Exploring physiological variables and lipid fraction characteristics in chia nutlets: Correlations with biophysical techniques across varieties with varying germinative power and vigor

IF 2.7 2区 农林科学 Q1 ENTOMOLOGY
María Emilia Rodríguez , Lorena Deladino , Aline Schneider-Teixeira , Vanesa Y. Ixtaina
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Abstract

Understanding aging in seeds is vital for conservation and long-term preservation. This study examined the physiological and lipid characteristics of three chia varieties (WN, MNI, MNII) using conventional and biophysical methods to establish correlations and explore aging mechanisms. Variables assessed included thousand seed weight, moisture content (MC), and germination parameters, such as normal germination power (NGP), hypocotyl and radicle length, vigor, viability, as well as lipid characteristics, and thermal parameters. Physiological differences were prominent, especially in the MNII, with longer mean germination times (MGT = 2.11 d) and reduced NGP (63.24%). The WN variety exhibited superior germination (NGP = 95.9%), while MNI had an NGP of 93.2% and the highest vigor. Lipid analysis revealed significant differences, particularly in free fatty acid content (FFA). The oxidative status and tocopherol content were evaluated, with high germination in WN being associated with the combination of tocopherol isomers. The thermal analysis highlighted the predictive potential of ΔH for seed health and viability. Spectral analysis distinguished nutlets and oils, showcasing unique vibrational patterns. The correlation analysis revealed significant relationships crucial for conservation. MGT showed positive correlations with moisture content, electrical conductivity, and FFA, but negative correlations with germinated nutlets (GN) and normal seedlings (NS). MC positively correlated with FFA, abnormal seedlings (AS), and deteriorated nutlets, yet negatively correlated with GN and NS. Electrical conductivity emerged as a germination indicator, positively correlating with FFA and deteriorated nutlets, and negatively with GN and NS. δ-tocopherol content positively correlated with successful germination and NS, but negatively with AS. Thus, this research provides relevant knowledge on the conservation of chia nutlets by offering information on seed deterioration markers that can be obtained by FT-IR and DSC. This is particularly valuable for studying germplasm with a limited sample size, common in gene banks.

Abstract Image

探索奇异果中的生理变量和脂质组分特征:不同发芽率和活力品种与生物物理技术的相关性
了解种子的老化对保护和长期保存至关重要。本研究采用传统和生物物理方法研究了三个奇亚籽品种(WN、MNI、MNII)的生理和脂质特征,以建立相关性并探索老化机制。评估的变量包括种子千粒重、含水量(MC)和发芽参数,如正常发芽率(NGP)、下胚轴和胚根长度、活力、存活率,以及脂质特征和热参数。生理差异非常明显,尤其是在 MNII 中,平均发芽时间(MGT = 2.11 d)较长,正常发芽率(NGP)较低(63.24%)。WN 品种的发芽率较高(NGP = 95.9%),而 MNI 的 NGP 为 93.2%,活力最高。脂质分析表明差异显著,尤其是游离脂肪酸含量(FFA)。对氧化状态和生育酚含量进行了评估,WN 的高发芽率与生育酚异构体的组合有关。热分析强调了 ΔH 对种子健康和活力的预测潜力。光谱分析区分了小坚果和油,展示了独特的振动模式。相关分析揭示了对保护至关重要的重要关系。MGT 与水分含量、电导率和饱和脂肪酸呈正相关,但与发芽小坚果(GN)和正常幼苗(NS)呈负相关。MC与FFA、异常幼苗(AS)和变质的小果实呈正相关,但与GN和NS呈负相关。δ-生育酚含量与发芽成功率和 NS 呈正相关,但与 AS 呈负相关。因此,这项研究通过傅立叶变换红外光谱(FT-IR)和DSC获得的种子劣化标记信息,为保护奇异果提供了相关知识。这对于研究基因库中常见的样本量有限的种质资源尤其有价值。
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来源期刊
CiteScore
5.70
自引率
18.50%
发文量
112
审稿时长
45 days
期刊介绍: The Journal of Stored Products Research provides an international medium for the publication of both reviews and original results from laboratory and field studies on the preservation and safety of stored products, notably food stocks, covering storage-related problems from the producer through the supply chain to the consumer. Stored products are characterised by having relatively low moisture content and include raw and semi-processed foods, animal feedstuffs, and a range of other durable items, including materials such as clothing or museum artefacts.
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