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来自多花菜豆的一种α-淀粉酶抑制剂基因编码一种具有控制咖啡果小蠹(咖啡果小蠹)潜力的蛋白质。

An alpha-amylase inhibitor gene from Phaseolus coccineus encodes a protein with potential for control of coffee berry borer (Hypothenemus hampei).

作者信息

de Azevedo Pereira Railene, Nogueira Batista João Aguiar, da Silva Maria Cristina Mattar, Brilhante de Oliveira Neto Osmundo, Zangrando Figueira Edson Luiz, Valencia Jiménez Arnubio, Grossi-de-Sa Maria Fátima

机构信息

EMBRAPA Recursos Genéticos e Biotecnologia, Brasília - DF 70770-900, Brazil.

出版信息

Phytochemistry. 2006 Sep;67(18):2009-16. doi: 10.1016/j.phytochem.2006.06.029. Epub 2006 Aug 9.

Abstract

Plant alpha-amylase inhibitors are proteins found in several plants, and play a key role in natural defenses. In this study, a gene encoding an alpha-amylase inhibitor, named alphaAI-Pc1, was isolated from cotyledons of Phaseolus coccineus. This inhibitor has an enhanced primary structure to P. vulgaris alpha-amylase inhibitors (alpha-AI1 and alpha-AI2). The alphaAI-Pc1 gene, constructed with the PHA-L phytohemaglutinin promoter, was introduced into tobacco plants, with its expression in regenerated (T0) and progeny (T1) transformant plants monitored by PCR amplification, enzyme-linked immunosorbent assay (ELISA) and immunoblot analysis, respectively. Seed protein extracts from selected transformants reacted positively with a polyclonal antibody raised against alphaAI-1, while no reaction was observed with untransformed tobacco plants. Immunological assays showed that the alphaAI-Pc1 gene product represented up to 0.05% of total soluble proteins in T0 plants seeds. Furthermore, recombinant alphaAI-Pc1 expressed in tobacco plants was able to inhibit 65% of digestive H. hampei alpha-amylases. The data herein suggest that the protein encoded by the alphaAI-Pc1 gene has potential to be introduced into coffee plants in order to increase their resistance to the coffee berry borer.

摘要

植物α-淀粉酶抑制剂是在多种植物中发现的蛋白质,在植物的天然防御中发挥关键作用。在本研究中,从红花菜豆的子叶中分离出一个编码α-淀粉酶抑制剂的基因,命名为αAI-Pc1。与菜豆α-淀粉酶抑制剂(α-AI1和α-AI2)相比,这种抑制剂具有增强的一级结构。用PHA-L植物血凝素启动子构建的αAI-Pc1基因被导入烟草植株,分别通过PCR扩增、酶联免疫吸附测定(ELISA)和免疫印迹分析监测其在再生(T0)和子代(T1)转化植株中的表达。从选定的转化体中提取的种子蛋白提取物与针对αAI-1产生的多克隆抗体发生阳性反应,而未转化的烟草植株则未观察到反应。免疫分析表明,αAI-Pc1基因产物在T0植株种子中占总可溶性蛋白的0.05%。此外,在烟草植株中表达的重组αAI-Pc1能够抑制65%的咖啡果小蠹消化性α-淀粉酶。本文数据表明,αAI-Pc1基因编码的蛋白质有潜力被导入咖啡植株,以提高其对咖啡果小蠹的抗性。

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