Selection of sunflower genotypes for salt stress and mechanisms of salt tolerance in contrasting genotypes

被引:7
|
作者
de Azevedo Neto, Andre Dias [1 ]
Azevedo Barros Mota, Katia Nubia [2 ]
Conceicao Silva, Petterson Costa [2 ]
Watanabe Cova, Alide Mitsue [2 ]
Ribas, Rogerio Ferreira [2 ]
Gheyi, Hans Raj [2 ]
机构
[1] Univ Fed Reconcavo Bahia UFRB, Ctr Ciencias Exatas & Tecnol, Cruz Das Almas, BA, Brazil
[2] Univ Fed Reconcavo Bahia UFRB, Ctr Ciencias Agr Ambientais & Biol, Cruz Das Almas, BA, Brazil
来源
CIENCIA E AGROTECNOLOGIA | 2020年 / 44卷
关键词
Helianthus annuus L; genotypic variation; ion distribution; osmotic tolerance; abiotic stress; SALINITY; WATER; ACCUMULATION; IRRIGATION; NITROGEN; GROWTH; PLANTS; YIELD;
D O I
10.1590/1413-7054202044020120
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Salinity is one of the main limiting factors for crop growth. The metabolic responses to salt stress are variable and depend on species characteristics. This study aimed to select sunflower genotypes tolerant to salt stress and evaluate some mechanisms of salt tolerance in two contrasting (salt-tolerant and salt-sensitive) genotypes. In the first assay, the biomass production and the accumulation of Na+ and K+ in 26 sunflower genotypes were evaluated. Genotypes AG963, AG967, AG972, BRS321, BRS324, H251, H360 and H863 showed lower biomass production and were characterized as salt-sensitive and the genotypes BRS323, Catisol, EXP11-26, EXP44-49, EXP60050, EXP887, HLA860H0 and Olisun 5 showed higher biomass production and were considered salt-tolerant. The high K+ content and the low Na+ content in the leaves were the ion traits related to salt tolerance and can be used in sunflower breeding programs for this purpose. In the second assay, the plants of salt-tolerant BRS323 had lower Na+ and Cl- contents and higher levels of K+ than plants of salt-sensitive AG967. A better homeostasis in the mechanisms of transport, distribution and accumulation of inorganic solutes in conjunction with a more efficient osmoregulation mechanism through the synthesis of organic solutes may, at least in part, explain the greater salt-tolerance of BRS323 genotype in comparison to AG967.
引用
收藏
页数:14
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