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Variance component analysis of parthenocarpy in elite U.S. processing type cucumber (Cucumis sativus L.) lines

机译:美国加工型黄瓜(Cucumis sativus L.)品系单性结实的方差成分分析

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Parthenocarpic (seedless) U.S. processing type cucumber (Cucumis sativus L.) germplasm can bear more high quality fruit when compared to their seeded counterparts. Knowledge of genetic components of variation for parthenocarpy would assist cucumber breeders to incorporate this economically important trait into commercial varieties. The inheritance of parthenocarpy in elite U.S. processing type cucumber was, therefore, investigated by examining the single-harvest yield of F3 progeny derived from a mating between line 2A (P1, parthenocarpic) and line Gy8 (P2, non-parthenocarpic) grown in two fields (E-block and G-block at Hancock, Wisc.) in the summer of 2000. Environmental variance accounted for about 90% of total phenotypic variance in both locations. The degree of dominance genetic variance was 0.3 and 2.2 at G-block and E-block, respectively, and the minimum number of effective factors controlling parthenocarpy was estimated as 5 (G-block) to 13 (E-block). Estimates of heritability were significantly lower when based on individual plants within an F3 family and on F3 family mean performances. While narrow-sense and broad-sense heritability of individual plants within F3 family was always < 0.1, narrow-sense heritability for F3 family mean performance ranged between 0.33 (E-block) and 0.62 (G-block), and broad-sense heritability ranged between 0.53 (E-block) and 0.67 (G-block). Thus, in this population, advanced generation selection for parthenocarpy based on F3 family mean performance will be more effective than selection of individual plants within F3 family.
机译:单性结实(无籽)美国加工型黄瓜(Cucumis sativus L.)种质的种子比同种种子的果实更优质。单性结实变异的遗传成分的知识将有助于黄瓜育种者将此经济上重要的性状纳入商业品种。因此,通过研究源自2A系(P1 ,单性结实)和Gy8系(P2)交配的F3 子代的单季收获产量,研究了单性结实在美国加工型黄瓜中的遗传。 (非果皮)在2000年夏季在两个田地(威斯康星州汉考克的E区块和G区块)生长。环境差异约占两个地区总表型差异的90%。在G区和E区,优势遗传变异程度分别为0.3和2.2,估计控制单性结实的最小有效因子数为5(G区)至13(E区)。如果以F3 家族中的单个植物和F3 家族的平均表现为基础,则遗传力的估计值会大大降低。 F3 家族中各个植物的狭义和广义遗传力始终<0.1,而F3 家族的狭义遗传力平均表现在0.33(E嵌段)至0.62(G-广义遗传力介于0.53(E区块)和0.67(G区块)之间。因此,在该种群中,基于F3 家族平均表现的单性结实的高级世代选择将比选择F3 家族中的单个植物更有效。

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