首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >CsPDR8 and CsPDR12, two of the 16 pleiotropic drug resistance genes in cucumber, are transcriptionally regulated by phytohormones and auxin herbicide in roots
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CsPDR8 and CsPDR12, two of the 16 pleiotropic drug resistance genes in cucumber, are transcriptionally regulated by phytohormones and auxin herbicide in roots

机译:黄瓜中16种多效性耐药基因中的两个CsPDR8和CsPDR12受植物激素和植物生长素除草剂根部的转录调控

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摘要

There are 15 and 23 members of the pleiotropic drug resistance (PDR) proteins, a subfamily of ATP-binding cassette (ABC) transporters, in Arabidopsis thaliana and Oryza sativa, respectively. Until recently, only a few members of Arabidopsis thaliana PDRs (AtPDRs) had been characterized in detail but growing reports indicate that proteins of this family may participate in growth regulator-mediated signaling and phytohormone transport. The profile of Oryza sativaPDRs (OsPDRs) expression in response to different stimuli also suggests that some rice PDRs are associated with a phytohormone-mediated response to environmental changes. Due to the lack of full genome resources, only individual members of PDRs in other plants (Nicotiana, Oryza, Glycine or Spirodela) have been studied. We have previously cloned two full cDNA sequences encoding for cucumber homologs of Arabidopsis PDR8 and PDR12. Here, we present the genomic organization of 16 cucumber PDRs and the phylogeny of the predicted Cucumis sativus PDR (CsPDR) proteins. Further analysis of CsPDR8 and CsPDR12 reveal that these cucumber genes are constitutively expressed mainly in roots of young seedlings and flowering plants (CsPDR8 and CsPDR12), and in flowers (CsPDR12). In roots, the transcript of CsPDR8 decreased in response to ABA and markedly raised in the presence of ACC, salicylic acid or jasmonic acid. In comparison, the expression of CsPDR12 was not affected by ACC and significantly increased upon the addition of jasmonic acid, salicylic acid, 2,4-D, kinetin or ABA to the growth media. These data suggest that CsPDR8 and CsPDR12 may be involved in a phytohormone-mediated response of plants to different stimuli by sharing different signaling pathways.
机译:拟南芥和稻中分别有15个和23个多效药物抗性(PDR)蛋白成员,它们是ATP结合盒(ABC)转运蛋白的一个亚家族。直到最近,拟南芥PDR(AtPDRs)的成员只有少数得到详细描述,但越来越多的报道表明该家族的蛋白质可能参与生长调节剂介导的信号传导和植物激素转运。稻米PDRs(OsPDRs)表达对不同刺激的响应也表明某些水稻PDRs与植物激素介导的环境变化响应有关。由于缺乏完整的基因组资源,仅研究了其他植物(烟草,稻,甘氨酸或螺旋藻)中PDR的单个成员。我们以前已经克隆了两个完整的cDNA序列,它们编码拟南芥PDR8和PDR12的黄瓜同源物。在这里,我们介绍了16个黄瓜PDR的基因组组织和预测的Cucumis sativus PDR(CsPDR)蛋白的系统发育。对CsPDR8和CsPDR12的进一步分析表明,这些黄瓜基因主要在幼苗和开花植物(CsPDR8和CsPDR12)的根中以及在花朵(CsPDR12)中组成性表达。在根中,CsPDR8的转录物响应ABA而降低,在ACC,水杨酸或茉莉酸的存在下显着升高。相比之下,CsPDR12的表达不受ACC的影响,并且在向生长培养基中添加茉莉酸,水杨酸,2,4-D,激动素或ABA后显着增加。这些数据表明,CsPDR8和CsPDR12可能通过共享不同的信号通路参与植物激素介导的植物对不同刺激的反应。

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