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通过根部施用硅提高番茄(L.)的耐盐性

Enhancing Salt Stress Tolerance in Tomato ( L.) through Silicon Application in Roots.

作者信息

Ferrández-Gómez Borja, Jordá Juana D, Cerdán Mar, Sánchez-Sánchez Antonio

机构信息

Department of Biochemistry and Molecular Biology, Edaphology and Agricultural Chemistry, University of Alicante, 03080 Alicante, Spain.

Institute for Environmental Studies Ramon Margalef, University of Alicante, 03690 Alicante, Spain.

出版信息

Plants (Basel). 2024 May 19;13(10):1415. doi: 10.3390/plants13101415.

Abstract

Soil salinization poses a significant threat to agricultural productivity, necessitating innovative agronomic strategies to mitigate its impact. This study focuses on improving salt stress resistance in tomato plants through the application of silicon (Si) in roots. A greenhouse experiment was carried out under normal conditions (control, and 1 and 4 mM Si) and under salinity stress (salt control, and 1 and 4 mM Si). Various parameters were analyzed in leaves and roots. Under normal conditions, tomato plants grown in non-saline conditions exhibited some toxicity when exposed to NaSiO. As for the experiments under salt stress conditions, Si mitigated oxidative damage, preserving root cell membrane integrity. The concentration of malondialdehyde was reduced by 69.5%, that of proline was reduced by 56.4% and there was a 57.6% decrease in catalase activity for tomato plants treated with 1 mM Si under salt stress. Furthermore, Fe uptake and distribution, under salt conditions, increased from 91 to 123 mg kg, the same concentration as that obtained for the normal control. In all cases, the lower dose produced better results under normal conditions than the 4 mM dose. In summary, this research provides a potential application of Si in non-fertigated crop systems through a radicular pathway.

摘要

土壤盐渍化对农业生产力构成重大威胁,因此需要创新的农艺策略来减轻其影响。本研究聚焦于通过在番茄植株根部施用硅(Si)来提高其耐盐胁迫能力。在正常条件下(对照、1 mM Si和4 mM Si)以及盐胁迫条件下(盐对照、1 mM Si和4 mM Si)进行了温室试验。对叶片和根部的各种参数进行了分析。在正常条件下,在非盐渍条件下生长的番茄植株在接触硅酸钠时表现出一定毒性。至于盐胁迫条件下的试验,硅减轻了氧化损伤,维持了根细胞膜的完整性。在盐胁迫下,用1 mM Si处理的番茄植株丙二醛浓度降低了69.5%,脯氨酸浓度降低了56.4%,过氧化氢酶活性降低了57.6%。此外,在盐胁迫条件下,铁的吸收和分布从91 mg/kg增加到123 mg/kg,与正常对照获得的浓度相同。在所有情况下,较低剂量在正常条件下产生的效果优于4 mM剂量。总之,本研究通过根部途径为硅在非灌溉作物系统中的潜在应用提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4537/11125711/aa5365af5bf6/plants-13-01415-g001.jpg

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