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接种丁香假单胞菌 pv 丁香后黄瓜中水杨酸积累的系统性诱导。

Systemic Induction of Salicylic Acid Accumulation in Cucumber after Inoculation with Pseudomonas syringae pv syringae.

机构信息

Department of Botany and Plant Pathology, Michigan State University, East Lansing, Michigan 48824-1312.

出版信息

Plant Physiol. 1991 Dec;97(4):1342-7. doi: 10.1104/pp.97.4.1342.

Abstract

Inoculation of one true leaf of cucumber (Cucumis sativus L.) plants with Pseudomonas syringae pathovar syringae results in the systemic appearance of salicylic acid in the phloem exudates from petioles above, below, and at the site of inoculation. Analysis of phloem exudates from the petioles of leaves 1 and 2 demonstrated that the earliest increases in salicylic acid occurred 8 hours after inoculation of leaf 1 in leaf 1 and 12 hours after inoculation of leaf 1 in leaf 2. Detaching leaf 1 at intervals after inoculation demonstrated that leaf 1 must remain attached for only 4 hours after inoculation to result in the systemic accumulation of salicylic acid. Because the levels of salicylic acid in phloem exudates from leaf 1 did not increase to detectable levels until at least 8 hours after inoculation with P. s. pathovar syringae, the induction of increased levels of salicylic acid throughout the plant are presumably the result of another chemical signal generated from leaf 1 within 4 hours after inoculation. Injection of salicylic acid into tissues at concentrations found in the exudates induced resistance to disease and increased peroxidase activity. Our results support a role for salicylic acid as an endogenous inducer of resistance, but our data also suggest that salicylic acid is not the primary systemic signal of induced resistance in cucumber.

摘要

将黄瓜(Cucumis sativus L.)植株的第一片真叶接种丁香假单胞菌 pv. 丁香致病变种,会导致叶柄上部、下部和接种部位的韧皮部渗出液中出现水杨酸。分析叶片 1 和 2 叶柄的韧皮部渗出液表明,叶片 1 中接种后 8 小时和叶片 2 中接种后 12 小时,水杨酸最早增加。在接种后间隔时间切下叶片 1 表明,叶片 1 在接种后仅需保持附着 4 小时,即可导致水杨酸的系统积累。因为在用 P. s. pv. 丁香致病变种接种后至少 8 小时,叶片 1 韧皮部渗出液中的水杨酸水平才增加到可检测水平,因此整个植物中水杨酸水平的诱导增加可能是接种后 4 小时内叶片 1 产生的另一种化学信号的结果。将浓度与渗出液中相同的水杨酸注射到组织中,可诱导对疾病的抗性和过氧化物酶活性的增加。我们的结果支持水杨酸作为抗性的内源性诱导剂的作用,但我们的数据还表明,水杨酸不是黄瓜中诱导抗性的主要系统信号。

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