Using red–green–blue vegetation indices to evaluate complex agronomical traits in soybean breeding

IF 2 3区 农林科学 Q2 AGRONOMY
Mariana Silva Vianna, Filipe Inácio Matias, Giovanni Galli, Emanoel Sanches Martins, Maiara Oliveira, José Baldin Pinheiro
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Abstract

High-throughput phenotyping is an emerging tool that allows access to identify simple and complex traits, accelerating genetic discoveries and selection. Vegetation indices strongly correlate with several economic crop traits, allowing plant breeders to detect variation in breeding populations. Thus, this study used red–green–blue (RGB) vegetation indices to evaluate the influence of the stink bug complex (Euschistus heros, Piezodorus guildinii, Nezara viridula, Dichelops melacanthus, and Edessa meditabunda) on the agronomical traits of soybean (Glycine max) lineages. For instance, two experiments were conducted to assess soybean resistance to the stink bug complex, (1) with and (2) without pesticide control. An unmanned aerial vehicle coupled with an RGB camera acquired aerial photography over the field during the R5 stage. Four vegetation indices and canopy were estimated from the orthomosaic, and the genotypes were evaluated based on agronomical traits. Linear mixed models were used to estimate the variance and significance test of each trait using the likelihood ratio test, and the principal component analysis was performed to verify the multivariate pattern among genotypes. The results showed significant genotypic effects for most traits with high broad-sense heritability for agronomical traits and moderate for vegetation indices. Significant correlations using best linear unbiased predictions were observed among the agronomical traits with the vegetation indices and canopy coverage, which can be used as a tool for the indirect selection of soybean lineages in the breeding pipeline.

Abstract Image

利用红绿蓝植被指数评价大豆育种中复杂农艺性状
高通量表型是一种新兴的工具,它允许识别简单和复杂的性状,加速遗传发现和选择。植被指数与几种经济作物性状密切相关,使植物育种家能够发现育种群体的变异。因此,本研究采用红绿蓝(RGB)植被指数评价臭虫复合体(Euschistus heros、Piezodorus guildinii、Nezara viridula、Dichelops melacanthus和Edessa meditabunda)对大豆(Glycine max)系农艺性状的影响。例如,进行了两项试验来评估大豆对臭虫复合体的抗性,(1)有农药控制和(2)没有农药控制。在R5阶段,一架无人机与一台RGB相机耦合,在战场上空获得航空摄影。利用正交图估计了4个植被指数和冠层,并根据农艺性状进行了基因型鉴定。采用线性混合模型估计各性状的方差,并采用似然比检验进行显著性检验,采用主成分分析验证基因型间的多变量模式。结果表明,大多数性状的基因型效应显著,农艺性状的广义遗传力高,植被指标的广义遗传力中等。利用最佳线性无偏预测结果发现,农艺性状与植被指数和冠层盖度之间存在显著相关,可作为大豆育种管道中间接选择株系的工具。
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来源期刊
Agronomy Journal
Agronomy Journal 农林科学-农艺学
CiteScore
4.70
自引率
9.50%
发文量
265
审稿时长
4.8 months
期刊介绍: After critical review and approval by the editorial board, AJ publishes articles reporting research findings in soil–plant relationships; crop science; soil science; biometry; crop, soil, pasture, and range management; crop, forage, and pasture production and utilization; turfgrass; agroclimatology; agronomic models; integrated pest management; integrated agricultural systems; and various aspects of entomology, weed science, animal science, plant pathology, and agricultural economics as applied to production agriculture. Notes are published about apparatus, observations, and experimental techniques. Observations usually are limited to studies and reports of unrepeatable phenomena or other unique circumstances. Review and interpretation papers are also published, subject to standard review. Contributions to the Forum section deal with current agronomic issues and questions in brief, thought-provoking form. Such papers are reviewed by the editor in consultation with the editorial board.
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