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高温胁迫下基于高光谱成像的茄子萎蔫程度判别

任芸萱 肖熙鸥 段喆 聂珩 林文秋

南方农业学报2026,Vol.57Issue(2):388-397,10.
南方农业学报2026,Vol.57Issue(2):388-397,10.DOI:10.3969/j.issn.2095-1191.2026.02.008

高温胁迫下基于高光谱成像的茄子萎蔫程度判别

Discrimination of eggplant wilting degree under high temperature stress based on hyperspectral imaging

任芸萱 1肖熙鸥 1段喆 2聂珩 3林文秋3

作者信息

  • 1. 中国热带农业科学院南亚热带作物研究所/海南省热带园艺产品采后生理与保鲜重点实验室/湛江市热带作物遗传改良重点实验室,广东 湛江 524091||热带作物生物育种全国重点实验室,海南 三亚 572000
  • 2. 中国热带农业科学院南亚热带作物研究所/海南省热带园艺产品采后生理与保鲜重点实验室/湛江市热带作物遗传改良重点实验室,广东 湛江 524091||云南农业大学,云南 普洱 665099
  • 3. 中国热带农业科学院南亚热带作物研究所/海南省热带园艺产品采后生理与保鲜重点实验室/湛江市热带作物遗传改良重点实验室,广东 湛江 524091
  • 折叠

摘要

Abstract

[Objective]This study aimed to establish a non-destructive discrimination method for the eggplant seedling wilting degree based on hyperspectral imaging technology,and to conduct research on discrimination of eggplant wilting degree under high temperature stress based on hyperspectral imaging,thereby providing reference for high-throughput pre-cise identification of eggplant heat tolerance and high-throughput screening of heat-tolerant eggplant germplasm resour-ces.[Method]The seedlings of eggplant inbred line KY sensitive to high temperature were used as the research objects.The SOC710VP hyperspectral imaging system(with a spectral resolution of 1.3 nm and a spectral range of 400-1000 nm)was used to collect canopy images of eggplant seedlings at different wilting levels after high temperature stress.The effects of five pretreatment methods,including variable transformation(SNV),autoscaling(AUT),normalization(NOR),Savitzky-Golay smoothing(SG),and multiplicative scatter correction(MSC),were compared.Based on the training set and test set divided by the Kennard-Stone algorithm,a wilting level discrimination model was constructed using partial least squares discriminant analysis(PLS-DA)and support vector machine(SVM)with full bands and fea-ture bands extracted by the competitive adaptive reweighted sampling(CARS)algorithm.[Result]Differences were found in the average reflectance of plants at different wilting levels,and the average reflectance in the 400-1000 nm band decreased with the increase of wilting levels.All five pretreatments could effectively reduce the noise of stray light com-pared with the situation without treatments,among which the SG treatment could remove random signals and improve the signal-to-noise ratio of samples.In the PLS-DA model,the model after SG pretreatment showed the best discrimination effect,with the accuracy of the training data set and test data set reaching 97.00%and 98.00%respectively.The use of CARS to extract feature bands could effectively reduce data dimensions,and the model performance was optimal when combined with SG pretreatment.In the SVM model applying different kernel functions,higher discrimination accuracy was achieved under SNV pretreatment combined with linear kernel function and SG pretreatment combined with polyno-mial kernel function.Overall,the SG-PLS-DA model had stable performance and high discrimination efficiency.[Conclu-sion]The hyperspectral imaging technology is applicable for rapid evaluation of wilting degree of eggplant.The combina-tion of SG pretreatment and PLS-DA discrimination model can achieve rapid,non-destructive,and accurate discrimina-tion of wilting degree of eggplant seedlings after high temperature stress,thereby providing a feasible method for high-throughput identification of heat-tolerant eggplant phenotypes.

关键词

茄子/耐热/高光谱成像/SG-PLS-DA模型

Key words

eggplant/heat tolerance/hyperspectral imaging/SG-PLS-DA Model

分类

农业科技

引用本文复制引用

任芸萱,肖熙鸥,段喆,聂珩,林文秋..高温胁迫下基于高光谱成像的茄子萎蔫程度判别[J].南方农业学报,2026,57(2):388-397,10.

基金项目

国家自然科学基金面上项目(31872117) (31872117)

热带作物生物育种全国重点实验室科研项目(NKLTCB202341) (NKLTCB202341)

中央级公益性科研院所基本业务费专项(1630062022003) (1630062022003)

中国热带农业科学院国家热带农业科学中心科技创新团队项目(CATASCXTD202514) General Project of National Natural Science Foundation of China(31872117) (CATASCXTD202514)

Scientific Re-search Project of National Key Laboratory for Tropical Crop Breeding(NKLTCB202341) (NKLTCB202341)

Central Public-Interest Scien-tific Institution Basal Research Fund(1630062022003) (1630062022003)

Science and Technology Innovation Team of National Tropical Agricultural Science Center of Chinese Academy of Tropical Agricultural Sciences(CATASCXTD202514) (CATASCXTD202514)

南方农业学报

2095-1191

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