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硅作为缓解非生物胁迫并改善热带气候条件下种植玉米的生理性能和籽粒产量的一种策略。

Silicon as a Strategy to Mitigate Abiotic Stresses and Improve Physiological Performance and Grain Yield of Maize Grown Under Tropical Climate Conditions.

作者信息

Lima Mateus de Leles, Flores Rilner Alves, Xavier Maxuel Fellipe Nunes, Sousa Renato Gomide de, Casaroli Derblai, Dapper Felipe Puff, Capuchinho Frank Freire, Santos Glenio Guimarães, Abdala Klaus de Oliveira, Momesso Letusa

机构信息

Federal Institute of Science and Technology of Roraima (IFRR), Amajari 69343-000, RR, Brazil.

School of Agronomy, Federal University of Goiás (UFG), Goiânia 74690-900, GO, Brazil.

出版信息

Plants (Basel). 2025 Sep 3;14(17):2755. doi: 10.3390/plants14172755.

Abstract

Although the beneficial effects of silicon on plant resistance to biotic and abiotic stresses are recognized, there is a lack of knowledge regarding its application in field conditions and its direct impact on physiological metabolism, root development, and, most importantly, the economic return of corn production in tropical regions. This study is justified by the need to quantify the effects of foliar silicon application on these variables, providing a scientific and economic basis for optimizing corn productivity and profitability in tropical environments. The objective of this study was to evaluate the effect of silicon on physiological metabolism, root system development, grain yield, and the potential economic return of maize production in a tropical region. The study was conducted under field conditions in two growing seasons (2020 and 2021), using a randomized block design in a 2 × 5 factorial arrangement with four replications. The first factor consisted of the maize growing seasons, and the second factor was foliar silicon fertilization (0 (control), 150, 300, 450, and 600 g ha). Foliar fertilization with silicon at a dose of 150 g ha increases transpiration rate by up to 9%, net photosynthetic rate by 13%, and grain yield of maize by 10% after two growing seasons, regardless of the water deficit experienced during the crop cycle. At this dose, silicon application is economically viable, yielding the highest differential profit (USD 97.11 ha). In conclusion, foliar fertilization with silicon is an agronomically and economically viable strategy for efficient maize grain production during the second growing season in tropical regions.

摘要

尽管硅对植物抵抗生物和非生物胁迫的有益作用已得到认可,但对于其在田间条件下的应用及其对生理代谢、根系发育,以及最重要的是对热带地区玉米生产经济回报的直接影响,人们还缺乏了解。本研究的合理性在于需要量化叶面喷施硅对这些变量的影响,为优化热带环境下玉米的生产力和盈利能力提供科学和经济依据。本研究的目的是评估硅对热带地区玉米生理代谢、根系发育、籽粒产量以及玉米生产潜在经济回报的影响。该研究在田间条件下进行了两个生长季(2020年和2021年),采用随机区组设计,2×5析因排列,重复四次。第一个因素是玉米生长季,第二个因素是叶面硅肥(0(对照)、150、300、450和600克/公顷)。在两个生长季后,无论作物生长周期中经历的水分亏缺情况如何,以150克/公顷的剂量进行叶面施硅可使蒸腾速率提高9%,净光合速率提高13%,玉米籽粒产量提高10%。在此剂量下,施用硅在经济上是可行的,产生的最高差异利润为97.11美元/公顷。总之,叶面施硅是热带地区第二个生长季高效生产玉米籽粒的一种在农学和经济上可行的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f28/12430412/d9b09f8fb4f1/plants-14-02755-g001.jpg

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