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首页> 外文期刊>Journal of Plant Physiology >Actin marker lines in grapevine reveal a gatekeeper function of guard cells.
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Actin marker lines in grapevine reveal a gatekeeper function of guard cells.

机译:葡萄藤中的肌动蛋白标记线揭示了防护细胞的网守功能。

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摘要

Resistance to abiotic and biotic stress is a central topic for sustainable agriculture, especially in grapevine, one of the field crops with the highest economic output per acreage. As early cellular factors for plant defense, actin microfilaments (AF) are of high relevance. We therefore generated a transgenic actin marker line for grapevine by expressing a fusion protein between green fluorescent protein and the second actin-binding domain of Arabidopsis ( Arabidopsis thaliana) fimbrin, AtFIM1. Based on this first cytoskeletal-marker line in grapevine, the response of AFs to phytopathogenic microorganisms could be followed in vivo. Upon inoculation with fluorescently labeled strains of phytopathogenic bacteria, actin responses were confined to the guard cells. In contrast, upon contact with zoospores of Plasmopara viticola, not only the guard cells, but also epidermal pavement cells, where no zoospores had attached responded with the formation of a perinuclear actin basket. Our data support the hypothesis that guard cells act as pacemakers of defense, dominating the responses of the remaining epidermal cells.
机译:对非生物和生物应激的抵抗是可持续农业的核心课题,特别是在葡萄维葡萄酒中,其中一个野外作物,具有最高的经济产量。作为植物防御的早期细胞因素,肌动蛋白微丝(AF)具有高相关性。因此,我们通过在绿色荧光蛋白和拟南芥(Arabidopsis Thilanaa)Fimbrin,Atfim1之间表达融合蛋白来产生用于葡萄肽的转基因肌动蛋白标记线。基于葡萄葡萄酒中的第一种细胞骨架标记线,体内可以遵循AFS与植物致病微生物的响应。在接种荧光致病细菌的荧光致病菌菌株时,肌动蛋白应答被限制在保护细胞上。相比之下,在与Plasmopara viticola的动物孢子接触时,不仅是防护细胞,而且表皮路面细胞,在没有动物孢子的形成时,没有血清扫描蛋白篮的形成。我们的数据支持保护细胞作为防御的起搏器,占据剩余表皮细胞的反应的假设。

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