖的基因和等位基因的扩大曲目。在本工作中,我们研究了一组等位基因BRH2和ARI-L突变体,其具有相对较强的半矮状表型,并且具有与先前鉴定的芸芸胸甲式信号传导或代谢缺乏的突变体。 BRH2基因位于染色体4h的焦化区域中,我们应用了候选基因方法以鉴定基因。 BRH2在水稻(Orysa Sativa L.)中的Tud1是直观的,其编码u-box e3 ubiquitin连接酶。我们确定了一种畸形突变,一个非义义突变和完整BRH2基因的四次缺失。突变体可以响应外源性施用的芸苔属,这表明大麦BRH2和ARI-L突变体的表观芸苔类化缺乏表型与芸苔类固醇代谢而不是信号传导。

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