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季节对番茄果实代谢组谱的影响:对多胁迫抗性中脱落酸信号传导的启示。

Seasonal influence on tomato fruit metabolome profile: Implications for ABA signaling in multi-stress resilience.

作者信息

Pardo-Hernández Miriam, Zhang Leilei, Lucini Luigi, Rivero Rosa M

机构信息

Center of Edaphology and Applied Biology of Segura (CEBAS-CSIC), Department of Plant Nutrition, Campus Universitario Espinardo, Ed 25, 30100, Murcia, Spain.

Department for Sustainable Food Process, Università Cattolica del Sacro Cuore, Via Emilia Parmense 84, 29122, Piacenza, Italy.

出版信息

Plant Physiol Biochem. 2024 Dec;217:109234. doi: 10.1016/j.plaphy.2024.109234. Epub 2024 Oct 24.

Abstract

The increasing effects of climate change are leading to an increase in the number and intensity of extreme events, making it essential to study how plants respond to various stresses occurring simultaneously. A crucial regulator of plant responses to abiotic stress is abscisic acid (ABA), as its accumulation in response to stress leads to transcriptomic and metabolomic changes that contribute to plant stress tolerance. In the present study, we investigated how ABA, stress conditions (salinity, water deficit and their combination) and seasons (autumn-winter and spring-summer) regulate tomato fruit yield and metabolism using tomato wild type (WT) and the ABA-deficient flacca mutant (flc) under stress conditions in cold and warm seasons. Our results showed that the applied stresses did not have the same effect in the warm season as in the cold season. In WT plants, the levels of other flavonoids, lignans and other polyphenols were higher in summer fruits, whereas the levels of anthocyanins, flavanols, flavonols, phenolic acids and stilbenes were higher in winter fruits. Furthermore, the significant increase in anthocyanins and flavonols was associated with the combination of salinity + water deficit in both seasons. Additionally, under certain conditions, flc mutants showed an enrichment of the superclasses of benzenoids and organosulphur compounds. The synthesis of phenolic compounds in flc fruits was also significantly different compared to WT plants. Thus, the metabolic profile of tomato fruits varies significantly with endogenous ABA levels, season of cultivation and applied stress treatments, highlighting the multifactorial nature of plant responses to combined environmental factors.

摘要

气候变化影响的不断加剧正导致极端事件的数量和强度增加,因此研究植物如何应对同时发生的各种胁迫至关重要。脱落酸(ABA)是植物对非生物胁迫反应的关键调节因子,因为其在胁迫下的积累会导致转录组和代谢组的变化,从而有助于植物的胁迫耐受性。在本研究中,我们利用番茄野生型(WT)和ABA缺陷型flacca突变体(flc),研究了在寒冷和温暖季节的胁迫条件下,ABA、胁迫条件(盐度、水分亏缺及其组合)和季节(秋冬和春夏)如何调节番茄果实产量和代谢。我们的结果表明,施加的胁迫在温暖季节和寒冷季节的效果不同。在WT植株中,夏季果实中其他黄酮类、木脂素和其他多酚类物质的含量较高,而冬季果实中花青素、黄烷醇、黄酮醇、酚酸和芪类化合物的含量较高。此外,在两个季节中,花青素和黄酮醇的显著增加都与盐度 + 水分亏缺的组合有关。此外,在某些条件下,flc突变体显示出苯类化合物和有机硫化合物超类别的富集。与WT植株相比,flc果实中酚类化合物的合成也有显著差异。因此,番茄果实的代谢谱随内源ABA水平、栽培季节和施加的胁迫处理而显著变化,突出了植物对综合环境因素反应的多因素性质。

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