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首页> 外文期刊>Journal of Science and Technology of Greenhouse Culture >Effect of Si and nano-Si on growth, morphological, and photosynthetic attributes of tomato in hydroculture
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Effect of Si and nano-Si on growth, morphological, and photosynthetic attributes of tomato in hydroculture

机译:硅和纳米硅对水培番茄生长,形态和光合特性的影响

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Silicon (Si) is one of the beneficial elements for plants, which improves quantity and quality of yield, decreases evaporation and transpiration and enhances plant resistance to abiotic stresses. In order to evaluate the effect of Si and nano-silicon (N-Si) on growth, morphological and photosynthesis attributes of tomato, cultivar Falcato, an experiment was carried out in a hydroponic system, based on a completely randomized design, with two Si and N-Si levels (1 and 2 mM) and Si-free nutrient solution (as control), and four replications. Such traits as chlorophyll index (SPAD), photosynthesis, nutrient uptake, stem diameter, relative water content and morphological changes like density of trichomes were measured during the experiment. At the end of the experiment, fresh and dry weights and root volume were measured. Results revealed that Si was more effective than N-Si on fresh weight and mesophyll conductance. Concentrations of 1 and 2 mM Si increased fresh weight and mesophyll conductance, respectively. However, this concentration did not affect dry weight and relative water content significantly. N-Si was more effective than Si on photosynthesis and photosynthetic relative water content. The highest photosynthesis and lowest transpiration rate was measured in 2mM N-Si. Application of Si and N-Si decreased relative water content and the least water uptake was in 2mM N-Si treatment. In conclusion, Si or N-Si, with 20-30 nm particle diameter and optimum tomato growth conditions (without abiotic stresses) increased photosynthesis, fresh weight, relative water content and decreased nutrient solution uptake under hydroponics. Keywords: Nano-material, Chlorophyll index, Relative water content. Full-Text Type of Study: Research | Received: 2014/09/29 | Accepted: 2014/09/29 | Published: 2014/09/29 Send email to the article author Related Websites Scientific Publications Commission - Health Ministry Scientific Publications Commission - Science Ministry Yektaweb Company Site Keywords ?????, Academic Journal, Scientific Article, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ????? ??, ???? ?? Vote ? 2015 All Rights Reserved | Journal of Science and Technology of Greenhouse Culture -Isfahan University of Technology
机译:硅(Si)是植物的有益元素之一,可提高产量和质量,减少蒸发和蒸腾作用,增强植物对非生物胁迫的抗性。为了评估硅和纳米硅(N-Si)对番茄栽培品种Falcato的生长,形态和光合作用属性的影响,基于完全随机设计,在水培系统中使用两种硅进行了实验和N-Si水平(1和2 mM)和无Si营养液(作为对照),以及四次重复。在试验过程中,测定了叶绿素指数(SPAD),光合作用,养分吸收,茎粗,相对含水量以及毛状体密度等形态变化。在实验结束时,测量鲜重和干重以及根体积。结果表明,Si在鲜重和叶肉传导方面比N-Si更有效。 1和2 mM Si的浓度分别增加了鲜重和叶肉电导。但是,该浓度不会显着影响干重和相对含水量。 N-Si在光合作用和光合相对含水量方面比Si更有效。在2mM N-Si中测得最高的光合作用和最低的蒸腾速率。施Si和N-Si可以降低相对含水量,并且在2mM N-Si处理中吸水最少。总之,具有20-30 nm粒径和最佳番茄生长条件(无非生物胁迫)的Si或N-Si增加了光合作用下的光合作用,鲜重,相对含水量并减少了营养液的吸收。关键词:纳米材料叶绿素指数相对含水量全文研究类型:研究|收稿日期:2014/09/29 |接受:2014/09/29 |发布:2014/09/29发送电子邮件给文章作者相关网站科学出版物委员会-卫生部科学出版物委员会-科学部Yektaweb公司网站关键字??????,Academic Journal,Scientific Article,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ?????? ??,???? ??投票吗? 2015版权所有|温室文化科学技术杂志-伊斯法罕工业大学

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