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氧化锌和二氧化硅种子纳米引发增强干旱胁迫下的种子萌发、幼苗活力及抗氧化防御能力。

Seed Nanopriming with ZnO and SiO Enhances Germination, Seedling Vigor, and Antioxidant Defense Under Drought Stress.

作者信息

Ochoa-Chaparro Erick H, Patiño-Cruz Juan J, Anchondo-Páez Julio C, Pérez-Álvarez Sandra, Chávez-Mendoza Celia, Castruita-Esparza Luis U, Márquez Ezequiel Muñoz, Sánchez Esteban

机构信息

Food and Development Research Center, A.C. Avenida Cuarta Sur No. 3820, Fraccionamiento Vencedores del Desierto, Delicias 33089, Chihuahua, Mexico.

Faculty of Agricultural and Forestry Sciences, Universidad Autónoma de Chihuahua (UACH), Km. 2.5 Carretera a Rosales, Poniente, Delicias 33000, Chihuahua, Mexico.

出版信息

Plants (Basel). 2025 Jun 5;14(11):1726. doi: 10.3390/plants14111726.

Abstract

Drought stress is one of the main factors limiting seed germination and seedling establishment in field crops such as jalapeño peppers ( L.). Nanopriming, a seed improvement technique using nanoparticle suspensions, has emerged as a sustainable approach to improving water use efficiency during the early stages of development. This study evaluated the effects of zinc oxide (ZnO, 100 mg·L), silicon dioxide (SiO, 10 mg·L), and their combination (ZnO + SiO), stabilized with chitosan, on the germination yield and drought tolerance of jalapeño seeds under mannitol-induced water stress (0%, 15%, and 30%). Compared to the hydroprimed control (T1), nanoparticle treatments consistently improved seed yield. Priming with ZnO (T2) increased the germination percentage by up to 25%, priming with SiO (T3) improved the germination rate by 34%, and the combined treatment (T4: ZnO + SiO) improved the fresh weight of the seedlings by 40%. Proline accumulation increased 7.5 times, antioxidant capacity (DPPH) increased 6.5 times, and total phenol content increased 4.8 times in the combined treatment. Flavonoid levels also showed notable increases, suggesting enhanced antioxidant defense. These results clearly demonstrate the superior efficacy of nanoparticle pretreatment compared to conventional hydraulic pretreatment, especially under drought conditions. Multivariate analysis further highlighted the synergistic role of ZnO and SiO in improving osmolite accumulation, antioxidant activity, and water use efficiency. Nanopriming with ZnO and SiO offers a promising, economical, and scalable strategy to improve germination, early growth, and drought resistance in jalapeño pepper cultivation under semi-arid conditions.

摘要

干旱胁迫是限制辣椒(L.)等大田作物种子萌发和幼苗建立的主要因素之一。纳米引发是一种利用纳米颗粒悬浮液的种子改良技术,已成为提高发育早期水分利用效率的可持续方法。本研究评估了用壳聚糖稳定的氧化锌(ZnO,100 mg·L)、二氧化硅(SiO,10 mg·L)及其组合(ZnO + SiO)对甘露醇诱导水分胁迫(0%、15%和30%)下辣椒种子发芽率和耐旱性的影响。与水引发对照(T1)相比,纳米颗粒处理持续提高了种子产量。用ZnO引发(T2)使发芽率提高了25%,用SiO引发(T3)使发芽速率提高了34%,联合处理(T4:ZnO + SiO)使幼苗鲜重提高了40%。联合处理中脯氨酸积累增加了7.5倍,抗氧化能力(DPPH)增加了6.5倍,总酚含量增加了4.8倍。类黄酮水平也显著增加,表明抗氧化防御增强。这些结果清楚地证明了纳米颗粒预处理相对于传统水预处理具有更高的功效,特别是在干旱条件下。多变量分析进一步突出了ZnO和SiO在提高渗透物质积累、抗氧化活性和水分利用效率方面的协同作用。用ZnO和SiO进行纳米引发为在半干旱条件下提高辣椒种植中的发芽率、早期生长和抗旱性提供了一种有前景、经济且可扩展的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/262e/12157873/0905f87805c5/plants-14-01726-g001.jpg

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