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叶面喷施褪黑素和壳聚糖纳米包裹褪黑素对盐胁迫下番茄(Lycopersicon esculentum L. cv. Falcato)植株的影响。

Effects of foliar spraying with melatonin and chitosan Nano-encapsulated melatonin on tomato (Lycopersicon esculentum L. cv. Falcato) plants under salinity stress.

机构信息

Department of Horticulture, College of Agriculture, Isfahan University of Technology, Isfahan, Iran.

Department of Vegetable and Mushroom Growing, Hungarian University of Agriculture and Life Sciences, Budapest, Hungary.

出版信息

BMC Plant Biol. 2024 Oct 15;24(1):961. doi: 10.1186/s12870-024-05672-7.

Abstract

Melatonin has been found to be crucial in the growth and development of plants under stress conditions. In this study, the effects of melatonin and nano melatonin regarding the growth and development of tomato plants, along with their photosynthetic pigment, phenol, and antioxidant activity, were investigated under saline conditions. The study was conducted using a completely randomized design with three replications, and the applied treatments were salt stress and foliar spraying of melatonin at a concentration of 0 (control), melatonin (Mel), and nano capsule-melatonin (Nano-Mel) at 500 µM. Salinity treatments included application of sodium chloride with two concentration of 0 mM NaCl (S1) and 50 mM NaCl (S2). Under saline conditions, Mel and Nano-Mel increased both shoot and root fresh and dry weights, improved relative water content (RWC), and enhanced antioxidant activity and phenolic content. Salinity elevated leaf ABA content, unaffected by Mel or Nano-Mel. Chlorophyll fluorescence and SPAD values demonstrated resilience to salinity with Mel and Nano-Mel applications. Nano-Mel notably mitigated Na accumulation in leaves under salinity, helping maintain K homeostasis. Proline levels rise due to salinity but decreased with Mel and Nano-Mel treatments. Electrolyte leakage (EL) increased under salinity but is significantly reduced by Mel, indicating enhanced membrane stability. The findings reveal that salinity stress significantly reduced plasma membrane intrinsic protein (PIP) expression in roots and leaves, whereas Mel and Nano-Mel treatments enhance PIP expression, particularly in roots. The study concludes that Mel and Nano-Mel effectively alleviate salinity-induced stress, promoting growth and maintaining physiological homeostasis in tomato plants.

摘要

褪黑素已被发现对植物在胁迫条件下的生长和发育至关重要。在这项研究中,研究了褪黑素和纳米褪黑素对番茄植株生长和发育的影响,以及它们的光合色素、酚类和抗氧化活性在盐胁迫下的情况。该研究采用完全随机设计,设三个重复,应用的处理是盐胁迫和叶面喷施褪黑素,浓度为 0(对照)、褪黑素(Mel)和 500µM 纳米胶囊褪黑素(Nano-Mel)。盐处理包括应用两种浓度的氯化钠:0mMNaCl(S1)和 50mMNaCl(S2)。在盐胁迫下,Mel 和 Nano-Mel 提高了地上部和地下部鲜重和干重,提高了相对含水量(RWC),增强了抗氧化活性和酚类含量。盐胁迫提高了叶片 ABA 含量,但 Mel 和 Nano-Mel 对其没有影响。叶绿素荧光和 SPAD 值表明,Mel 和 Nano-Mel 的应用使叶片对盐胁迫具有弹性。Nano-Mel 显著减轻了叶片在盐胁迫下的 Na+积累,有助于维持 K+的稳态。由于盐胁迫,脯氨酸水平升高,但用 Mel 和 Nano-Mel 处理后降低。电解质渗漏(EL)在盐胁迫下增加,但 Mel 显著降低了 EL,表明膜稳定性增强。研究结果表明,盐胁迫显著降低了根和叶中的质膜内在蛋白(PIP)表达,而 Mel 和 Nano-Mel 处理增强了 PIP 的表达,特别是在根中。该研究得出结论,Mel 和 Nano-Mel 有效缓解了盐胁迫引起的胁迫,促进了番茄植株的生长,维持了其生理稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e1b/11476536/428cb499c599/12870_2024_5672_Fig1_HTML.jpg

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