[1]ÕÔÄÈ,çÑÑÇ÷,Ò¦ÃÎéª,µÈ.²Ï¶¹ÖÖÖÊ×ÊÔ´×ÑÁ£±íÐÍÓëÓªÑøÆ·ÖÊÐÔ×´µÄ¶àÑùÐÔ·ÖÎö[J].½­ËÕũҵѧ±¨,2022,38(03):597-604.[doi:doi:10.3969/j.issn.1000-4440.2022.03.003]
¡¡ZHAO Na,MIAO Ya-mei,YAO Meng-nan,et al.Diversity analysis on seed phenotypic and nutrient quality traits in faba bean germplasm resources[J].,2022,38(03):597-604.[doi:doi:10.3969/j.issn.1000-4440.2022.03.003]
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½­ËÕũҵѧ±¨[ISSN:1006-6977/CN:61-1281/TN]

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38
ÆÚÊý:
2022Äê03ÆÚ
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597-604
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2022-06-30

ÎÄÕÂÐÅÏ¢/Info

Title:
Diversity analysis on seed phenotypic and nutrient quality traits in faba bean germplasm resources
×÷Õß:
ÕÔÄÈçÑÑÇ÷ҦÃÎéªÑ¦¶¬¹Ë´ºÑàÍô¿­»ªÍõÓÀÇ¿Íõѧ¾ü
£¨½­ËÕÑؽ­µØÇøÅ©Òµ¿ÆѧÑо¿Ëù£¬½­ËÕÄÏͨ226541£©
Author(s):
ZHAO NaMIAO Ya-meiYAO Meng-nanXUE DongGU Chun-yanWANG Kai-huaWANG Yong-qiangWANG Xue-jun
(Jiangsu Yanjiang Institute of Agricultural Sciences, Nantong 226541, China)
¹Ø¼ü´Ê:
²Ï¶¹×ÑÁ£±íÐÍÐÔ×´Æ·ÖÊÐÔ×´Ïà¹ØÐÔ·ÖÎöÖ÷³É·Ö·ÖÎö¾ÛÀà·ÖÎö
Keywords:
faba beanseed phenotypic traitsquality traitscorrelation analysisprincipal component analysiscluster analysis
·ÖÀàºÅ:
S529
DOI:
doi:10.3969/j.issn.1000-4440.2022.03.003
ÎÄÏ×±êÖ¾Âë:
A
ÕªÒª:
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Abstract:
Genetic diversities of seed phenotypic traits and nutrient quality-related traits of faba bean germplasm resources were evaluated to provide reference for the innovation of faba bean germplasm resources and quality breeding in China. Correlation analysis, principal component analysis and cluster analysis of six seed phenotypic traits and six nutrient quality-related traits of 55 faba bean germplasm resources were conducted. The results demonstrated that, the variable coefficients of seed phenotypic traits were 2.44%-32.94%, and the genetic diversity indices were 1.861-2.046. The variable coefficients of nutrient quality-related traits were 3.91%-44.22%, and the genetic diversity indices were 1.174-2.038. Results of correlation analysis showed that, relevance was observed between seed nutrient quality-related phenotypic traits and phenotypic traits. Seed protein content was in significant positive correlation with seed width, seed perimeter and seed surface area, while starch content was in extremely significant negative correlation with seed length, seed width, seed perimeter, seed surface area and hundred-grain weight. Cumulative contribution rate of the front four main components was 78.152%. The first principal component was mainly determined by traits such as seed surface area, seed length, seed perimeter, seed width and hundred-seed weight. The second principal component was mainly determined by length-width ratio and tannin content of seed. The third principal component was mainly determined by starch content and crude fibre content. The fourth principal component was mainly determined by fat content and protein content. 55 faba bean resources were divided into five groups by cluster analysis. Among them, group ¢ñ belonged to moderate-sized materials with low contents of starch, fat and crude fibre. Group ¢ò belonged to excellent large-sized materials with high contents of protein and fat. Group ¢ó belonged to special large-sized materials with high tannin content. Group ¢ô belonged to excellent middle-sized materials with high contents of starch and crude fibre, but with low content of tannin. Group ¢õ belonged to small-sized materials with low moisture content.

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