Quantification of chlorophyll fluorescence in soybean seeds by multispectral images and their relationship with physiological potential

IF 1.1 4区 农林科学 Q3 AGRONOMY
Fabiano França-Silva, S. M. Cicero, F. G. Gomes‐Junior, A. D. Medeiros, J. França-Neto, D. Dias
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引用次数: 1

Abstract

Abstract: The multispectral image analysis technique to detect chlorophyll fluorescence (CF) in soybean seeds was studied to assess the relationship between CF signals and seed physiological potential. Eight treatments, corresponding to 0%, 2%, 4%, 6%, 8%, 10%, 12%, and 14% green seeds, were used on two cultivars, BMX Desafio RR 8473 RSF and 96R10 IPRO, which passed through different seed quality tests. Initially, the CF of the seeds was determined using 660 nm and 730 nm spectra, and then the germination, electrical conductivity, accelerated aging with saturated NaCl solution, tetrazolium, and computerized seedling image analysis (Vigor-S) tests were performed on the same seeds. A completely randomized design was used, as well as replications of each treatment. Analysis of variance (ANOVA) was performed on the data from germination, vigor, and CF tests using the R® software, and the means were grouped by the Scott-Knott test (p ≤ 0.05). Pearson’s linear correlation coefficients (r) were calculated for all combinations among the evaluations with significance of the r values determined by the t-test (p ≤ 0.05), and multivariate analysis of the principal components was performed. Proportional increases in green seeds contribute to an increase in chlorophyll fluorescence signals and have a negative correlation with seed physiological quality; levels above 4% green seeds in the samples result in marked losses in physiological potential. Therefore, the chlorophyll fluorescence detected through multispectral images is inversely related to the physiological potential of soybean seeds.
大豆种子叶绿素荧光的多光谱定量及其与生理电位的关系
摘要:采用多光谱图像分析技术检测大豆种子叶绿素荧光(CF),探讨CF信号与种子生理电位之间的关系。以BMX Desafio RR 8473 RSF和96R10 IPRO 2个品种为试验材料,分别采用0%、2%、4%、6%、8%、10%、12%和14%的处理,通过不同的种子质量试验。首先,利用660 nm和730 nm光谱测定种子的CF,然后对同一种子进行发芽、电导率、饱和NaCl溶液加速老化、四氮唑和计算机幼苗图像分析(vigo - s)试验。采用完全随机设计,并对每个治疗进行重复。采用R®软件对发芽率、活力和CF检验数据进行方差分析(ANOVA),均数采用Scott-Knott检验分组(p≤0.05)。计算评价间所有组合的Pearson线性相关系数(r),经t检验确定r值具有显著性(p≤0.05),并对主成分进行多因素分析。绿色种子比例增加导致叶绿素荧光信号增加,与种子生理品质呈负相关;样品中绿色种子含量超过4%会导致生理潜能的显著损失。因此,通过多光谱图像检测到的叶绿素荧光与大豆种子的生理电位呈负相关。
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来源期刊
Journal of Seed Science
Journal of Seed Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
2.00
自引率
30.00%
发文量
28
审稿时长
12 weeks
期刊介绍: From 2017 the Journal of Seed Science (JSS) will circulate online version only. Original scientific studies and communications, not yet published or submitted to another journal for publication and written in Portuguese or English, will be accepted for publication. For manuscripts submitted in English, the authors should provide an adequated version. The SCIENTIFIC COMMUNICATION is a category of scientific manuscript which describes a technique, an equipment, new species or observations and surveys of limited results. It has the same scientific rigor as the “Scientific Articles” and the same value as a publication. The classification of a manuscript as a SCIENTIFIC COMMUNICATION is based on its content and scientific merit but it can be a preliminary study, simple and not definitive on a certain subject, with publication justified by its uniqueness and contribution to the area. The Editorial Board of the JSS may invite leading authors of recognized reputation to compose specific Review Articles covering topics of their specialization that will convey to the scientific community the state-of-the-art knowledge related to the specific theme.
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