大豆品种杂交系间数量性状的基因作用及遗传力评价

Q4 Agricultural and Biological Sciences Indonesian Journal of Agricultural Science Pub Date : 2017-06-01 DOI:10.21082/ijas.v18n1.2017.p25-32
L. Hakim, Suyamto Suyamto
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引用次数: 11

摘要

对遗传作用、遗传力和遗传变异的认识有助于植物育种家设计有效的大豆育种策略。本研究的目的是确定通过分离后代的选择可以实现的数量性状的基因作用、遗传变异性、遗传力和遗传先进性。2014年旱季,在东爪哇木能试验站对5个大豆品种6个杂交组合的F1群体和F2后代进行了评价。采用随机区组设计,共4个重复。每个F1和F2后代和亲本的种子以3 m长、40 cm × 20 cm的株距种植4行,每山1株。结果表明,单株荚果数、籽粒产量、单株产量和收获指数主要受加性基因效应控制。籽粒大小也受加性基因效应控制,籽粒小对籽粒大占优势。株高受加性和非加性基因效应的共同控制。同样,成熟期主要受加性和非加性基因的影响,早熟比晚熟占优势。成熟期遗传力最高,为49.3%,其次是种子大小(47.0%)、收获指数(45.8%)和单株荚果数(45.5%)。因此,它们可用于F3代高产大豆基因型的选择。
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GENE ACTION AND HERITABILITY ESTIMATES OF QUANTITATIVE CHARACTERS AMONG LINES DERIVED FROM VARIETAL CROSSES OF SOYBEAN
The knowledge of genetic action, heritability and genetic variability is useful and permits plant breeder to design efficient breeding strategies in soybean.  The objectives of this study were to determine gene action, genetic variability, heritability and genetic advance of quantitative characters that could be realized through selection of segregation progenies. The F1 population and F2 progenies of six crosses among five soybean varieties were evaluated at Muneng Experimental Station, East Java during the dry season of 2014.  The lines were planted in a randomized block design with four replications.  The seeds of each F1 and F2 progenies and parents were planted in four rows of 3 m long, 40 cm x 20 cm plant spacing, one plant per hill. The result showed that pod number per plant, seed yield, plant yield and harvest index were found to be predominantly controlled by additive gene effects.  Seed size was also controlled by additive gene effects, with small seed dominant to large seed size.  Plant height was found to be controlled by both additive and nonadditive gene effects.  Similarly, days to maturity was due mainly to additive and nonadditive gene effects, with earliness dominant to lateness.  Days to maturity had the highest heritability estimates of 49.3%, followed by seed size (47.0%), harvest index (45.8%), and pod number per plant (45.5%).  Therefore, they could be used in the selection of a high yielding soybean genotype in the F3 generation.
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来源期刊
Indonesian Journal of Agricultural Science
Indonesian Journal of Agricultural Science Agricultural and Biological Sciences-Soil Science
CiteScore
1.00
自引率
0.00%
发文量
5
审稿时长
12 weeks
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