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山葡萄类甜蛋白基因的过表达提高了酿酒葡萄对霜霉病的抗性。

Overexpression of a thaumatin-like protein gene from Vitis amurensis improves downy mildew resistance in Vitis vinifera grapevine.

作者信息

He Rongrong, Wu Jiao, Zhang Yali, Agüero Cecilia B, Li Xinlong, Liu Shaoli, Wang Chaoxia, Walker M Andrew, Lu Jiang

机构信息

The Viticulture and Enology Program, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, 100083, China.

Department of Viticulture and Enology, University of California, Davis, Davis, CA, 95616, USA.

出版信息

Protoplasma. 2017 Jul;254(4):1579-1589. doi: 10.1007/s00709-016-1047-y. Epub 2016 Nov 30.

Abstract

Downy mildew is a highly destructive disease in grapevine production. A gene encoding pathogenesis-related (PR) thaumatin-like protein was isolated from the downy mildew-resistant grapevine "Zuoshan-1," a clonal selection from wild Vitis amurensis Rupr. The predicted thaumatin-like protein (VaTLP) has 225 amino acids and it is acidic, with a calculated isoelectric point of 4.8. The full length of the VaTLP gene was transformed into somatic embryogenic calli of V. vinifera 'Thompson Seedless' via Agrobacterium tumefaciens. Real-time RT-PCR confirmed that the VaTLP gene was expressed at a high level in the transgenic grapevines. Improved resistance of the transgenic lines against downy mildew was evaluated using leaf disks and whole plants inoculated with Plasmopara viticola, the pathogen causing grapevine downy mildew disease. Bioassay of the pathogen showed that both hyphae growth and asexual reproduction were inhibited significantly among the transgenic plants. Histological analysis also confirmed this disease resistance by demonstrating the inhibition and malformation of hyphae development in leaf tissue of the transgenic plants. These results indicated that the accumulation of VaTLP could enhance resistance to P. viticola in transgenic 'Thompson Seedless' grapevines.

摘要

霜霉病是葡萄生产中一种极具破坏性的病害。从抗霜霉病葡萄品种“左山 - 1”(野生山葡萄克隆选种)中分离出一个编码病程相关(PR)类thaumatin蛋白的基因。预测的类thaumatin蛋白(VaTLP)含有225个氨基酸,呈酸性,计算得到的等电点为4.8。通过根癌农杆菌将VaTLP基因的全长导入酿酒葡萄‘汤普森无核’的体细胞胚性愈伤组织中。实时RT - PCR证实VaTLP基因在转基因葡萄中高水平表达。使用接种葡萄霜霉病菌葡萄生单轴霉的叶片圆盘和整株植物来评估转基因株系对霜霉病抗性的提高。病原菌的生物测定表明,转基因植株中的菌丝生长和无性繁殖均受到显著抑制。组织学分析也通过证明转基因植物叶片组织中菌丝发育的抑制和畸形来证实这种抗病性。这些结果表明,VaTLP的积累可以增强转基因‘汤普森无核’葡萄对葡萄生单轴霉的抗性。

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