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Effects of exogenous application of jasmomic acid and salicylic acid on the leaf and root induction of chemical defence in maize (Zea mays L.).

机译:外源施用茉莉酸和水杨酸对玉米叶片和根系化学防御的诱导作用。

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摘要

We studied (i). the contents of direct defence compounds (DIMBOA and phenolic acids), (ii). expression patterns of direct defence protein mediated genes (PR-2a and MPI) and (iii). expression of indirect defence volatile mediated genes (FPS and TPS) using HPLC and RT-PCR after the application of exogenous JA or SA for one week on the leaves or roots of maize variety 'Gaoyou 115'. JA application on leaves systematically induced gene expression of MPI in the roots, but reduced the contents of DIMBOA, caffeic acid and syringic acid by 10.5%, 40.3% and 43.6% in the roots, respectively. However, JA application to roots induced gene expression of MPI and FPS in the leaves and also significantly increased the DIMBOA content (81.8%) in leaves. While SA application to the leaves systematically induced gene expression of MPI and FPS in the roots and decreased the contents of DIMBOA, coumaric acid, caffeic acid and syringic acid in roots by 45.8%, 64.2%, 60.2% and 72.4%, respectively. Yet SA application to roots only increased the DIMBOA content (95.8%) in leaves. These results suggested a close relationship between the induced defence in the leaves and roots of maize. JA or SA application on leaves can systematically trigger the defence response in the roots of maize, meanwhile JA or SA application to the roots can also systematically lead to the defence response in the leaves of maize.
机译:我们研究了(i)。直接防御化合物(DIMBOA和酚酸)的含量,(ii)。直接防御蛋白介导的基因( PR -2 a 和 MPI )的表达模式和(iii)。外源JA或SA在玉米叶片或根系上施用一周后,采用HPLC和RT-PCR技术表达间接防御挥发性介导的基因( FPS 和 TPS )品种“高邮115”。施用JA能够系统地诱导根部 MPI 的基因表达,但使根部DIMBOA,咖啡酸和丁香酸的含量分别降低了10.5%,40.3%和43.6%。然而,在根部施用JA诱导了叶片中 MPI 和 FPS 的基因表达,并且显着增加了叶片中DIMBOA的含量(81.8%)。在叶片上施用SA可以系统地诱导根部 MPI 和 FPS 基因表达,并使根部DIMBOA,香豆酸,咖啡酸和丁香酸的含量降低45.8。分别为%,64.2%,60.2%和72.4%。然而,根部施用SA只会增加叶片中DIMBOA的含量(95.8%)。这些结果表明,在玉米叶片和根部的诱导防御之间存在密切的关系。在叶片上施用JA或SA可以系统地触发玉米根部的防御反应,而在叶片上施用JA或SA也可以系统地导致玉米叶片中的防御反应。

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