首页> 外文期刊>Journal of Science of the University of Kelaniya Sri Lanka >Producing inter-specific hybrids between Brassica juncea (L.) Czern & Coss and B. oleracea (L.) to synthesize trigenomic (abc) Brassica
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Producing inter-specific hybrids between Brassica juncea (L.) Czern & Coss and B. oleracea (L.) to synthesize trigenomic (abc) Brassica

机译:在芥菜(L.)Czern&Coss和油菜双歧杆菌(L.)之间产生种间杂种以合成三基因组(abc)芸苔

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Polyploidy is recognized as a major mechanism in plant evolution. Polyploid crops often have wider adaptation, better quality and higher yielding capacity than their diploid counterparts. Although many successful natural and man-made hexaploid crops are existing, hexaploid Brassica are still not available. So far, relatively a limited work has been conducted to synthesize hexaploid Brassica with A, B and C genomes, which? will provide a very good potential to create new crops for domestication. An investigation was conducted to evaluate the possibility of synthesizing trigenomic (AABBCC) hexaploid Brassica by crossing Brassica? juncea? (L.) Czern & Coss and B. oleracea (L.). Five genotypes of B. juncea? (AC 0747, 0790, 1099, 2180 and 7700) and five genotypes of B. oleracea (Chinese Broccoli, Broccoli-var. Shogun, Cauliflower-var. Snowball and var., Phenomenon Early and Cabbage-var. Sweet Eureka) were selected for the study. Hand pollination was done by emasculating buds of one species and pollination using another species in both directions. Success of pod formation of the crosses of B. juncea (♀) x B. oleracea (♂) was 25%. Totally 893 putative hybrid seeds were harvested. Although 9% pod formation was observed in reciprocal crosses, no seeds were developed. Evaluation of 80 putative hybrids by molecular markers and agro-morphological characterization confirmed four true hybrids resulting crosses between AC 0747 x Chinese Broccoli, AC 0790 x Chinese Broccoli and AC 2180 x Broccoli-var. Shogun. The present investigation confirms that hybridization of tetraploid B. juncea (4x, AABB) with diploid B. oleracea (2x, CC) is a potential approach to produce hexaploid Brassica (6x, AABBCC) genotypes.
机译:多倍体被认为是植物进化的主要机制。多倍体作物通常比二倍体作物具有更广泛的适应性,更好的质量和更高的产量。尽管存在许多成功的天然和人造六倍体作物,但六倍体芸苔属仍然不可用。到目前为止,已经进行了相对有限的工作来合成具有A,B和C基因组的六倍体芸苔,这是什么?将提供非常好的潜力来种植新的驯化作物。进行了一项研究,以评估通过杂交甘蓝来合成三基因组(AABBCC)六倍体甘蓝型油菜的可能性。 juncea? (L.)Czern&Coss和B. oleracea(L.)。芥菜五种基因型? (AC 0747、0790、1099、2180和7700)和五种B. oleracea基因型(中国花椰菜,西兰花变种Shogun,花椰菜变种Snowball和变种,现象早期和卷心菜变种,甜尤里卡)。为研究。手工授粉是通过使一种物种的花蕾去雄并在两个方向上使用另一种物种进行授粉来完成的。 B. juncea(♀)x B. oleracea(♂)杂交的荚形成成功率为25%。总共收获了893个推定的杂种种子。尽管在相互杂交中观察到9%的豆荚形成,但没有形成种子。通过分子标记和农业形态学特征对80个推定的杂种进行评估,确认了四个真正的杂种,它们在AC 0747 x中国西兰花,AC 0790 x中国西兰花和AC 2180 x西兰花-var之间杂交。将军。本研究证实,四倍体芥菜型油菜(4x,AABB)与二倍体油菜(2x,CC)的杂交是产生六倍体芸苔属(6x,AABBCC)基因型的潜在方法。

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