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国家自然科学基金(30871528)

作品数:2 被引量:3H指数:1
相关作者:解超杰孙其信辛明明尹玉静倪中福更多>>
相关机构:中国农业大学更多>>
发文基金:国家自然科学基金北京市自然科学基金霍英东教育基金更多>>
相关领域:农业科学更多>>

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白粉菌(Erysiphe graminis)侵染诱导表达的小麦糖苷水解酶基因TaGlc2的克隆与鉴定
2009年
真菌病害是世界小麦生产中的最重要的病害之一。目前,在小麦中已经鉴定出一批小麦病菌侵染诱导基因,包括病程相关基因和抗真菌水解酶基因(葡聚糖酶基因和几丁质酶基因)。最近的研究表明,植物1,3-β-葡聚糖酶参与对真菌侵染的防卫。本研究从小麦cDNA文库中克隆出一个编码小麦1,3-β-葡聚糖酶的新基因,命名为TaGlc2。该基因编码的氨基酸序列与糖苷水解酶基因家族17高度同源。采用实时定量PCR分析方法对TaGlc2基因在白粉菌侵染(Erysiphe graminis)后小麦叶片中的表达模式进行研究,发现TaGlc2基因在白粉菌侵染6h后表达明显增强,至24h达到峰值,说明该基因受白粉菌侵染诱导表达。获得了TaGlc2基因5'上游调控区序列,发现存在与病菌侵染响应有关的顺式元件。小麦TaGlc2基因在小麦白粉病抗性上可能具有重要作用。
Ramesh N PUDAKE辛明明尹玉静解超杰倪中福孙其信
关键词:白粉菌真菌侵染小麦
Transcriptome Comparison of Susceptible and Resistant Wheat in Response to Powdery Mildew Infection被引量:3
2012年
Powdery mildew (Pro) caused by the infection of Blumeria graminis f. sp. tritici (Bgt) is a worldwide crop disease resulting in significant loss of wheat yield. To profile the genes and pathways responding to the Bgt infection, here, using Affymetrix wheat microarrays, we compared the leaf transcriptomes before and after Bgt inoculation in two wheat genotypes, a Pm-susceptible cultivar Jingdong 8 (S) and its near-isogenic line (R) carrying a single Pm resistant gene Pm30. Our analysis showed that the original gene expression status in the S and R genotypes of wheat was almost identical before Bgt inoculation, since only 60 genes exhibited differential expression by P = 0.01 cutoff. However, 12 h after Bgt inoculation, 3014 and 2800 genes in the S and R genotype, respectively, responded to infec- tion. A wide range of pathways were involved, including cell wall fortification, flavonoid biosynthesis and metabolic processes. Further- more, for the first time, we show that sense-antisense pair genes might be participants in wheat-powdery mildew interaction. In addition, the results of qRT-PCR analysis on several candidate genes were consistent with the microarray data in their expression patterns. In summary, this study reveals leaf transcriptome changes before and after powdery mildew infection in wheat near-isogenic lines, suggest- ing that powdery mildew resistance is a highly complex systematic response involving a large amount of gene regulation.
Mingming XinXiangfeng WangHuiru PengYingyin YaoChaojie XieYao HanZhongfuNiQixin Sun
关键词:WHEAT
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