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吲哚乙酸和海藻糖对缺氮土壤中番茄生长的影响,以及氧化锌纳米粒子包覆尿素的添加情况。

Influence of indole acetic acid and trehalose, with and without zinc oxide nanoparticles coated urea on tomato growth in nitrogen deficient soils.

机构信息

College of Mechanical and Automotive Engineering, ChuZhou Polytechnic, Chuzhou, 239000, China.

College of Life and Health Science, Anhui Science and Technology University, Fengyang, 233100, China.

出版信息

Sci Rep. 2024 Oct 1;14(1):22824. doi: 10.1038/s41598-024-73558-7.

Abstract

Nitrogen deficiency in low organic matter soils significantly reduces crop yield and plant health. The effects of foliar applications of indole acetic acid (IAA), trehalose (TA), and nanoparticles-coated urea (NPCU) on the growth and physiological attributes of tomatoes in nitrogen-deficient soil are not well documented in the literature. This study aims to explore the influence of IAA, TA, and NPCU on tomato plants in nitrogen-deficient soil. Treatments included control, 2mM IAA, 0.1% TA, and 2mM IAA + 0.1% TA, applied with and without NPCU. Results showed that 2mM IAA + 0.1% TA with NPCU significantly improved shoot length (~ 30%), root length (~ 63%), plant fresh (~ 48%) and dry weight (~ 48%), number of leaves (~ 38%), and leaf area (~ 58%) compared to control (NPCU only). Additionally, significant improvements in chlorophyll content, total protein, and total soluble sugar, along with a decrease in antioxidant activity (POD, SOD, CAT, and APX), validated the effectiveness of 2mM IAA + 0.1% TA with NPCU. The combined application of 2mM IAA + 0.1% TA with NPCU can be recommended as an effective strategy to enhance tomato growth and yield in nitrogen-deficient soils. This approach can be integrated into current agricultural practices to improve crop resilience and productivity, especially in regions with poor soil fertility. To confirm the efficacy of 2mM IAA + 0.1% TA with NPCU in various crops and climatic conditions, additional field studies are required.

摘要

在低有机质土壤中,氮素缺乏会显著降低作物产量和植物健康。吲哚乙酸(IAA)、海藻糖(TA)和纳米粒子包覆尿素(NPCU)叶面喷施对氮素缺乏土壤中番茄生长和生理特性的影响在文献中没有得到很好的记录。本研究旨在探讨 IAA、TA 和 NPCU 对氮素缺乏土壤中番茄植株的影响。处理包括对照、2mM IAA、0.1% TA 和 2mM IAA+0.1% TA,分别与和不与 NPCU 一起应用。结果表明,与对照(仅 NPCU)相比,2mM IAA+0.1% TA 与 NPCU 一起显著提高了茎长(30%)、根长(63%)、植物鲜重(48%)和干重(48%)、叶片数(38%)和叶面积(58%)。此外,叶绿素含量、总蛋白和总可溶性糖的显著增加,以及抗氧化活性(POD、SOD、CAT 和 APX)的降低,验证了 2mM IAA+0.1% TA 与 NPCU 的有效性。因此,建议将 2mM IAA+0.1% TA 与 NPCU 的联合应用作为一种在氮素缺乏土壤中增强番茄生长和产量的有效策略。这种方法可以整合到当前的农业实践中,以提高作物的抗逆性和生产力,特别是在土壤肥力较差的地区。为了确认 2mM IAA+0.1% TA 与 NPCU 在各种作物和气候条件下的功效,需要进行更多的田间研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f78/11445501/76757651ebf3/41598_2024_73558_Fig5_HTML.jpg

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