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对葡萄藤对叶面喷施海藻提取物反应的整体理解。

Holistic understanding of the response of grapevines to foliar application of seaweed extracts.

作者信息

Zarraonaindia Iratxe, Cretazzo Enrico, Mena-Petite Amaia, Díez-Navajas Ana M, Pérez-López Usue, Lacuesta Maite, Pérez-Álvarez Eva Pilar, Puertas Belén, Fernandez-Diaz Catalina, Bertazzon Nadia, Cantos-Villar Emma

机构信息

Department of Genetics, Physical Anthropology and Animal Physiology, Faculty of Science and Technology, University of the Basque Country Universidad del País Vasco/Euskal Herriko Unibertsitatea (UPV/EHU), Leioa (Bizkaia), Spain.

IKERBASQUE, Basque Foundation for Science, Bilbao, Spain.

出版信息

Front Plant Sci. 2023 Feb 24;14:1119854. doi: 10.3389/fpls.2023.1119854. eCollection 2023.

Abstract

Viticulture is highly dependent on phytochemicals to maintain good vineyard health. However, to reduce their accumulation in the environment, green regulations are driving the development of eco-friendly strategies. In this respect, seaweeds have proven to be one of the marine resources with the highest potential as plant protective agents, representing an environmentally-friendly alternative approach for sustainable wine production. The current work follows an interdisciplinary framework to evaluate the capacity of and seaweeds to induce defense mechanisms in grapevine plants. To our knowledge, this is the first study to evaluate as a biostimulator . This macroalgae is relevant since it is an invasive species on the Atlantic and Mediterranean coast causing incalculable economic and environmental burdens. Four extracts (UL1, UL2, RU1 and RU2 developed from and , respectively) were foliar applied to Tempranillo plants cultivated under greenhouse conditions. UL1 and RU2 stood out for their capacity to induce defense genes, such as a and , mainly 24 hours after the first application. The increased expression level of these genes agreed with i) an increase in -piceid and -resveratrol content, mainly in the RU2 treated leaves, and, ii) an increase in jasmonic acid and decrease in salicylic acid. Moreover, an induction of the activity of the antioxidant enzymes was observed at the end of the experiment, with an increase in superoxide dismutase and catalase in the RU2-treated leaves in particular. Interestingly, while foliar fungal diversity was not influenced by the treatments, alga extract amendment modified fungal composition, RU2 application enriching the content of various groups known for their biocontrol activity. Overall, the results evidenced the capacity of for grapevine biostimulation, inducing the activation of several secondary metabolite pathways and promoting the abundance of beneficial microbiota involved in grapevine protection. While further studies are needed to unravel the bioactive compound(s) involved, including conducting field experiments etc., the current findings are the first steps towards the inclusion of in a circular scheme that would reduce its accumulation on the coast and benefit the viticulture sector at the same time.

摘要

葡萄栽培高度依赖植物化学物质来维持葡萄园的良好健康状况。然而,为了减少它们在环境中的积累,绿色法规推动了生态友好型策略的发展。在这方面,海藻已被证明是作为植物保护剂潜力最高的海洋资源之一,代表了一种可持续葡萄酒生产的环境友好型替代方法。当前的工作遵循跨学科框架,以评估[两种海藻名称未给出]海藻诱导葡萄植株防御机制的能力。据我们所知,这是第一项评估[某种海藻名称未给出]作为生物刺激剂的研究。这种大型海藻具有重要意义,因为它是大西洋和地中海沿岸的入侵物种,造成了无法估量的经济和环境负担。从[两种海藻名称未给出]分别提取的四种提取物(UL1、UL2、RU1和RU2)被叶面喷施到温室条件下种植的丹魄植株上。UL1和RU2因其诱导防御基因的能力而脱颖而出,例如[两种基因名称未给出],主要在首次施用后24小时。这些基因表达水平的提高与以下情况一致:i)主要在RU2处理的叶片中,白藜芦醇和反式白藜芦醇含量增加;ii)茉莉酸增加,水杨酸减少。此外,在实验结束时观察到抗氧化酶活性的诱导,特别是在RU2处理的叶片中超氧化物歧化酶和过氧化氢酶增加。有趣的是,虽然叶面真菌多样性不受处理影响,但藻类提取物改良改变了真菌组成,RU2的施用丰富了以其生物防治活性而闻名的各种菌群的含量。总体而言,结果证明了[某种海藻名称未给出]对葡萄生物刺激的能力,诱导了几种次生代谢途径的激活,并促进了参与葡萄保护的有益微生物群的丰度。虽然需要进一步研究来揭示其中涉及的生物活性化合物,包括进行田间试验等,但目前的发现是将[某种海藻名称未给出]纳入循环方案的第一步,该方案将减少其在海岸的积累,同时造福葡萄栽培行业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a94a/10010106/f51631637167/fpls-14-1119854-g001.jpg

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