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首页> 外文期刊>Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca: Agriculture >Identification of Heterotic Pairs by Full-Sib Reciprocal Recurrent Selection in Maize Synthetic Populations on Turda CompositeA(B)(2) x Turda CompositeB(A)(2)
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Identification of Heterotic Pairs by Full-Sib Reciprocal Recurrent Selection in Maize Synthetic Populations on Turda CompositeA(B)(2) x Turda CompositeB(A)(2)

机译:通过Turb CompositeA(B)(2)x Turda CompositeB(A)(2)上玉米合成群体的全同胞反向轮回选择鉴定杂种对。

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Normal 0 21 false false false MicrosoftInternetExplorer4 In the last 40 years, pre-breeding works induced, in more and more centers of maize breeding, full-sib reciprocal recurrent selection programmes to identify some heterotic pairs which can be sources for obtaining performance inbred lines. The aim is to identify the heterotic pairs with the best results according to the yield potential of maize, the breaking and falling resistance, and the grains moisture at the harvesting time. The creation programme of A and B composite population started at ARDS Turda in 1985. Inside of A composite came the next inbred lines: B73, A632, M117, TC209, T291, being from the B SSS heterotic group, and inside of B composite came the inbred lines Mo17, C103, TC 208, T248, W633, appreciated by us or being related to Lancaster Sure Crop heterotic group. The experimentation was done in two orientation comparative cultures, each one with 49 variants, in 4 repetitions; the comparative culture was a balanced quadratic grid of 7x7 type. From each culture were chosen the first six variants, which were evaluated according to the next characters: production potential, breaking and falling resistance, grains moisture at harvest. The presented results are a part from the second cycle of full-sib reciprocal recurrent selection. Test crosses and self-pollinations were made on plants from the two composites which had two cobs; on the first cob from A Composite realised the cross with the corresponding plant from the B Composite, and from the plant panicle of the B Composite was collected pollen to pollinate the chosen plant from the A Composite. At the both plants from the crossing, the second cob was self-pollinated and kept in reserve until 2010, when the test crosses was experimented and were selected the pairs with the best results according to the above characters. Using the full-sib reciprocal recurrent selection, we can successfully harnessing, simultaneously, the additive and non-additive gene effects.
机译:正常0 21假假假MicrosoftInternetExplorer4在过去40年中,预育工作在越来越多的玉米育种中心引入了全同胞互惠轮回选择程序,以识别一些杂种对,这些杂种对可作为获得性能自交系的来源。目的是根据收获时的玉米单产潜力,抗断裂性和抗摔性以及谷物水分确定最佳结果的杂种对。 A和B复合种群的创建程序始于1985年的ARDS Turda。在A复合种群内部,出现了下一个自交系:来自B SSS杂合群的B73,A632,M117,TC209,T291,以及B复合种群的内部自交系Mo17,C103,TC 208,T248,W633,受到我们的赞赏或与Lancaster Sure Crop杂种群体有关。实验是在两种取向比较文化中进行的,每种文化有49种变异,重复4次。比较文化是7x7类型的平衡二次方网格。从每种培养物中选择前六个变种,然后根据以下特征进行评估:生产潜力,抗断裂和抗摔性,收获时谷物的水分。给出的结果是全同胞往复复发选择的第二个周期的一部分。用具有两个穗轴的两种复合材料对植物进行测试杂交和自花授粉。来自A Composite的第一个穗轴实现了与来自B Composite的相应植物的杂交,并从B Composite的植物圆锥花粉中收集了花粉,以对来自A Composite的所选植物进行授粉。在杂交后的两株植物中,第二个穗轴是自花授粉的,并一直保留到2010年,直到进行试验杂交并根据上述特征选出效果最佳的对。使用全同胞倒数递归选择,我们可以成功地同时利用加性和非加性基因效应。

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