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由商业提取的泡叶藻提取物在番茄植株上的应用引起的转录组变化。

Transcriptomic changes induced by applications of a commercial extract of Ascophyllum nodosum on tomato plants.

机构信息

Department of Life Sciences, Faculty of Science and Technology, The University of the West Indies, St. Augustine, Trinidad and Tobago.

出版信息

Sci Rep. 2022 May 16;12(1):8042. doi: 10.1038/s41598-022-11263-z.

Abstract

Extracts of Ascophyllum nodosum are commonly used as commercial biostimulants in crop production. To further understand the seaweed extract-induced phenomena in plants, a transcriptomic study was conducted. RNA-seq differential gene expression analysis of tomato plants treated with a commercial A. nodosum extract formulation (Stimplex) revealed the up-regulation of 635 and down-regulation of 456 genes. Ontology enrichment analysis showed three gene categories were augmented, including biological processes, cellular components, and molecular functions. KEGG pathway analysis revealed that the extract had a strong influence on the expression of genes involved in carbon fixation, secondary metabolism, MAPK-signalling, plant hormone signal transduction, glutathione metabolism, phenylpropanoid and stilbenoid metabolism, and plant-pathogen interactions. qRT-PCR validation analysis using 15 genes established a strong correlation with the RNA sequencing results. The activities of defence enzymes were also significantly enhanced by seaweed extract treatment. Furthermore, AN-SWE treated tomato plants had significantly higher chlorophyll and growth hormone content and showed improved plant growth parameters and nutrient profiles than the control. It is postulated that seaweed extract-induced gene regulation was responsible for favourable plant responses that enabled better growth and tolerance to stress conditions. This study provides evidence at the transcriptomic level for the positive effects of foliar application of the Ascophyllum nodosum extract (Stimplex) observed in treated tomato plants.

摘要

裙带菜提取物通常被用作作物生产中的商业生物刺激素。为了进一步了解海藻提取物在植物中引起的现象,进行了转录组学研究。用商业裙带菜提取物制剂(Stimplex)处理的番茄植物的 RNA-seq 差异基因表达分析显示,有 635 个基因上调,456 个基因下调。本体富集分析显示,有三个基因类别得到了增强,包括生物过程、细胞成分和分子功能。KEGG 途径分析表明,提取物对参与碳固定、次生代谢、MAPK 信号转导、植物激素信号转导、谷胱甘肽代谢、苯丙烷和芪类代谢以及植物-病原体相互作用的基因表达有很强的影响。使用 15 个基因的 qRT-PCR 验证分析与 RNA 测序结果建立了很强的相关性。海藻提取物处理还显著增强了防御酶的活性。此外,与对照相比,用 AN-SWE 处理的番茄植物的叶绿素和生长激素含量显著提高,并且表现出改善的植物生长参数和营养状况。据推测,海藻提取物诱导的基因调控是受处理的番茄植物表现出良好生长和对胁迫条件的耐受性的原因。本研究在转录组水平上为叶面喷施裙带菜提取物(Stimplex)对处理后的番茄植物的积极影响提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f3c/9110418/c1e970d8245e/41598_2022_11263_Fig1_HTML.jpg

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