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DOI10.3390/ijms20092273
Using Thermography to Confirm Genotypic Variation for Drought Response in Maize
Casari, Raphael A. C. N.1; Paiva, Dayane S.1; Silva, Vivianny N. B.1,2; Ferreira, Thalita M. M.1,2; Souza Junior, Manoel T.1,2; Oliveira, Nelson G.1; Kobayashi, Adilson K.1; Molinari, Hugo B. C.1; Santos, Thiago T.3; Gomide, Reinaldo L.4; Magalhaes, Paulo C.4; Sousa, Carlos A. F.1,5
发表日期2019
ISSN1422-0067
卷号20期号:9
英文摘要

The feasibility of thermography as a technique for plant screening aiming at drought-tolerance has been proven by its relationship with gas exchange, biomass, and yield. In this study, unlike most of the previous, thermography was applied for phenotyping contrasting maize genotypes whose classification for drought tolerance had already been established in the field. Our objective was to determine whether thermography-based classification would discriminate the maize genotypes in a similar way as the field selection in which just grain yield was taken into account as a criterion. We evaluated gas exchange, daily water consumption, leaf relative water content, aboveground biomass, and grain yield. Indeed, the screening of maize genotypes based on canopy temperature showed similar results to traditional methods. Nevertheless, canopy temperature only partially reflected gas exchange rates and daily water consumption in plants under drought. Part of the explanation may lie in the changes that drought had caused in plant leaves and canopy structure, altering absorption and dissipation of energy, photosynthesis, transpiration, and partitioning rates. Accordingly, although there was a negative relationship between grain yield and plant canopy temperature, it does not necessarily mean that plants whose canopies were maintained cooler under drought achieved the highest yield.


WOS研究方向Biochemistry & Molecular Biology ; Chemistry
来源期刊INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/96942
作者单位1.Embrapa Agroenergia, Parque Estacao Biol PqEB, Ave W3 Norte Final, BR-7077090 Brasilia, DF, Brazil;
2.Univ Fed Lavras, Chem Dept, Campus Univ, BR-3720000 Lavras, MG, Brazil;
3.Embrapa Informat, Av Dr Andre Tosello,209 Cidade Univ, BR-1308388 Campinas, SP, Brazil;
4.Embrapa Milho & Sorgo, Rod MG 424 Km 45, BR-3570197 Sete Lagoas, MG, Brazil;
5.Embrapa Meio Norte, Av Duque Caxias 5650, BR-64006245 Teresina, PI, Brazil
推荐引用方式
GB/T 7714
Casari, Raphael A. C. N.,Paiva, Dayane S.,Silva, Vivianny N. B.,et al. Using Thermography to Confirm Genotypic Variation for Drought Response in Maize[J],2019,20(9).
APA Casari, Raphael A. C. N..,Paiva, Dayane S..,Silva, Vivianny N. B..,Ferreira, Thalita M. M..,Souza Junior, Manoel T..,...&Sousa, Carlos A. F..(2019).Using Thermography to Confirm Genotypic Variation for Drought Response in Maize.INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,20(9).
MLA Casari, Raphael A. C. N.,et al."Using Thermography to Confirm Genotypic Variation for Drought Response in Maize".INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 20.9(2019).
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