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首页> 外文期刊>Plant physiology >NpPDR1, a pleiotropic drug resistance-type ATP-binding cassette transporter from Nicotiana plumbaginifolia, plays a major role in plant pathogen defense
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NpPDR1, a pleiotropic drug resistance-type ATP-binding cassette transporter from Nicotiana plumbaginifolia, plays a major role in plant pathogen defense

机译:NpPDR1是一种来自烟草(Nicotiana plumbaginifolia)的多效耐药型ATP结合盒转运蛋白,在植物病原体防御中起主要作用

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Nicotiana plumbaginifolia NpPDR1, a plasma membrane pleiotropic drug resistance-type ATP-binding cassette transporter formerly named NpABC1, has been suggested to transport the diterpene sclareol, an antifungal compound. However, direct evidence for a role of pleiotropic drug resistance transporters in the plant defense is still lacking. In situ immunolocalization and histochemical analysis using the gusA reporter gene showed that NpPDR1 was constitutively expressed in the whole root, in the leaf glandular trichomes, and in the flower petals. However, NpPDR1 expression was induced in the whole leaf following infection with the fungus Botrytis cinerea, and the bacteria Pseudomonas syringae pv tabaci, Pseudomonas fluorescens, and Pseudomonas marginalis pv marginalis, which do not induce a hypersensitive response in N. plumbaginifolia, whereas a weaker response was observed using P. syringae pv syringae, which does induce a hypersensitive response. Induced NpPDR1 expression was more associated with the jasmonic acid than the salicylic acid signaling pathway. These data suggest that NpPDR1 is involved in both constitutive and jasmonic acid-dependent induced defense. Transgenic plants in which NpPDR1 expression was prevented by RNA interference showed increased sensitivity to sclareol and reduced resistance to B. cinerea. These data show that NpPDR1 is involved in pathogen resistance and thus demonstrate a new role for the ATP- binding cassette transporter family.
机译:有人建议将烟草李子NpPDR1(一种质膜多效药物耐药性ATP结合盒转运蛋白,原名NpABC1)转运为抗真菌化合物二萜香紫苏。但是,仍然缺少直接作用的多效抗药性转运蛋白在植物防御中的作用的直接证据。使用gusA报告基因的原位免疫定位和组织化学分析表明,NpPDR1在整个根,叶腺毛状体和花瓣中组成性表达。然而,NpPDR1表达在真菌灰葡萄孢,丁香假单胞菌,荧光假单胞菌和边缘假单胞菌pv边缘假单胞菌感染后在整片叶子中被诱导,但它们不会诱导李小叶猪笼草的超敏反应。使用丁香假单胞菌丁香假单胞菌可观察到这种反应,但确实会引起过敏反应。诱导的NpPDR1表达与茉莉酸的关系比水杨酸的信号传导的途径更多。这些数据表明NpPDR1参与组成型和茉莉酸依赖性诱导防御。 RNA干扰阻止了NpPDR1表达的转基因植物显示出对香紫苏醇的敏感性提高,并且对灰葡萄双歧杆菌的抗性降低。这些数据表明,NpPDR1参与病原体抗性,因此证明了ATP结合盒转运蛋白家族的新作用。

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