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首页> 外文期刊>Frontiers in Plant Science >The Novel Gene VpPR4-1 from Vitis pseudoreticulata Increases Powdery Mildew Resistance in Transgenic Vitis vinifera L.
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The Novel Gene VpPR4-1 from Vitis pseudoreticulata Increases Powdery Mildew Resistance in Transgenic Vitis vinifera L.

机译:新型基因<斜斜体> VPPR4-1 来自<斜斜体>血管>斜斜肌>在转基因<斜体> vitis vinifera L中增加粉状霉菌抗性。

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摘要

Pathogenesis-related proteins (PRs) can lead to increased resistance of the whole plant to pathogen attack. Here, we isolate and characterize a PR-4 protein (VpPR4-1) from a wild Chinese grape Vitis pseudoreticulata which shows greatly elevated transcription following powdery mildew infection. Its expression profiles under a number of abiotic stresses were also investigated. Powdery mildew, salicylic acid, and jasmonic acid methyl ester significantly increased the VpPR4-1 induction while NaCl and heat treatments just slightly induced VpPR4-1 expression. Abscisic acid and cold treatment slightly affected the expression level of VpPR4-1 . The VpPR4-1 gene was overexpressed in 30 regenerated V. vinifera cv. Red Globe via Agrobacterium tumefaciens -mediated transformation and verified by the Western blot. The 26 transgenic grapevines exhibited higher expression levels of PR-4 protein content than wild-type vines and six of them were inoculated with powdery mildew which showed that the growth of powdery mildew was repressed. The powdery mildew-resistance of Red Globe transformed with VpPR4-1 was enhanced inoculated with powdery mildew. Moreover, other powdery mildew resistant genes were associated with feedback regulation since VpPR4-1 is in abundance. This study demonstrates that PR-4 protein in grapes plays a vital role in defense against powdery mildew invasion.
机译:病因相关蛋白质(PRS)可以导致整个植物的抗性增加到病原体攻击。在这里,我们将来自野生中国葡萄葡萄的PR-4蛋白(VPPR4-1)分离并表现出粉末状霉菌感染后的转录大大升高。还研究了其在许多非生物胁迫下的表达谱。粉状霉菌,水杨酸和茉莉酸甲酯显着增加了VPPR4-1诱导,而NaCl和热处理略微诱导VPPR4-1表达。脱落酸和冷处理略微影响VPPR4-1的表达水平。 VPPR4-1基因在30个再生V.Vinifera CV中过表达。红球通过土壤杆菌肿瘤癌爆导的转化并被Western印迹验证。 26转基因葡萄藤表现出比野生型葡萄蛋白更高的表达水平,并且其中六个用粉末状霉菌接种,表明粉末状霉菌的生长被压抑。用VPPR4-1转化的红球的粉末状霉菌耐抗性,随着粉末状霉菌接种。此外,由于VPPR4-1处于丰富,因此其他粉末状霉菌抗性基因与反馈调节有关。本研究表明,葡萄中的PR-4蛋白在防御粉末状霉菌侵袭方面发挥着至关重要的作用。

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