首页> 外文期刊>Journal of Plant Physiology >Differential gene expression in kernels and silks of maize lines with contrasting levels of ear rot resistance after Fusarium verticillioides infection.
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Differential gene expression in kernels and silks of maize lines with contrasting levels of ear rot resistance after Fusarium verticillioides infection.

机译:黄萎病菌感染后玉米穗和穗丝抗性水平不同,在玉米粒和丝中表达差异基因。

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Fusarium verticillioides is the causal agent of ear rot in most maize-growing areas of southern Europe. F. verticillioides produces fumonisins commonly found at biologically significant concentrations in maize grain; the molecular interaction between the fungus and the plant is not well known, and little information is currently available about the defense response of maize against F. verticillioides infection. We attempted to identify genes that may be involved in Fusarium ear rot resistance using resistant and susceptible maize genotypes. Kernels of the resistant inbred showed significantly reduced incidence of infection by F. verticillioides, limited amounts of total fumonisin content and reduced fungal growth, as indicated by a lower copy number of beta -tubulin 2 and FUM 21 genes of F. verticillioides. Gene expression data were obtained from microarray hybridizations using maize seeds infected with F. verticillioides, by comparing seeds at 0 and 48 h after infection. Differentially expressed sequences were identified and classified into 11 functional categories. Most of the differentially expressed genes were assigned to the category "cell rescue, defense and virulence" in both resistant and susceptible maize lines. These genes encode for PR proteins, detoxification enzymes and beta -glucosidases. Most of the pathogenesis-related genes were differentially activated after F. veticillioides infection, depending on the resistance level of the maize genotypes. In kernels of the resistant line, the defense-related genes assayed were transcribed at high levels before infection and provided basic defense against the fungus. In the susceptible kernels, the defense-related genes were induced from a basal level, responding specifically to pathogen infection. The qRT-PCR in infected silks showed that PR1, PR5, PRm6 and thaumatin genes had lower expression ratios in the resistant line compared to the susceptible one.Digital Object Identifier http://dx.doi.org/10.1016/j.jplph.2010.05.015
机译:在欧洲南部大多数玉米种植地区,枯萎病是耳腐的病因。 F。轮状类固醇产生了伏马菌素,通常在玉米籽粒中具有很高的生物浓度。真菌与植物之间的分子相互作用尚不为人所知,目前关于玉米对F防御反应的信息很少。荨麻疹感染。我们尝试使用抗性和易感玉米基因型鉴定可能与 Fusarium 耳腐病抗性有关的基因。抗性近交种的核心显示出F感染的发生率显着降低。网状葡萄球菌,有限的总伏马菌素含量和减少的真菌生长,如的β- tubulin 2和 FUM 21基因的拷贝数较低> F。丝状虫。基因表达数据是使用感染了iF的玉米种子从微阵列杂交获得的。通过比较感染后0和48 h的种子来获得黄萎病。鉴定出差异表达的序列并将其分类为11个功能类别。在抗性和易感玉米品系中,大多数差异表达基因都被归为“细胞拯救,防御和毒力”类别。这些基因编码PR蛋白,解毒酶和β-葡萄糖苷酶。 F后大多数发病机理相关基因被差异激活。根据玉米基因型的抗性水平,是否感染了小柱藻。在抗性品系的内核中,检测到的与防御相关的基因在感染前被高水平转录,并提供了针对真菌的基本防御。在易感的谷粒中,与防御相关的基因是从基础水平诱导而来的,专门针对病原体感染。感染的蚕丝中的qRT-PCR表明,与易感基因相比,PR1,PR5,PRm6和thaumatin基因在抗性品系中的表达率较低。数字对象标识符http://dx.doi.org/10.1016/j.jplph。 2010.05.015

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