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硅纳米材料通过促进芥菜光合作用和抗氧化活性来增强幼苗生长和植物对酸性土壤的适应能力。

Silicon Nanomaterials Enhance Seedling Growth and Plant Adaptation to Acidic Soil by Promoting Photosynthesis and Antioxidant Activity in Mustard ( L.).

机构信息

Department of Agricultural Chemistry, Sylhet Agricultural University, Sylhet 3100, Bangladesh.

Key Laboratory of Integrated Research in Food and Agriculture (IRFA), Sylhet Agricultural University, Sylhet 3100, Bangladesh.

出版信息

Int J Mol Sci. 2024 Sep 25;25(19):10318. doi: 10.3390/ijms251910318.

Abstract

Soil acidity is a divesting factor that restricts crop growth and productivity. Conversely, silicon nanomaterials (Si-NMs) have been praised as a blessing of modern agricultural intensification by overcoming the ecological barrier. Here, we performed a sequential study from seed germination to the yield performance of mustard () crops under acid-stressed conditions. The results showed that Si-NMs significantly improved seed germination and seedling growth under acid stress situations. These might be associated with increased antioxidant activity and the preserve ratio of GSH/GSSG and AsA/DHA, which is restricted by soil acidity. Moreover, Si-NMs in field regimes significantly diminished the acid-stress-induced growth inhibitions, as evidenced by increased net photosynthesis and biomass accumulations. Again, Si-NMs triggered all the critical metrics of crop productivity, including the seed oil content. Additionally, Si-NMs, upon dolomite supplementation, further triggered all the metrics of yields related to farming resilience. Therefore, the present study highlighted the crucial roles of Si-NMs in sustainable agricultural expansion and cropping intensification, especially in areas affected by soil acidity.

摘要

土壤酸度是一种限制作物生长和生产力的剥夺因素。相反,硅纳米材料 (Si-NMs) 被赞誉为现代农业集约化的福音,克服了生态障碍。在这里,我们从种子发芽到芥菜()作物在酸胁迫条件下的产量表现进行了一系列研究。结果表明,Si-NMs 在酸胁迫条件下显著提高了种子发芽和幼苗生长。这可能与抗氧化活性的增加以及 GSH/GSSG 和 AsA/DHA 的保存率有关,而土壤酸度限制了这些物质的保存率。此外,田间条件下的 Si-NMs 显著减轻了酸胁迫引起的生长抑制,表现为净光合作用和生物量积累的增加。同样,Si-NMs 触发了所有与作物生产力相关的关键指标,包括种子含油量。此外,在添加白云石的情况下,Si-NMs 进一步触发了与农业弹性相关的所有产量指标。因此,本研究强调了 Si-NMs 在可持续农业扩张和作物集约化中的关键作用,特别是在受土壤酸度影响的地区。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c145/11477286/9e5ce2b016b8/ijms-25-10318-g001.jpg

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