Abstract

Abstract: In order to fully understand and effectively utilize the genetic diversity of Jerusalem artichoke accessions in China. 257 Jerusalem artichoke accessions were analyzed. Among them, 12 quantitative traits had 6%–50% of the coefficient of variation, with a mean of 24.75%, which was the highest in tuber weight per plant (50%) and the smallest in growth period (6%). The diversity index ( H′ ) of these 12 traits was 1.24–1.53, with a mean of 1.44, which was the highest in tuber number per plant (1.53) and the lowest in leaf width (1.24). The diversity index of the eight quality traits was 0.85–1.08, with a mean of 0.98, which was the highest in tuber habit and the lowest in tuber uniformity, showing rich genetic diversity in most traits. The subordinate function of 257 Jerusalem artichoke accessions was 0.12–0.58, in which the highest was in JA1095 (0.58) with the obvious advantages of flower number and tuber weight per plant. The correlation analysis of 12 quantitative traits indicated that stem diameter, leaf length, flower and disk size could be used as the main target traits for high yield Jerusalem artichoke varieties breeding in the future. The results of principal component analysis showed that the cumulative contribution rate of the seven principal component factors was 66.794%. Among them, the number of flowers, the tuber number per plant, the number of tuber hairs and the smoothness of tuber epidermis were the main factors contributing to the phenotypic difference of Jerusalem artichoke. By cluster analysis, 257 accessions materials were divided into five categories based on 20 traits,among them class I and class II accounted for 85% of the total germplasm resources. This results can provide an important reference for the utilization of Jerusalem artichoke accessions and variety breeding.

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