300份大麦种质资源苗期耐盐性鉴定及综合评价

Identification and comprehensive evaluation of seedling salt tolerance of 300 barley germplasm resources

  • 摘要:
    目的 为了筛选耐盐碱力强的大麦种质资源。
    方法 本研究根据6份大麦种质的盐损伤指数筛选出萌发期耐盐性鉴定的最佳浓度为150 mmol/L,在该浓度下对300份来自不同地区不同基因型的大麦种质资源苗高、叶长、根长、茎长、叶宽、茎粗、叶面积进行测定,并计算其耐盐系数。本研究采用主成分分析、隶属函数法对大麦种质资源进行耐盐性综合评价。
    结果 150 mmol/L NaCl 胁迫下,大麦变异系数除了叶长、叶宽和茎粗外,其他指标变异幅度均大于10%;经主成分分析,将7项指标降维为4个独立主成分,累计贡献率达83.342%,依据4个主成分的权重计算各种质的D值,据此将300份种质划分为4个等级。
    结论 筛选出11份耐盐种质。

     

    Abstract:
    Objective This study aimed to screen barley germplasm resources with strong salt tolerance.
    Methods Based on the salt damage index of six barley germplasm, 150 mmol/L was selected as the optimal NaCl concentration for assessing salt tolerance at the germination stage. Using this concentration, 300 barley germplasm of varying genotypes and regions were evaluated for seedling height, leaf length, root length, stem length, leaf width, stem thickness, and leaf area, and their salt tolerance indices were calculated. Salt tolerance was then comprehensively evaluated using principal component analysis, affiliation functions, and other analytical methods.
    Results Under 150 mmol/L NaCl stress, the coefficients of variation for all measured barley traits exceeded 10%, except for leaf length, leaf width and stem diameter. Seven indicators were condensed into four principal components via principal component analysis, with a cumulative contribution rate of 83.342%. The D-value of each germplasm accession was calculated based on the weights of the four principal components, and the 300 germplasm resources were classified into four tolerance grades.
    Conclusion Eleven salt-tolerant barley accessions were screened out.

     

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