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Seed parent breeding efficiency of three diverse cytoplasmic-nuclear male-sterility systems in pearl millet

机译:珍珠粟三种不同细胞质-核雄性不育系统的种子亲本繁殖效率

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Pearl millet (Pennisetum glaucum (L.) R. Br.) hybrids, grown widely in India and to some extent in the US, are all based on an A1 CMS source, leaving the pearl millet hybrids vulnerable to potential disease or insect pest epidemics. A comparison of this CMS system with two additional CMS systems (A4 and A5) in the present study based on isonuclear A-lines (seed parents) and their isonuclear hybrids showed that A-lines with the A4 cytoplasm had much fewer pollen shedders and much reduced selfed seed set in visually assessed non-shedding plants as compared to those with the A1 cytoplasm. A-lines with the A5 cytoplasm had neither any pollen shedders nor did they set any seed when selfed. This showed that the A5 CMS system imparts complete and most stable male sterility, followed by the A4 and A1 CMS systems. The frequency of maintainers, averaged across a diverse range of 26 populations, was highest for the A5 CMS system (98%), followed by the A4 (59%) and the A1 (34%) system indicating the greatest prospects for genetic diversification of A-lines lies with the A5 cytoplasm, and the least with the A1 cytoplasm. Mean grain yield of hybrids with the A1 cytoplasm was 5% more than the A4-system hybrids, while there was no difference between the mean grain yield of hybrids based on A1 and A5 CMS systems. Based on these results, it is suggested that seed parents breeding efficiency will be the greatest with the A5 CMS system, followed by the A4 CMS system, and least with the currently commercial A1 CMS system. Keywords Breeding efficiency - Cytoplasm - Isonuclear A-lines - Male sterility - Pearl millet - Pennisetum glaucum
机译:在印度和美国一定程度上广泛种植的珍珠小米(Pennisetum glaucum(L.)R. Br。)杂种都基于A 1 CMS来源,因此留下了珍珠小米杂种易受潜在疾病或虫害流行的影响。基于同核A系(种子亲本)及其同核杂种,本研究将此CMS系统与两个其他CMS系统(A 4 和A 5 )进行比较结果表明,与具有A 1 的植物相比,具有A 4 胞质的A系在通过目测评估的无脱落植物中具有更少的花粉脱落和自交种子结实的减少。细胞质。带有A 5 细胞质的A系自交时既没有花粉脱落剂,也没有结籽。这表明,A 5 CMS系统赋予了完全且最稳定的雄性不育,其次是A 4 和A 1 CMS系统。 A 5 CMS系统的维护者频率在26个不同人群中平均,最高(98%),其次是A 4 (59%) A 1 (34%)系统表明A系遗传多样性的最大前景在于A 5 细胞质,而最小的A 1 细胞质。具有A 1 细胞质的杂种的平均籽粒产量比A 4 系统的杂种的平均籽粒产量高5%,而基于A 1 和A 5 CMS系统。根据这些结果,建议使用A 5 CMS系统的种子亲本育种效率最高,其次是A 4 CMS系统,而使用A 4 CMS系统育种效率最低。当前商用的A 1 CMS系统。关键词繁殖效率-细胞质-核A系-雄性不育-珍珠粟-青草

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