PROCEDURES FOR IDENTIFYING S-ALLELE GENOTYPES OF BRASSICA

被引:20
作者
WALLACE, DH [1 ]
机构
[1] CORNELL UNIV,DEPT VEGETABLE CROPS,ITHACA,NY 14853
关键词
Brassica; Crucifer; Dominance; Hybrid; Incompatibility; S alleles;
D O I
10.1007/BF00281207
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Procedures are described for efficient selection of: (1) homozygous and heterozygous S-allele genotypes; (2) homozygous inbreds with the strong self- and sib-incompatibility required for effective seed production of single-cross F1 hybrids; (3) heterozygous genotypes with the high self- and sib-incompatibility required for effective seed production of 3- and 4-way hybrids. From reciprocal crosses between two first generation inbred (I1) plants there are three potential results: both crosses are incompatible; one is incompatible and the other compatible; and both are compatible. Incompatibility of both crosses is useful information only when combined with data from other reciprocal crosses. Each compatible cross, depending on whether its reciprocal is incompatible or compatible, dictates alternative reasoning and additional reciprocal crosses for efficiently and simultaneously identifying: (A) the S-allele genotype of all individual I1 plants, and (B) the expressions of dominance or codominance in pollen and stigma (sexual organs) of an S-allele heterozygous genotype. Reciprocal crosses provide the only efficient means of identifying S-allele genotypes and also the sexual-organ x S-allele-interaction types. Fluorescent microscope assay of pollen tube penetration into the style facilitates quantitation within 24-48 hours of incompatibility and compatibility of the reciprocal crosses. A procedure for quantitating the reciprocal difference is described that maximizes informational content of the data about interactions between S alleles in pollen and stigma of the S-allele-heterozygous genotype. Use of the non-inbred Io generation parent as a 'known' heterozygous S-allele genotype in crosses with its first generation selfed (I1) progeny usually reduces at least 7 fold the effort required for achieving objectives 1, 2, and 3, compared to the method of making reciprocal crosses only among I1 plants. Identifying the heterozygous and both homozygous S-allele genotypes during the I1 generation facilitates, during subsequent inbred generations, strong selection for or against modifier genes that influence the intensity of self- and sib-incompatibility. Selection for strong self and sib incompatibility can be effective for both homozygous inbreds and also for the S-allele heterozygote, thus facilitating production of single-cross F1 hybrids and also of 3-and 4-way hybrids. © 1979 Springer-Verlag.
引用
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页码:249 / 265
页数:17
相关论文
共 41 条
[1]   SELF-INCOMPATIBILITY IN ANGIOSPERMS - A REVIEW [J].
ARASU, NT .
GENETICA, 1968, 39 (01) :1-+
[2]  
CARTER AL, 1975, EUPHYTICA, V25, P531
[3]  
FAULKNER GJ, 1977, ANN APPL GENET, V51, P21
[4]   MODEL FOR SELF-RECOGNITION AND REGULATION OF INCOMPATIBILITY RESPONSE OF POLLEN [J].
FERRARI, TE ;
WALLACE, DH .
THEORETICAL AND APPLIED GENETICS, 1977, 50 (05) :211-225
[5]  
Frankel R., 1977, MONOGRAPHS THEORETIC, P1, DOI [10.1007/978-3-642-81059-3, DOI 10.1007/978-3-642-81059-3]
[6]   METHODS OF PRODUCING F1 HYBRID SWEDES (BRASSICA-NAPUS SSP-RAPIFERA) [J].
GOWERS, S .
EUPHYTICA, 1975, 24 (02) :537-541
[7]  
HARUTA T, 1962, 2 JAP RES B
[8]  
Heslop-Harrison J., 1975, GAMETE COMPETITION P, P177
[9]   INCOMPATIBILITY AND POLLEN-STIGMA INTERACTION [J].
HESLOPHARRISON, J .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1975, 26 :403-425
[10]  
HESLOPHARRISON J, 1974, 1974 P EUC M CRUC, P14