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首页> 外文期刊>Physiologia plantarum >Phytophthora infestans-triggered response of growth- and defense-related genes in potato cultivars with different levels of resistance under the influence of nitrogen availability
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Phytophthora infestans-triggered response of growth- and defense-related genes in potato cultivars with different levels of resistance under the influence of nitrogen availability

机译:氮素影响下疫病疫霉对不同抗性水平马铃薯品种生长和防御相关基因的响应

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摘要

The effects of high and low N concentrations on the Solanum tuberosum-Phytophthora infestans interaction were studied in the potato cultivars Bettina, New York 121, Indira and Arkula, which exhibited different levels of resistance. Aboveground biomass and Chl and N content were significantly higher in all cultivars grown in higher N environments, while C:N ratios were lower, confirming successful application of N. High availability of N significantly increased susceptibility of three of the four potato cultivars, and amounts of pathogen within the infected leaflets determined in a quantitative real-time reverse transcriptase-polymerase chain reaction reflected this. Differential gene expression of P. infestans-induced and -repressed genes derived from three subtracted cDNA libraries at 0, 24, 48 and 72 h post-inoculation was studied in parallel. P. infestans attack led to an induction of defense-related and at the same time repression of growth-related potato genes mainly encoding photosynthetic genes. High N supply led to higher transcript abundance of photosynthetic genes such as Chl a/b-binding protein and ribulose bisphosphate carboxylase. N-dependent suppression of defense-related compounds in absence of the pathogen was not observed. Better N nutrition appeared to allow the plants to invest more resources in defense reactions.
机译:在马铃薯品种Bettina,New York 121,Indira和Arkula中研究了高和低N浓度对马铃薯与马铃薯疫霉菌侵染的影响,这些品种表现出不同的抗性水平。在较高氮环境下生长的所有品种中,地上生物量以及Chl和N含量均显着较高,而C:N比则较低,这证实了氮的成功应用。氮的高利用率显着提高了四个马铃薯品种中三个品种的敏感性和数量。通过定量实时逆转录酶-聚合酶链反应确定的感染小叶内病原体的数量反映了这一点。平行研究了在接种后0、24、48和72小时来自三个减去的cDNA文库的P. infestans诱导和抑制基因的差异基因表达。 P. infestans攻击导致诱导了与防御相关的基因,同时抑制了与生长相关的马铃薯基因,该基因主要编码光合基因。高氮供应导致光合作用基因(例如Chla / b结合蛋白和核糖双磷酸羧化酶)的转录丰度更高。在没有病原体的情况下,未观察到防御相关化合物的N依赖性抑制。更好的氮素营养似乎可以使植物在防御反应中投入更多的资源。

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