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鎘脅迫下菊苣葉片原位高光譜響應(yīng)特征與定量監(jiān)測研究
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河南農(nóng)業(yè)大學(xué)青年英才專項基金項目(30500427、30500671),、河南省高校國家級大學(xué)生創(chuàng)新創(chuàng)業(yè)訓(xùn)練計劃項目(201810466011)和山東農(nóng)業(yè)大學(xué)作物生物學(xué)國家重點實驗室開放基金項目(2018KF05)


Response Characteristics and Quantitative Monitoring Models Analyzed Using in situ Leaf Hyperspectra under Different Cd Stress Conditions
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    摘要:

    探究鎘脅迫下菊苣葉片高光譜響應(yīng)特征,,以實現(xiàn)基于葉片原位高光譜技術(shù)的作物鎘脅迫快捷,、精準(zhǔn)監(jiān)測,。采用室內(nèi)水培實驗,,供試品種為“歐洲菊苣”,、“美洲菊苣”和“黔育一號”,,設(shè)置0、5,、10,、25、50,、100,、200μmol/L共7個鎘脅迫梯度,于菊苣苗期測試葉片鎘質(zhì)量比及其原位高光譜反射率,。分別利用逐步回歸(SWR),、主成分回歸(PCR)和偏最小二乘回歸(PLS)的統(tǒng)計分析方法對葉片原始光譜(R)及一階微分光譜(FDR)進(jìn)行鎘質(zhì)量比預(yù)測,確定最佳光譜監(jiān)測方式和有效波段,,提高鎘脅迫估測的時效性,。此外,為進(jìn)一步檢驗上述模型的穩(wěn)定性,,再次布置9個獨立菊苣品種鎘脅迫光譜驗證實驗(鎘濃度為50μmol/L),。結(jié)果表明,,鎘脅迫顯著影響菊苣葉片鎘質(zhì)量比及高光譜反射率變化特征;隨鎘梯度增加,,3個品種菊苣鎘含量均顯著提升,,葉片高光譜反射率在可見光-近紅外區(qū)(400~1300nm)逐步降低,中紅外區(qū)(1300~2400nm)則未表現(xiàn)出一致性變化規(guī)律,。全波段光譜分析模型間,,以基于FDR光譜的PLS監(jiān)測模型(FDR-PLS)表現(xiàn)最優(yōu),其獨立驗證集決定系數(shù)(R2),、均方根誤差(RMSE)和相對分析誤差(RPD)分別為0.92,、181.3mg/kg和2.96。根據(jù)FDR-PLS模型中各波段無量綱評價指標(biāo):變量重要性投影值(VIP),,確定菊苣葉片鎘質(zhì)量比有效波長分別為659,、725,、907,、1026、1112,、1255,、1630nm,實現(xiàn)了光譜降維和便捷分析的目的,。此后,,再次構(gòu)建基于上述有效波段的菊苣葉片鎘質(zhì)量比FDR-PLS監(jiān)測模型,其獨立驗證集R2,、RMSE和RPD分別為0.834,、222.4mg/kg和2.41,9個供試品種驗證集R2,、RMSE和RPD分別為0.817,、13.0mg/kg和1.77,預(yù)測效果較為理想,,能夠滿足無損和精準(zhǔn)監(jiān)測需求,。

    Abstract:

    Accurate and nondestructive estimation of cadmium (Cd) status of Cichoriumintybus L. is important for site-specific crop heavy metal stress management. Aiming to rapidly and precision assessment of leaf Cd concentration in Cichoriumintybus L., a hydroponic experiment with three cultivars, i.e., Europea chicory, America chicory and Qianyu no.1 chicory, was conducted in Henan Agricultural University from Dec. 2018 to Mar. 2019. Seven different Cd concentration treatments (0μmol/L, 5μmol/L, 10μmol/L, 25μmol/L, 50μmol/L, 100μmol/L and 200μmol/L) were established with five replications per treatment, and the in situ leaf hyperspectra were taken on at sixleaf and tenleaf stages. Meanwhile, chemical assays of these Cichoriumintybus L. samples were performed in the laboratory. Moreover, data from an independent experiment under 50μmol/L Cd stress condition with nine varieties in Mar. 2019 was also collected to test the transferability of the established optimal monitoring model for leaf Cd concentration prediction. After correlation analysis, stepwise regression (SWR), principal component regression (PCR) and partial least square (PLS) were used to perform the relationship between raw spectral reflectance (R), the first derivative reflectance (FDR) and leaf Cd concentration, respectively. The results showed that leaf Cd concentration in Cichoriumintybus L. was increased with the increase of Cd stress conditions, and the changes in situ leaf spectral reflectance under varied Cd rates were highly significant in the visiblenear infrared region (400~1300nm), with consistent patterns across the different cultivars and growth stages. Using a validation dataset, the best models were calculated with the FDR-PLS method, which yielded the highest coefficient of determination (R2) of 0.92 and the lowest root mean square error (RMSE) and relative percent deviation (RPD) of 181.3mg/kg and 2.96, respectively. The variable importance in projection (VIP) score resulting from PLS regression model was used to determine the effective wavelengths and reduce the dimensionality of the hyperspectral reflectance data. The newly developed FDR-PLS model using the effective wavelengths (659nm, 725nm, 907nm, 1026nm, 1112nm, 1255nm and 1630nm) performed well in leaf Cd concentration prediction with R2 of 0.834 and RPD of 2.41. The validation in the nine varieties’ experiments also indicated an excellent accuracy between the observed and predicted values for leaf Cd concentration (R2 was 0.817, and RPD was 1.77). The overall results demonstrated the applicability and feasibility of the FDR-PLS model for estimating the Cd status of Cichoriumintybus L. using in situ leaf hyperspectral reflectance data.

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李嵐?jié)?申鳳敏,馬文連,樊婕,李亞蓉,柳海濤.鎘脅迫下菊苣葉片原位高光譜響應(yīng)特征與定量監(jiān)測研究[J].農(nóng)業(yè)機(jī)械學(xué)報,2020,51(3):146-155. LI Lantao, SHEN Fengmin, MA Wenlian, FAN Jie, LI Yarong, LIU Haitao. Response Characteristics and Quantitative Monitoring Models Analyzed Using in situ Leaf Hyperspectra under Different Cd Stress Conditions[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(3):146-155.

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  • 收稿日期:2019-06-28
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  • 在線發(fā)布日期: 2020-03-10
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