Effects of exogenous silicon on maize seed germination and seedling growth

Abstract As the global population continues to increase, global food production needs to double by 2050 to meet the demand. Given the current status of the not expansion of cultivated land area, agronomic seedlings are complete, well-formed and strong, which is the basis of high crop yields. The aim...

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Main Authors: Yankun Sun, Jiaqi Xu, Xiangyang Miao, Xuesong Lin, Wanzhen Liu, Hongyu Ren
Format: Article
Language:English
Published: Nature Publishing Group 2021-01-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-020-79723-y
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spelling doaj-a3d20b343c6c4ac2971579190bc7d4072021-01-17T12:44:32ZengNature Publishing GroupScientific Reports2045-23222021-01-0111111310.1038/s41598-020-79723-yEffects of exogenous silicon on maize seed germination and seedling growthYankun Sun0Jiaqi Xu1Xiangyang Miao2Xuesong Lin3Wanzhen Liu4Hongyu Ren5College of Resources and Environment, Northeast Agricultural UniversityCollege of Resources and Environment, Northeast Agricultural UniversityCollege of Resources and Environment, Northeast Agricultural UniversityCollege of Resources and Environment, Northeast Agricultural UniversityCollege of Resources and Environment, Northeast Agricultural UniversityCollege of Resources and Environment, Northeast Agricultural UniversityAbstract As the global population continues to increase, global food production needs to double by 2050 to meet the demand. Given the current status of the not expansion of cultivated land area, agronomic seedlings are complete, well-formed and strong, which is the basis of high crop yields. The aim of this experiment was to study the effects of seed germination and seedling growth in response to silicon (from water-soluble Si fertilizer). The effects of Si on the maize germination, seedling growth, chlorophyll contents, osmoprotectant contents, antioxidant enzyme activities, non-enzymatic antioxidant contents and stomatal characteristics were studied by soaking Xianyu 335 in solutions of different concentrations of Si (0, 5, 10, 15, 20, and 25 g·L−1). In this study, Si treatments significantly increased the seed germination and per-plant dry weight of seedlings (P < 0.05), and the optimal concentration was 15 g·L−1. As a result of the Si treatment of the seeds, the chlorophyll content, osmotic material accumulation and antioxidant defence system activity increased, reducing membrane system damage, reactive oxygen species contents, and stomatal aperture. The results suggested that 15 g·L−1 Si significantly stimulated seed germination and promoted the growth of maize seedlings, laying a solid foundation for subsequent maize growth.https://doi.org/10.1038/s41598-020-79723-y
collection DOAJ
language English
format Article
sources DOAJ
author Yankun Sun
Jiaqi Xu
Xiangyang Miao
Xuesong Lin
Wanzhen Liu
Hongyu Ren
spellingShingle Yankun Sun
Jiaqi Xu
Xiangyang Miao
Xuesong Lin
Wanzhen Liu
Hongyu Ren
Effects of exogenous silicon on maize seed germination and seedling growth
Scientific Reports
author_facet Yankun Sun
Jiaqi Xu
Xiangyang Miao
Xuesong Lin
Wanzhen Liu
Hongyu Ren
author_sort Yankun Sun
title Effects of exogenous silicon on maize seed germination and seedling growth
title_short Effects of exogenous silicon on maize seed germination and seedling growth
title_full Effects of exogenous silicon on maize seed germination and seedling growth
title_fullStr Effects of exogenous silicon on maize seed germination and seedling growth
title_full_unstemmed Effects of exogenous silicon on maize seed germination and seedling growth
title_sort effects of exogenous silicon on maize seed germination and seedling growth
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-01-01
description Abstract As the global population continues to increase, global food production needs to double by 2050 to meet the demand. Given the current status of the not expansion of cultivated land area, agronomic seedlings are complete, well-formed and strong, which is the basis of high crop yields. The aim of this experiment was to study the effects of seed germination and seedling growth in response to silicon (from water-soluble Si fertilizer). The effects of Si on the maize germination, seedling growth, chlorophyll contents, osmoprotectant contents, antioxidant enzyme activities, non-enzymatic antioxidant contents and stomatal characteristics were studied by soaking Xianyu 335 in solutions of different concentrations of Si (0, 5, 10, 15, 20, and 25 g·L−1). In this study, Si treatments significantly increased the seed germination and per-plant dry weight of seedlings (P < 0.05), and the optimal concentration was 15 g·L−1. As a result of the Si treatment of the seeds, the chlorophyll content, osmotic material accumulation and antioxidant defence system activity increased, reducing membrane system damage, reactive oxygen species contents, and stomatal aperture. The results suggested that 15 g·L−1 Si significantly stimulated seed germination and promoted the growth of maize seedlings, laying a solid foundation for subsequent maize growth.
url https://doi.org/10.1038/s41598-020-79723-y
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