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基于傅里叶变换红外光谱的脂质化学指纹图谱与石榴对水分胁迫的响应有关。

FTIR spectroscopy-based lipochemical fingerprints involved in pomegranate response to water stress.

作者信息

Adiba Atman, Razouk Rachid, Haddioui Abdelmajid, Ouaabou Rachida, Hamdani Anas, Kouighat Mohammed, Hssaini Lahcen

机构信息

National Institute of Agricultural Research, Avenue Ennasr, BP 415 Rabat Principale, 10090, Rabat, Morocco.

Laboratory of Biotechnology and Valorisation of Plant Genetic Resources, University of Sultan Moulay Slimane, BP 523, Beni Mellal, Morocco.

出版信息

Heliyon. 2023 May 28;9(6):e16687. doi: 10.1016/j.heliyon.2023.e16687. eCollection 2023 Jun.

Abstract

Pomegranate trees are known for their ability to withstand drought conditions, but there is still much to learn about how water stress affects the lipobiochemical behavior of their seeds. This study aimed to investigate how sustained deficit irrigation (SDI-50), equivalent to 50% of crop evapotranspiration, influences pomegranate seed oil attributes such as phenols, flavonoids, and tannins content, and the seeds' lipochemical fingerprints compared to fully irrigated trees. At the full ripening stage, pomegranate seeds were analyzed for their oil content, biochemical traits, and vibrational fingerprints using infrared radiation. The results indicated that there was a significant genotypic effect coupled with applied water stress on all the investigated traits. Interestingly, an increasing trend in seed oil yield was observed under water stress conditions compared to the control, with the highest oil yield increase observed in the 'Zheri Precoce' fruit seeds. Only two cultivars did not show the same pattern, with the oil yield increase ranging from 8% to 100%. Furthermore, SDI-50 induced a substantial increase in total phenolic content, coupled with a significant genotypic effect, and resulted in an average increase of 7.5%. This increase in total phenolics also correlated with an increase in antioxidant activity across all investigated cultivars. ATR-FTIR fingerprinting revealed eleven spectral fingerprints corresponding to functional groups present in pomegranate seeds oil, with a particular pattern of significant effects of both genotypic and SDI-50 factors. These results suggest that exploiting water scarcity conditions could be a viable approach to improve the quantitative and qualitative attributes of pomegranate seed oil. While there are still several aspects to be investigated further, this study provides a basis for pomegranate processing under water shortage conditions.

摘要

石榴树以其耐受干旱条件的能力而闻名,但关于水分胁迫如何影响其种子的脂质生化行为仍有许多有待了解之处。本研究旨在探究相当于作物蒸发散量50%的持续亏缺灌溉(SDI - 50)与充分灌溉的树木相比,如何影响石榴籽油的属性,如酚类、黄酮类和单宁含量,以及种子的脂质化学指纹图谱。在完全成熟阶段,使用红外辐射对石榴籽进行油含量、生化特性和振动指纹图谱分析。结果表明,在所研究的所有性状上,存在显著的基因型效应以及施加的水分胁迫效应。有趣的是,与对照相比,在水分胁迫条件下观察到种子油产量呈增加趋势,其中‘Zheri Precoce’果实种子的油产量增加最高。只有两个品种未呈现相同模式,油产量增加幅度在8%至100%之间。此外,SDI - 50导致总酚含量大幅增加,同时具有显著的基因型效应,平均增加了7.5%。所有研究品种中总酚含量的增加也与抗氧化活性的增加相关。衰减全反射傅里叶变换红外光谱(ATR - FTIR)指纹图谱揭示了与石榴籽油中存在的官能团相对应的11个光谱指纹图谱,基因型和SDI - 50因素均有特定的显著效应模式。这些结果表明,利用水资源短缺条件可能是改善石榴籽油定量和定性属性的可行方法。虽然仍有几个方面有待进一步研究,但本研究为缺水条件下的石榴加工提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/961b/10245267/0a68a1f4c49d/gr1.jpg

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