Genetic diversity in Eastern US soft winter wheat (Triticum aestivum L em Thell) based on RFLPs and coefficients of parentage

被引:51
作者
Kim, HS [1 ]
Ward, RW [1 ]
机构
[1] MICHIGAN STATE UNIV, DEPT CROP & SOIL SCI, E LANSING, MI 48824 USA
关键词
genetic diversity; RFLP; coefficient of parentage; Triticum aestivum; gene pool;
D O I
10.1007/s001220050439
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Genetic diversity in a set of 11 red and 11 white wheat lines from the Eastern U.S. soft wheat germplasm pool was measured using restriction fragment length polymorphism (RFLP) assay and coefficients of parentage (COP) analysis. On average, 78% of all bands revealed by three enzymes with 48 RFLP clones were monomorphic. Average pairwise genetic similarity (CS) was 0.97 when data from all enzymes were pooled. Probe Polymorphic Information Content (PIG) indexes ranged from 0 to 0.73 with a mean of 0.2. Fewer than 55% of the probes revealed any polymorphism. The frequency of polymorphism in the Eastern U.S. soft white winter (SWW) wheat gene pool was much lower than that observed in the Eastern U.S. soft red winter (SRW) wheat gene pool. SWW lines formed a single group on a dendrogram based on cluster analysis of RFLP-derived GS estimates, while SRW lines did not form a single group. COP values for all pairs of the Eastern U.S. soft wheat lines ranged from 0.02 to 0.9 with a mean of 0.21. SWW wheat lines traced to 53 ancestral lines and had an average COP of 0.51. The SRW wheat gene pool had more complex parentages (mean COP = 0.15 and a total of 65 ancestral lines). COPs were correlated with RFLP-based GS for all line pairs (r = 0.73, P < 0.01). However, correlations between the two similarity measures were substantially lower when the SRW and SWW wheat gene pools were considered individually (r values of 0.23 and 0.28, respectively). The actual GS among unrelated lines in the U.S. Eastern soft wheat gene pool appears to be higher than that observed for unrelated landraces from Southwest Asia (0.96 vs. 0.905), suggesting that the ancestral landrace parents of this gene pool were themselves drawn from a base population where inbreeding, i.e., F, was greater than zero.
引用
收藏
页码:472 / 479
页数:8
相关论文
共 24 条
[1]   OPTIMIZING PARENTAL SELECTION FOR GENETIC-LINKAGE MAPS [J].
ANDERSON, JA ;
CHURCHILL, GA ;
AUTRIQUE, JE ;
TANKSLEY, SD ;
SORRELLS, ME .
GENOME, 1993, 36 (01) :181-186
[2]   RFLP-BASED GENETIC MAPS OF WHEAT HOMOLOGOUS GROUP-7 CHROMOSOMES [J].
CHAO, S ;
SHARP, PJ ;
WORLAND, AJ ;
WARHAM, EJ ;
KOEBNER, RMD ;
GALE, MD .
THEORETICAL AND APPLIED GENETICS, 1989, 78 (04) :495-504
[3]   CHANGES IN GENETIC DIVERSITY IN THE RED WINTER-WHEAT REGIONS OF THE UNITED-STATES [J].
COX, TS ;
MURPHY, JP ;
RODGERS, DM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (15) :5583-5586
[4]   GENETIC-RELATIONSHIPS AMONG HARD RED WINTER-WHEAT CULTIVARS AS EVALUATED BY PEDIGREE ANALYSIS AND GLIADIN POLYACRYLAMIDE-GEL ELECTROPHORETIC PATTERNS [J].
COX, TS ;
LOOKHART, GL ;
WALKER, DE ;
HARRELL, LG ;
ALBERS, LD ;
RODGERS, DM .
CROP SCIENCE, 1985, 25 (06) :1058-1063
[5]   RELATIVE GENETIC CONTRIBUTIONS AMONG ANCESTRAL LINES TO NORTH-AMERICAN SOYBEAN CULTIVARS [J].
DELANNAY, X ;
RODGERS, DM ;
PALMER, RG .
CROP SCIENCE, 1983, 23 (05) :944-949
[6]   RELATIONSHIPS AMONG EUROPEAN BARLEY GERMPLASM .2. COMPARISON OF RFLP AND PEDIGREE DATA [J].
GRANER, A ;
LUDWIG, WF ;
MELCHINGER, AE .
CROP SCIENCE, 1994, 34 (05) :1199-1205
[7]   RESTRICTION FRAGMENT POLYMORPHISMS AS PROBES FOR PLANT DIVERSITY AND THEIR DEVELOPMENT AS TOOLS FOR APPLIED PLANT-BREEDING [J].
HELENTJARIS, T ;
KING, G ;
SLOCUM, M ;
SIEDENSTRANG, C ;
WEGMAN, S .
PLANT MOLECULAR BIOLOGY, 1985, 5 (02) :109-118
[8]   DNA RESTRICTION FRAGMENT LENGTH POLYMORPHISMS - A STRATEGY FOR GENETIC-MAPPING OF D GENOME OF WHEAT [J].
KAMMORGAN, LNW ;
GILL, BS ;
MUTHUKRISHNAN, S .
GENOME, 1989, 32 (04) :724-732
[9]   EVALUATION OF SOYBEAN RFLP MARKER DIVERSITY IN ADAPTED GERM PLASM [J].
KEIM, P ;
BEAVIS, W ;
SCHUPP, J ;
FREESTONE, R .
THEORETICAL AND APPLIED GENETICS, 1992, 85 (2-3) :205-212
[10]  
KEMPTHORNE O, 1969, INTRO GENETIC STATIS