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Functional characterization of germin family genes contributing to broad-spectrum, quantitative disease resistance in rice.

机译:胚芽家族基因的功能表征有助于水稻的广谱定量抗病性。

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摘要

Quantitative trait loci (QTL) are predicted to confer broad-spectrum and durable disease resistance. Application of disease resistance QTL in crop improvement programs has been hindered because we lack an understanding of (1) the genes contributing to the QTL-governed phenotype and (2) why certain alleles are more effective than others in conferring resistance. In this study, QTL-associated genes in the germin protein family, germin-like proteins (GLP) and oxalate oxidases (OXO), were identified in the rice genome and their functions were tested. Paralogous multi-gene families underlie the physical QTL regions, with twelve OsGLP members on chromosome (chr) 8 and four OsOXO members on chr 3. Based on shared motifs in 5' regulatory regions and/or protein sequence similarities to cereal orthologues, rice OsGLP genes belong to two germin subfamily groups (GER3 and GER4), and OsOXOs belong to the GER1 group.;Conserved sequences for each gene family were used in RNA-interference gene silencing experiments. As more OsGLP genes were silenced, the more susceptible the plants were to two distinct fungal pathogens, Magnaporthe oryzae (Mo) and Rhizoctonia solani (Rs). Similarly, OsOXO-RNAi plants showed enhanced susceptibility to Mo, Rs and the broad host range pathogen, Sclerotinia sclerotiorum.;OsGLP alleles were compared in resistant (+chr8 QTL) and susceptible (-chr8 QTL) parental rice lines. Cultivar-specific combinations of OsGLP genes were constitutively expressed and transiently induced by both wounding and Mo infection. In agreement with the silencing data, expression profiles suggest that GER4 subfamily members are involved in rice defense response. Transient induction occurred before fungal penetration of the plant cuticle, and differential expression between resistant and susceptible cultivars correlated with differential hydrogen peroxide accumulation after fungal infection and abiotic stresses.;Gene silencing data confirms the roles of OsGLP and OsOXO as contributors to broad-spectrum, basal disease resistance in rice. Studies of allelic diversity among rice varieties suggest that regulation of OsGLPs may explain the effectiveness of resistant alleles compared to susceptible. Germin family proteins are encoded by developmentally regulated gene families in rice and across plant taxa. The germin subfamily members studied here have acquired functions in broad-spectrum defense responses and are important loci for crop improvement.
机译:预测数量性状基因座(QTL)具有广谱和持久的抗病性。抗病性QTL在作物改良计划中的应用受到阻碍,因为我们缺乏对(1)导致QTL控制表型的基因以及(2)为什么某些等位基因在赋予抗性方面比其他等位基因更有效的理解。在这项研究中,在水稻基因组中鉴定了胚芽蛋白家族中与QTL相关的基因,胚芽样蛋白(GLP)和草酸盐氧化酶(OXO),并测试了它们的功能。同源的多基因家族位于物理QTL区,在染色体(chr)8上具有十二个OsGLP成员,在chr 3上具有四个OsOXO成员。基于与谷物直向同源物在5'调控区的共享基序和/或蛋白质序列相似性,水稻OsGLP该基因属于两个胚芽亚家族组(GER3和GER4),OsOXO属于GER1组。;每个基因家族的保守序列用于RNA干扰基因沉默实验。随着更多的OsGLP基因沉默,植物对两种不同的真菌病原体-稻瘟病菌(Mo)和茄根枯菌(Rhizoctonia solani)(Rs)的敏感性更高。同样,OsOXO-RNAi植物对Mo,Rs和广泛的寄主病原菌核盘菌(Sclerotonia sclerotiorum)表现出更高的敏感性。在抗性(+ chr8 QTL)和易感性(-chr8 QTL)亲本水稻品系中比较了OsGLP等位基因。创伤和Mo感染均组成型表达并短暂诱导OsGLP基因的特定品种组合。与沉默数据一致,表达谱表明GER4亚家族成员参与水稻防御反应。瞬时诱导发生在植物表皮的真菌穿透之前,抗性和易感品种之间的差异表达与真菌感染和非生物胁迫后差异的过氧化氢积累相关;基因沉默数据证实了OsGLP和OsOXO在广谱中的作用,水稻的基础疾病抗性。水稻品种间等位基因多样性的研究表明,OsGLPs的调控可能解释了抗性等位基因与易感基因相比的有效性。胚芽家族蛋白由水稻和整个植物类群中受发育调控的基因家族编码。此处研究的胚芽蛋白亚家族成员已在广谱防御反应中获得了功能,并且是作物改良的重要基因座。

著录项

  • 作者

    Davidson, Rebecca M.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Biology Molecular.;Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:56

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