硒和大蒜提取物处理种子受污染的生菜植株对生物强化水平、种子生产力和成熟植株产量及质量的影响

Plants Pub Date : 2024-04-25 DOI:10.3390/plants13091190
N. Golubkina, Viktor Kharchenko, A. Moldovan, M. Antoshkina, Olga Ushakova, Agnieszka Sękara, V. Stoleru, O. Murariu, A. Tallarita, Maura Sannino, Gianluca Caruso
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引用次数: 0

摘要

提高植物种子的产量和质量是作物成功增产的基础。研究人员利用四个莴苣栽培品种(Bouquet、Picnic、Moskovsky parnikovy 和 Cavalier),研究了用硒酸钠和大蒜鳞茎提取物对莴苣植株进行单一和联合叶面处理对种子产量和质量以及成熟植株生化特性的影响。与未施用 Se 的对照植物相比,施用 Se 的植物的种子产量提高了 20-41%,而大蒜提取物以及 Se 和大蒜的联合施用则分别提高了 10-23% 和 17-27%。大蒜提取物刺激了莴苣种子中 Se 的积累,与 Se 处理过的植株相比,莴苣种子中的 Se 增加了 1.21-1.29 倍。在施用 Se 的情况下,莴苣种子中的脯氨酸含量是对照组的 1.32-1.64 倍;在施用大蒜提取物的情况下,莴苣种子中的脯氨酸含量是对照组的 1.10-1.47 倍;在同时施用 Se 和大蒜的情况下,莴苣种子中的脯氨酸含量是对照组的 1.09-1.31 倍。与未处理的对照组相比,所有处理都能使莴苣植株的叶片重量增加 1.10-1.30 倍。种子的 Se 含量与由这些种子培育的植物的叶片重量(r = 0.621;p < 0.005)、叶绿素(r = 0.672,p < 0.002)和总抗氧化活性(AOA;r = 0.730,p < 0.001)呈正相关。种子脯氨酸含量与莴苣植株叶重、叶绿素和 AOA 之间也呈正相关(r = 0.868、0.811 和 0.815,p < 0.001)。生菜产量与叶片 AOA、叶绿素和抗坏血酸含量呈正相关(r = 0.942、0.921 和 0.665,p < 0.001)。这些结果表明,在种子处理的莴苣植株上施用 Na2SeO4 和大蒜提取物可提高种子的产量和质量,以及莴苣的产量和质量。
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Effect of Selenium and Garlic Extract Treatments of Seed-Addressed Lettuce Plants on Biofortification Level, Seed Productivity and Mature Plant Yield and Quality
The enhancement of the plant seed yield and quality represents the basis of the successful productivity of the deriving crop. The effect of single and combined foliar treatments of lettuce plants with sodium selenate and garlic bulb extract on seed yield and quality and on mature plant biochemical characteristics was investigated using four lettuce cultivars (Bouquet, Picnic, Moskovsky parnikovy and Cavalier). The seed production of plants treated with Se increased by 20–41%, compared to the untreated control plants, while the augmentation was as much as 10–23% and 17–27% under garlic extract and the joint application of Se and garlic, respectively. Garlic extract stimulated the accumulation of Se in lettuce seeds, which rose by 1.21–1.29 times compared to the Se-treated plants. The proline levels in lettuce seeds exceeded the corresponding values recorded in the control ones by 1.32–1.64 times in the case of the Se supply, 1.10–1.47 times upon garlic extract application and 1.09–1.31 times under the combined Se/garlic treatment. All the treatments given to lettuce plants increased the leaf weight by 1.10–1.30 times, compared to the untreated control. The seed Se levels positively correlated with the leaf weight (r = 0.621; p < 0.005), chlorophyll (r = 0.672, p < 0.002) and total antioxidant activity (AOA; r = 0.730, p < 0.001) of plants grown from these seeds. Positive correlations were also recorded between the seed proline content and lettuce plant leaf weight, chlorophyll and AOA (r = 0.868, 0.811 and 0.815, respectively, at p < 0.001). Lettuce yield was positively correlated with the leaf AOA, chlorophyll and ascorbic acid content (r = 0.942, 0.921 and 0.665, respectively, at p < 0.001). The results indicate high prospects of Na2SeO4 and garlic extract application to seed-addressed lettuce plants, to improve seed productivity and quality, as well as lettuce yield and quality.
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