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干旱和生物刺激剂对温室番茄的影响:农艺学和代谢组学见解

Impact of Drought and Biostimulant in Greenhouse Tomato: Agronomic and Metabolomic Insights.

作者信息

Leporino Marzia, Cardarelli Mariateresa, Bonini Paolo, Proietti Simona, Moscatello Stefano, Colla Giuseppe

机构信息

Department of Agriculture and Forestry Science, University of Tuscia, 01100 Viterbo, Italy.

OloBion SL, 08028 Barcelona, Spain.

出版信息

Plants (Basel). 2025 Jun 30;14(13):2000. doi: 10.3390/plants14132000.

Abstract

Widespread drought conditions have increasingly affected agricultural productivity, requiring the exploration of alternative approaches for improving crop tolerance, yield and quality, since plants adopt many physiological strategies to cope with challenging environments. This study evaluated the effects of a vegetal-derived protein hydrolysate (PH), applied via foliar spray or root drench at a concentration of 3 mL L, on tomato plants (n = 96) under well-watered and drought-stressed conditions over a 136-day greenhouse experiment. Overall, sub-optimal irrigation significantly decreased plant dry biomass (-55.3%) and fruit production (-68.8% marketable yield), and enhanced fruit quality in terms of sugar concentration and antioxidant levels. PH treatments, regardless of the application method, did not notably influence above-ground dry biomass, yield, or fruit quality, suggesting that the intensity of drought might have limited PH effectiveness. Metabolomic analysis showed higher concentrations of stress- and quality-related metabolites in tomato fruits from plants under stress, with PH not exerting significant metabolic changes in the fruits. These findings revealed the diminished effectiveness of PHs under severe drought conditions, suggesting that drought stress level needs to be taken into consideration for optimizing biostimulant efficacy.

摘要

由于植物会采用多种生理策略来应对具有挑战性的环境,广泛的干旱状况日益影响农业生产力,这就需要探索提高作物耐受性、产量和品质的替代方法。本研究通过在136天的温室试验中,对96株番茄植株在充分浇水和干旱胁迫条件下,评估了以3 mL/L的浓度通过叶面喷施或灌根施用的植物源蛋白水解物(PH)的效果。总体而言, 非最优灌溉显著降低了植株干生物量(-55.3%)和果实产量(-68.8%可销售产量),并提高了果实的糖分浓度和抗氧化水平方面的品质。无论施用方法如何,PH处理对地上部干生物量、产量或果实品质均无显著影响,这表明干旱强度可能限制了PH的有效性。代谢组学分析表明,胁迫条件下番茄果实中与胁迫和品质相关的代谢物浓度较高,而PH对果实代谢无显著变化。这些发现揭示了在严重干旱条件下PH的有效性降低,表明在优化生物刺激剂功效时需要考虑干旱胁迫水平。

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