首页> 外文期刊>Agro-Science: Journal of Tropical Agriculture, Food, Environmental and Extension >PROGRESS IN BREEDING DIPLOID GENETIC STOCKS OF BANANA WITH RESISTANCE TO BLACK SIGATOKA
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PROGRESS IN BREEDING DIPLOID GENETIC STOCKS OF BANANA WITH RESISTANCE TO BLACK SIGATOKA

机译:香蕉黑抗病育成的二倍体遗传学研究进展

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摘要

Selected genetically related diploid Musa materials of the base, first, and second generations of the breeding programme in the International Institute of Tropical Agriculture (IIT A) high rainfall station, Onne were evaluated for black Sigatoka resistance and agronomic performance. This was done in order to assess the progress made over time in the breeding programme. The results obtained showed that progress has been made from the base generation to generation 1 and from generation 1 to generation2 in the improvement of the yield attributes of the highly black Sigatoka resistant diploid Musa cultivars- Calcutta 4 and pisang Win. The diploid hybrids selected in generations 1 and 2 were not as resistant to black Sigatoka disease as the parents. However, improvement at generation 2 has succeeded in bringing together, productivity and resistance traits which seemed to oppose each other in generation 1 as revealed by the biplots. The clones, 2625-5, 9007-4, 1518-4, and 2829-62 from the crosses between Bobby tannap and Calcutta 4 in generation 1 were strongly associated with index of non-spotted leaves in the biplot. The clones, 25291-S26, 25291-S32, 25291-S62, and 25291-1A from the double-cross (BT x C4) x (TL x PL) were associated with most of theyield, disease response and phenological traits. The clones, 25291-S89, 25291-S26, 25291-S32, 25291-S62, 25291-S58, 25233-S3, and 27398 had combination of positive and relatively high heterosis both for black Sigatoka resistance and productivity traits.
机译:在国际热带农业研究所(IIT A)高雨量站Onne的育种程序的第一代,第二代和第二代中,选择了与遗传相关的二倍体Musa材料,对Onne进行了黑色Sigatoka抗性和农艺学性能评估。这样做是为了评估随着时间的推移在育种计划中取得的进展。获得的结果表明,从基础一代到第一代和从第一代到第二代在提高高度耐黑Sigatoka二倍体Musa品种加尔各答4和pisang Win的产量属性方面已取得进展。在第1代和第2代中选择的二倍体杂种对黑色Sigatoka病的抵抗力不如其父母。但是,第二代的改进已成功地将生产力和抵抗力特征融合在一起,这在双代人看来似乎在第一代中是相互对立的。来自第1代Bobby tannap和Calcutta 4之间杂交的克隆2625-5、9007-4、1518-4和2829-62与双谱图中未发现叶片的索引密切相关。来自双杂交(BT x C4)x(TL x PL)的克隆25291-S26、25291-S32、25291-S62和25291-1A与大多数杂种,疾病反应和物候特性相关。克隆25291-S89、25291-S26、25291-S32、25291-S62、25291-S58、25233-S3和27398均具有阳性和相对较高杂种优势的组合,两者均具有黑色Sigatoka抗性和生产力性状。

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