Constitutive Defense Strategy of Coffee Under Field Conditions: A Comparative Assessment of Resistant and Susceptible Cultivars to Rust

被引:0
作者
Tharyn Reichel
Mário Lúcio Vilela de Resende
Ana Cristina Andrade Monteiro
Natália Chagas Freitas
Deila Magna dos Santos Botelho
机构
[1] Federal University of Lavras,Department of Plant Pathology
[2] Agroteste,undefined
[3] Embrapa Agroenergy,undefined
来源
Molecular Biotechnology | 2022年 / 64卷
关键词
Reference genes; Gene expression; Integrated analyses; Lignin;
D O I
暂无
中图分类号
学科分类号
摘要
Coffea arabica is the most economically important coffee species worldwide. However, its production is severely limited by diseases such as rust. The mechanisms underlying constitutive defense responses in coffee are still poorly understood, compared with induced defense mechanisms. We aimed to characterize constitutive defense responses of thirteen cultivars of C. arabica. Cultivars were classified under field conditions according to the level of resistance to rust: resistant (R), moderately resistant (MR), and susceptible (S). Based on this classification, the stability of eight reference genes (RGs) was evaluated. The most stable RGs were EF1α, APT1, and 24S. We also evaluated the expression of CaWRKY1, CaPAL1, CaCAD1, and CaPOX1, and activities of PAL, CAD, and POX, which are involved in lignin biosynthesis, and leaf content of total phenolic compounds and lignin. Gene expression and enzymatic activity were not correlated with defense metabolites in the R cultivar group but showed a negative correlation with phenolic compounds in MR cultivars. Cultivar S showed positive correlations of gene expression and enzyme activity with phenolic compounds. These results may assist coffee breeding programs regarding selection of genotypes and in optimization of rust resistance.
引用
收藏
页码:263 / 277
页数:14
相关论文
共 443 条
[61]  
Kushalappa AC(2009) bark, in response to seasonal variation BMC Molecular Biology 10 1-1051
[62]  
Gunnaiah R(2009)Integration of transcriptome and proteome analyses reveal molecular mechanisms for formation of replant disease in Molecular Breeding 23 607-536
[63]  
Caicedo BLC(2013)Development and validation of a standard area diagram set to estimate severity of leaf rust in BMC Research Notes 6 388-1245
[64]  
Cortina Guerrero HA(2012) and Plant Molecular Biology Reporter 30 741-1616
[65]  
Roux J(2018)The effect of nitrogen fertilization on the expression of slow-mildewing resistance in Knox wheat Journal of Biosciences 43 173-785
[66]  
Wingfield MJ(2019)Promoter analysis of the WRKY transcription factors Current Genetics 65 243-1988
[67]  
Herrera JCP(2012) and The Plant Cell 24 2200-97
[68]  
Alvarado AG(2013) homoeologous genes in coffee Plant Physiology 162 333-459
[69]  
Cortina GHA(2015)miRDeepFinder: A miRNA analysis tool for deep sequencing of plant small RNAs PLoS Genetics 11 e1005199-374
[70]  
Combes MC(2019)Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes Journal of Biological Chemistry 294 1410-234