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小麦3个被白粉菌诱导基因表达的分析   总被引:5,自引:0,他引:5  
含有抗白粉病基因Pm2 1的小麦 簇毛麦 6VS/6AL易位系在接种白粉菌后 ,叶片无任何病症。应用mRNA差异显示技术从小麦 簇毛麦 6VS/ 6AL易位系分离到 3个叶绿体蛋白基因片段 ,它们是TaD5、TaD2 3和TaD33,3个基因片段分别与小麦叶绿体基因rbcL ,拟斯卑尔脱山羊草叶绿体RNA聚合酶α亚基基因rpoA和大麦 1,5 二磷酸核酮糖羧化酶活化酶基因(Rubiscoactivase ,RcaA2 )同源性达 97%、98%和 88%。据此推测TaD5、TaD2 3和TaD33分别是 6VS/ 6AL易位系中的rbcL、rpoA和 1,5 二磷酸核酮糖羧化酶活化酶基因的片断。Northern分析表明这 3个叶绿体基因的表达在白粉菌诱导下得到增强。叶绿体基因组含有胸腺嘧啶重复区是在mRNA差异显示中克隆到叶绿体基因组基因的原因  相似文献   

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为研究抗白粉病小麦(Triticum aestivum L.)品系在小麦白粉病菌(Blumeria graminis f. sp.tritici)侵染后有无LRK10同源基因表达,依据小麦蛋白激酶LRK10和其它植物蛋白激酶第6亚结构域设计了一个5’-RACE兼并性引物。以接种小麦白粉病菌后的小麦抗白粉病品系“99—2439”幼苗叶片cDNA为模板进行5’-RACE扩增,获得了一个1551bp长的蛋白激酶基因cDNA片段(S1125,GenBank登录号:AY584533)。此后,通过RACE技术成功地获得了该基因的全长cDNA克隆。该克隆编码637个氨基酸组成的多肽。同源性查寻表明,该基因属于先前命名为wfrk(wheat leaf rust kinase)的小麦类受体蛋白激酶基因家族。与LRK10相似,这个新的小麦类受体蛋白激酶有5个明显的功能域:位于氨基端的疏水信号序列、推测的胞外结构域、跨膜域、高荷电序列和位于羧基端的丝氨酸/苏氨酸激酶域,因此被命名为TaLRK(Triticum aestivum LRK)。以小麦肌动蛋白基因为对照,通过半定量反转录PCR(semi—QRT—PCR)技术对叶片中TaLRK基因在小麦白粉病菌接种后的转录水平表达谱进行了研究。结果表明,小麦白粉病菌的侵染使TaLRK基因的转录显著增强。组织特异性表达分析证明,这一基因仅在小麦的绿色部分表达。研究结果提示TaLRK可能参与了小麦的抗白粉病反应。  相似文献   

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Arabidopsis does not support the growth and asexual reproduction of the barley pathogen, Blumeria graminis f. sp. hordei Bgh). A majority of germlings fail to penetrate the epidermal cell wall and papillae. To gain additional insight into this interaction, we determined whether the salicylic acid (SA) or jasmonate (JA)/ethylene (ET) defence pathways played a role in blocking barley powdery mildew infections. Only the eds1 mutant and NahG transgenics supported a modest increase in penetration success by the barley powdery mildew. We also compared the global gene expression patterns of Arabidopsis inoculated with the non-host barley powdery mildew to those inoculated with a virulent, host powdery mildew, Erysiphe cichoracearum. Genes repressed by inoculations with non-host and host powdery mildews relative to non-inoculated control plants accounted for two-thirds of the differentially expressed genes. A majority of these genes encoded components of photosynthesis and general metabolism. Consistent with this observation, Arabidopsis growth was inhibited following inoculation with Bgh, suggesting a shift in resource allocation from growth to defence. A number of defence-associated genes were induced during both interactions. These genes likely are components of basal defence responses, which do not effectively block host powdery mildew infections. In addition, genes encoding defensins, anti-microbial peptides whose expression is under the control of the JA/ET signalling pathway, were induced exclusively by non-host pathogens. Ectopic activation of JA/ET signalling protected Arabidopsis against two biotrophic host pathogens. Taken together, these data suggest that biotrophic host pathogens must either suppress or fail to elicit the JA/ET signal transduction pathway.  相似文献   

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利用cDNA-AFLP技术分析了茶树在干旱胁迫诱导下的基因表达差异,通过256对引物组合共获得27个差异表达片段(TDF),通过BLAST比对分析,按其功能分为转录因子、基础代谢相关蛋白、抗逆蛋白、信号转导蛋白,此外还有一些假设蛋白、未知蛋白和没有比对的基因片段。同时利用RT-PCR对片段GH2和GH15进行验证,表明GH2和GH15片段均受到干旱胁迫诱导表达。这些研究结果显示茶树在干旱胁迫下的逆境反应非常复杂,涉及多种代谢过程中的众多基因。  相似文献   

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Powdery mildews, obligate biotrophic fungal parasites on a wide range of important crops, can be controlled by plant resistance (R) genes, but these are rapidly overcome by parasite mutants evading recognition. It is unknown how this rapid evolution occurs without apparent loss of parasite fitness. R proteins recognize avirulence (AVR) molecules from parasites in a gene-for-gene manner and trigger defense responses. We identify AVR(a10) and AVR(k1) of barley powdery mildew fungus, Blumeria graminis f sp hordei (Bgh), and show that they induce both cell death and inaccessibility when transiently expressed in Mla10 and Mlk1 barley (Hordeum vulgare) varieties, respectively. In contrast with other reported fungal AVR genes, AVR(a10) and AVR(k1) encode proteins that lack secretion signal peptides and enhance infection success on susceptible host plant cells. AVR(a10) and AVR(k1) belong to a large family with >30 paralogues in the genome of Bgh, and homologous sequences are present in other formae speciales of the fungus infecting other grasses. Our findings imply that the mildew fungus has a repertoire of AVR genes, which may function as effectors and contribute to parasite virulence. Multiple copies of related but distinct AVR effector paralogues might enable populations of Bgh to rapidly overcome host R genes while maintaining virulence.  相似文献   

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To identify genes involved in the susceptibility to powdery mildew in wheat, genechip hybridization experiments were performed applying interactions between resistant and susceptible wheat cultivars and powdery mildew. Ten genes were found to express exclusively in the susceptible host after inoculation. The single cell transient expression experiments revealed that the RNA interference (RNAi) of two expressed sequence tag (EST) sequences (accession No. BQ168479 and CA648596) could enhance host resistance by 22 and 15 %, respectively. Full-length cDNA cloning revealed that they represented long non-coding RNAs (lncRNAs) and markedly accumulated during the powdery mildew primary infection.  相似文献   

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