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一种基于海带多糖的制剂通过直接抗真菌活性和激发宿主防御相关基因来保护小麦免受[具体侵害未提及]。

A Laminarin-Based Formulation Protects Wheat Against via Direct Antifungal Activity and Elicitation of Host Defense-Related Genes.

作者信息

de Borba Marlon C, Velho Aline C, de Freitas Mateus B, Holvoet Maxime, Maia-Grondard Alessandra, Baltenweck Raymonde, Magnin-Robert Maryline, Randoux Béatrice, Hilbert Jean-Louis, Reignault Philippe, Hugueney Philippe, Siah Ali, Stadnik Marciel J

机构信息

Federal University of Santa Catarina, Agricultural Science Center (UFSC-CCA), Laboratory of Plant Pathology, Rod. Admar Gonzaga 1346, 88034-001 Florianópolis-SC, Brazil.

Joint Research Unit Number 1158 BioEcoAgro, Junia, Université de Lille, Université Liège, UPJV, Université d'Artois, ULCO, INRAE, 2 Rue Norbert Ségard, BP 41290, F-59014 Lille Cedex, France.

出版信息

Plant Dis. 2022 May;106(5):1408-1418. doi: 10.1094/PDIS-08-21-1675-RE. Epub 2022 Apr 4.

Abstract

The present study aimed to evaluate the potential of the laminarin-based formulation Vacciplant to protect and induce resistance in wheat against , a major pathogen on this crop. Under greenhouse conditions, a single foliar spraying of the product 2 days before inoculation with reduced disease severity and pycnidium density by 42 and 45%, respectively. Vacciplant exhibited a direct antifungal activity on conidial germination both in vitro and in planta. Moreover, it reduced in planta substomatal colonization as well as pycnidium formation on treated leaves. Molecular investigations revealed that Vacciplant elicits but did not prime the expression of several wheat genes related to defense pathways, including phenylpropanoids (phenylalanine ammonia-lyase and chalcone synthase), octadecanoids (lipoxygenase and allene oxide synthase), and pathogenesis-related proteins (β-1,3-endoglucanase and chitinase). By contrast, it did not modulate the expression of oxalate oxidase gene involved in the reactive oxygen species metabolism. Ultrahigh-performance liquid chromatography-mass spectrometry analysis indicated limited changes in leaf metabolome after product application in both noninoculated and inoculated conditions, suggesting a low metabolic cost associated with induction of plant resistance. This study provides evidence that the laminarin-based formulation confers protection to wheat against through direct antifungal activity and elicitation of plant defense-associated genes.

摘要

本研究旨在评估基于海带多糖的制剂Vacciplant保护小麦并诱导其对该作物主要病原菌产生抗性的潜力。在温室条件下,接种前2天对小麦进行一次叶面喷施该产品,可使病情严重程度和分生孢子器密度分别降低42%和45%。Vacciplant在体外和植物体内均对病原菌分生孢子萌发表现出直接的抗真菌活性。此外,它还减少了处理叶片上的气孔下皮层定殖以及分生孢子器的形成。分子研究表明,Vacciplant可引发但不能启动与防御途径相关的几个小麦基因的表达,包括苯丙烷类(苯丙氨酸解氨酶和查尔酮合酶)、十八烷类(脂氧合酶和丙二烯氧化物合酶)以及病程相关蛋白(β-1,3-葡聚糖酶和几丁质酶)。相比之下,它并未调节参与活性氧代谢的草酸氧化酶基因的表达。超高效液相色谱-质谱分析表明,在未接种和接种条件下施用该产品后,叶片代谢组的变化有限,这表明诱导植物抗性所涉及的代谢成本较低。本研究提供了证据,证明基于海带多糖的制剂通过直接抗真菌活性和引发植物防御相关基因来赋予小麦对该病原菌的保护作用。

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