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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Signaling mechanisms underlying systemic acquired resistance to microbial pathogens
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Signaling mechanisms underlying systemic acquired resistance to microbial pathogens

机译:全身性获得抗微生物病原体的信号机制

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摘要

Plants respond to biotic stress by inducing a variety of responses, which not only protect against the immediate diseases but also provide immunity from future infections. One example is systemic acquired resistance (SAR), which provides long-lasting and broad-spectrum protection at the whole plant level. The induction of SAR prepares the plant for a more robust response to subsequent infections from related and unrelated pathogens. SAR involves the rapid generation of signals at the primary site of infection, which are transported to the systemic parts of the plant presumably via the phloem. SAR signal generation and perception requires an intact cuticle, a waxy layer covering all aerial parts of the plant. A chemically diverse set of SAR inducers has already been identified, including hormones (salicylic acid, methyl salicylate), primary/secondary metabolites (nitric oxide, reactive oxygen species, glycerol-3-phosphate, azelaic acid, pipecolic acid, dihyroabetinal), fatty acid/lipid derivatives (18 carbon unsaturated fatty acids, galactolipids), and proteins (DIR1-Defective in Induced Resistance 1, AZI1-Azelaic acid Induced 1). Some of these are demonstrably mobile and the phloem loading routes for three of these SAR inducers is known. Here we discuss the recent findings related to synthesis, transport, and the relationship between these various SAR inducers.
机译:植物通过诱导各种反应来应对生物压力,这不仅可以防止直接疾病,而且还提供来自未来感染的免疫力。一个例子是系统获取的电阻(SAR),它在整个工厂水平提供长持久和广谱保护。 SAR的诱导使植物为来自相关和无关病原体的后续感染的更强大的响应。 SAR涉及在初级感染部位的快速产生信号,其通过韧皮孔将其运输到植物的全身部位。 SAR信号产生和感知需要一个完整的角质层,覆盖植物的所有空中部位的蜡质层。已经鉴定了一种化学多样的SAR诱导剂,包括激素(水杨酸,水杨酸甲酯),初级/仲代谢物(一氧化氮,反应性氧物质,甘油-3-磷酸,偶氮酸,百乙酸,二卤虫),脂肪酸/脂质衍生物(18个碳不饱和脂肪酸,半乳糖脂)和蛋白质(诱导抗性1的Dir1缺陷1,Azi1-壬二酸诱导1)。其中一些是易于移动的,并且已知其中三个的韧皮型装载路线是已知的。在这里,我们讨论最近与合成,运输和这些各种SAR诱导剂之间的关系有关的发现。

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