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A comparison of hydroponic and soil-based screening methods to identify salt tolerance in the field in barley

机译:水培和土壤筛选方法在大麦田间鉴定耐盐性的比较

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摘要

Success in breeding crops for yield and other quantitative traits depends on the use of methods to evaluate genotypes accurately under field conditions. Although many screening criteria have been suggested to distinguish between genotypes for their salt tolerance under controlled environmental conditions, there is a need to test these criteria in the field. In this study, the salt tolerance, ion concentrations, and accumulation of compatible solutes of genotypes of barley with a range of putative salt tolerance were investigated using three growing conditions (hydroponics, soil in pots, and natural saline field). Initially, 60 genotypes of barley were screened for their salt tolerance and uptake of Na+, Cl–, and K+ at 150 mM NaCl and, based on this, a subset of 15 genotypes was selected for testing in pots and in the field. Expression of salt tolerance in saline solution culture was not a reliable indicator of the differences in salt tolerance between barley plants that were evident in saline soil-based comparisons. Significant correlations were observed in the rankings of genotypes on the basis of their grain yield production at a moderately saline field site and their relative shoot growth in pots at ECe 7.2 [Spearman’s rank correlation (rs)=0.79] and ECe 15.3 (rs=0.82) and the crucial parameter of leaf Na+ (rs=0.72) and Cl– (rs=0.82) concentrations at ECe 7.2 dS m−1. This work has established screening procedures that correlated well with grain yield at sites with moderate levels of soil salinity. This study also showed that both salt exclusion and osmotic tolerance are involved in salt tolerance and that the relative importance of these traits may differ with the severity of the salt stress. In soil, ion exclusion tended to be more important at low to moderate levels of stress but osmotic stress became more important at higher stress levels. Salt exclusion coupled with a synthesis of organic solutes were shown to be important components of salt tolerance in the tolerant genotypes and further field tests of these plants under stress conditions will help to verify their potential utility in crop-improvement programmes.
机译:在作物上获得产量和其他数量性状的成功取决于能否在田间条件下准确评估基因型。尽管已提出许多筛选标准以区分基因型在受控环境条件下的耐盐性,但仍需要在现场测试这些标准。在这项研究中,使用三种生长条件(水培法,盆栽土壤和天然盐田)研究了具有一定假定耐盐性的大麦基因型的耐盐性,离子浓度和相容性溶质的积累。最初,筛选了60个基因型的大麦的耐盐性以及在150 mM NaCl中对Na +,Cl-和K +的吸收,基于此,选择了15种基因型的一个子集用于盆栽和田间测试。盐溶液培养中耐盐性的表达不是大麦植物之间耐盐性差异的可靠指标,这在基于盐渍土壤的比较中很明显。根据基因型的排名,在中度盐渍地上的谷物产量及其在ECe 7.2 [Spearman等级相关(rs)= 0.79]和ECe 15.3(rs = 0.82 )和ECe 7.2 dS m-1时叶片Na +(rs = 0.72)和Cl–(rs = 0.82)浓度的关键参数。这项工作已经建立了筛选程序,该程序与土壤盐分中等的地点的谷物产量密切相关。这项研究还表明,排盐和渗透耐性都与耐盐性有关,并且这些性状的相对重要性可能随盐胁迫的严重程度而不同。在土壤中,在低至中等压力水平下,离子排斥倾向于更为重要,而在较高压力水平下,渗透胁迫则变得更为重要。盐排除和有机溶质的合成被证明是耐性基因型中耐盐性的重要组成部分,这些植物在胁迫条件下的进一步田间试验将有助于验证其在作物改良计划中的潜在效用。

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