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双生病毒 V 感觉启动子在根部的激活仅限于线虫取食部位。

Activation of geminivirus V-sense promoters in roots is restricted to nematode feeding sites.

机构信息

Facultad de Ciencias del Medio Ambiente, Universidad de Castilla-La Mancha, E-45071 Toledo, Spain.

出版信息

Mol Plant Pathol. 2010 May;11(3):409-17. doi: 10.1111/j.1364-3703.2010.00611.x.

Abstract

Obligate sedentary endoparasitic nematodes, such as the root-knot and cyst nematodes, elicit the differentiation of specialized nematode nurse or feeding cells [nematode feeding sites (NFS), giant cells and syncytia, respectively]. During NFS differentiation, marked changes in cell cycle progression occur, partly similar to those induced by some geminiviruses. In this work, we describe the activation of V-sense promoters from the Maize streak virus (MSV) and Wheat dwarf virus (WDV) in NFS formed by root-knot and cyst nematodes. Both promoters were transiently active in microinjection experiments. In tobacco and Arabidopsis transgenic lines carrying promoter-beta-glucuronidase fusions, the MSV V-sense promoter was activated in the vascular tissues of aerial plant parts, primarily leaf and cotyledon phloem tissue and some floral structures. Interestingly, in roots, promoter activation was restricted to syncytia and giant cells tested with four different nematode populations, but undetectable in the rest of the root system. As the activity of the promoter in transgenic rootstocks should be restricted to NFS only, the MSV promoter may have utility in engineering grafted crops for nematode control. Therefore, this study represents a step in the provision of some of the much needed additional data on promoters with restricted activation in NFS useful in biotechnological nematode control strategies.

摘要

专性内寄生的线虫,如根结线虫和孢囊线虫,会诱导专门的线虫护理或取食细胞的分化[分别为线虫取食部位(NFS)、巨型细胞和合胞体]。在 NFS 分化过程中,细胞周期进程发生明显变化,部分变化与某些双生病毒诱导的变化相似。在这项工作中,我们描述了来自玉米线条病毒(MSV)和小麦矮化病毒(WDV)的 V 感启动子在根结线虫和孢囊线虫形成的 NFS 中的激活。两个启动子在微注射实验中均为瞬时激活。在携带启动子-β-葡糖苷酸酶融合的烟草和拟南芥转基因系中,MSV V 感启动子在气生植物部分的维管束组织中被激活,主要是叶和子叶韧皮组织以及一些花结构。有趣的是,在根部,启动子的激活仅限于我们用四个不同的线虫种群测试的合胞体和巨型细胞,但在根系的其余部分无法检测到。由于启动子在转基因砧木中的活性应仅局限于 NFS,因此 MSV 启动子可能在工程嫁接作物的线虫控制方面具有实用性。因此,本研究为在生物技术线虫控制策略中具有 NFS 中受限激活的启动子提供了一些急需的额外数据,迈出了一步。

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