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利用转录组学和生理学方法解读在番茄中施用褐藻提取物所发挥的缓解冷胁迫作用。

Transcriptomic and physiological approaches to decipher cold stress mitigation exerted by brown-seaweed extract application in tomato.

作者信息

Borella Matteo, Baghdadi Ali, Bertoldo Giovanni, Della Lucia Maria Cristina, Chiodi Claudia, Celletti Silvia, Deb Saptarathi, Baglieri Andrea, Zegada-Lizarazu Walter, Pagani Elena, Monti Andrea, Mangione Francesca, Magro Francesco, Hermans Christian, Stevanato Piergiorgio, Nardi Serenella

机构信息

Department of Agronomy, Food, Natural Resources, Animals and Environment (DAFNAE), University of Padua, Padua, Italy.

Department of Agricultural and Food Sciences (DISTAL), University of Bologna, Bologna, Italy.

出版信息

Front Plant Sci. 2023 Sep 11;14:1232421. doi: 10.3389/fpls.2023.1232421. eCollection 2023.

Abstract

Chilling temperatures represent a challenge for crop species originating from warm geographical areas. In this situation, biostimulants serve as an eco-friendly resource to mitigate cold stress in crops. Tomato ( L.) is an economically important vegetable crop, but quite sensitive to cold stress, which it encounters in both open field and greenhouse settings. In this study, the biostimulant effect of a brown-seaweed extract (BSE) has been evaluated in tomato exposed to low temperature. To assess the product effects, physiological and molecular characterizations were conducted. Under cold stress conditions, stomatal conductance, net photosynthesis, and yield were significantly (p ≤ 0.05) higher in BSE-treated plants compared to the untreated ones. A global transcriptomic survey after BSE application revealed the impact of the BSE treatment on genes leading to key responses to cold stress. This was highlighted by the significantly enriched GO categories relative to proline (GO:0006560), flavonoids (GO:0009812, GO:0009813), and chlorophyll (GO:0015994). Molecular data were integrated by biochemical analysis showing that the BSE treatment causes greater proline, polyphenols, flavonoids, tannins, and carotenoids contents.The study highlighted the role of antioxidant molecules to enhance tomato tolerance to low temperature mediated by BSE-based biostimulant.

摘要

低温对原产于温暖地理区域的作物品种构成挑战。在这种情况下,生物刺激剂作为一种生态友好型资源,可减轻作物的冷害胁迫。番茄(L.)是一种具有重要经济价值的蔬菜作物,但对冷害胁迫相当敏感,无论是在露地还是温室环境中都会遇到这种情况。在本研究中,评估了一种褐藻提取物(BSE)在低温处理番茄中的生物刺激作用。为评估该产品的效果,进行了生理和分子表征。在冷胁迫条件下,与未处理的植株相比,经BSE处理的植株气孔导度、净光合速率和产量显著更高(p≤0.05)。施用BSE后的全转录组调查揭示了BSE处理对导致冷胁迫关键反应的基因的影响。相对于脯氨酸(GO:0006560)、类黄酮(GO:0009812、GO:0009813)和叶绿素(GO:0015994)的显著富集的GO类别突出了这一点。分子数据通过生化分析进行整合,结果表明BSE处理使脯氨酸、多酚、类黄酮、单宁和类胡萝卜素的含量更高。该研究强调了抗氧化分子在增强基于BSE的生物刺激剂介导的番茄耐低温性方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a68d/10520554/baec18348148/fpls-14-1232421-g001.jpg

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