Physiological, biochemical and morphoagronomic characterization of drought-tolerant and drought-sensitive bean genotypes under water stress

被引:0
作者
Isabella Mendonça Arruda
Vânia Moda-Cirino
Alessandra Koltun
Odair José Andrade Pais dos Santos
Renata Stolf Moreira
Aline Fabiana Paladini Moreira
Leandro Simões Azeredo Gonçalves
机构
[1] Universidade Estadual de Londrina,Agronomy Department
[2] Instituto Agronômico do Paraná (IAPAR),Agronomy Department
[3] Universidade Estadual de Maringá (UEM),Animal and Plant Biology Department
[4] Universidade Estadual de Londrina (UEL),undefined
来源
Physiology and Molecular Biology of Plants | 2018年 / 24卷
关键词
L.; Drought tolerance; Abiotic stress; Plant breeding;
D O I
暂无
中图分类号
学科分类号
摘要
Water deficit is one of the main factors that reduce grain yield. A better understanding of the mechanisms related to this abiotic stress is a key aspect to design and act upon drought tolerance improvement in crop plants. Therefore, the major objective of this study was to investigate four common bean genotypes for drought tolerance and to establish their tolerance mechanisms. The experiment was carried out in a greenhouse, using the completely randomized design in a factorial arrangement (2 × 4), composed by 2 water conditions (well-watered and water deficit) and 4 cultivars, with six replicates per treatment. The four cultivars, two drought-sensitive (IAC Tybatã and BRS Pontal) and two drought-tolerant (IAPAR 81 and BAT 477), were evaluated for some physiological, biochemical and morphoagronomic traits. Drought promoted physiological and metabolic changes in the plants, reflecting on the morphoagronomic traits. Under water deficit, the genotype IAPAR 81 stood out from the others in terms of physiological characters, however, it presented a low efficiency concerning biochemical activities and a significant reduction in the morphoagronomic characters. The cultivar BAT 477 demonstrated to be drought-adapted presenting more efficient biochemical and morphoagronomic adaptions and the genotype BRS Pontal obtained morphoagronomic values similar to BAT 477, thus it may be classified as moderately tolerant to drought.
引用
收藏
页码:1059 / 1067
页数:8
相关论文
共 115 条
[1]  
Aguiar RS(2008)Evaluation of promising lines of common bean ( Semina: Agr Sci 29 1-13
[2]  
Moda-Cirino V(2016) L.) tolerant to water deficit Euphytica 210 277-289
[3]  
Faria RT(2016)Biochemical indicators of drought tolerance in the common bean ( Annu Rep Bean Improv Coop 59 35-36
[4]  
Vida LHI(2004) L.) Annu Rev Plant Biol 55 373-399
[5]  
Andrade ER(2012)Physiological responses of two drought tolerant common bean cultivars Mol Breed 30 681-695
[6]  
Ribeiro VN(2007)Reactive oxygen species: metabolism, oxidative stress and signal transduction Environ Exp Bot 59 206-216
[7]  
Azevedo CVG(2008)Quantitative trait loci for rooting pattern traits of common beans grown under drought stress versus non-stress conditions Crop Sci 48 582-592
[8]  
Chiorato AFC(2013)Roles of glycine betaine and proline in improving plant abiotic stress resistance Front in Physiol 4 1-20
[9]  
Williams TCR(2013)Selection for drought resistance in common bean also improves yield in phosphorus limited and favorable environments Plant Breed 132 21-32
[10]  
Carbonell SAM(2016)Phenotyping common beans for adaptation to drought Plant Sci 242 250-259