首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Development of a population for substantial new type Brassica napus diversified at both A/C genomes.
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Development of a population for substantial new type Brassica napus diversified at both A/C genomes.

机译:大量新型甘蓝型油菜的种群发展在两个A / C基因组上都多样化了。

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Intersubgenomic heterosis in rapeseed has been revealed in previous studies by using traditional Brassica napus (AnAnCnCn) to cross partial new type B. napus with Ar/Cc introgression from the genomes of B. rapa and B. carinata, respectively. To further enlarge the genetic basis of B. napus and to facilitate a sustained heterosis breeding in rapeseed, it is crucial to create a population for substantial new type B. napus diversified at both A/C genomes. In this experiment, hundreds of artificial hexaploid plants (ArArBcBcCcCc) involving hundreds of B. carinata/B. rapa combinations were first crossed with elite lines of partial new type B. napus. The pentaploid plants (AABCC) were open-pollinated in isolated conditions, and their offspring were successively self-pollinated and intensively selected for two generations. Thereafter, a population of substantial new type B. napus mainly with a genomic composition of ArArCcCc harbouring genetic diversity from 25 original cultivars of B. rapa and 72 accessions of B. carinata was constructed. The population was cytologically verified to have the correct chromosome constitution of AACC and differed genetically from traditional B. napus, in terms of the genome components of Ar/Cc and Bc as well as the novel genetic variations induced by the interspecific hybridisation process. Synchronously, rich phenotypic variation with plenty of novel valuable traits was observed in the population. The origin of the novel variations and the value of the population are discussed.Digital Object Identifier http://dx.doi.org/10.1007/s00122-010-1378-6
机译:在以前的研究中,油菜的亚基因组间杂种优势已经通过使用传统的甘蓝型油菜(A n A n C n C n )跨越部分新类型 B。从 B基因组渗入A r / C c 的油菜。 rapa 和 B。 carinata 。为了进一步扩大B的遗传基础。甘蓝型油菜并为促进油菜籽中持续杂种优势的繁殖,至关重要的是为大量新型B型油菜创造种群。甘蓝型油菜在两个A / C基因组上均多样化。在该实验中,数百种人工六倍体植物(A r A r B c B c C c C c ),涉及数百个 B。 carinata / B。首先将rapa 组合与部分新类型 B的精英行交叉。甘蔗。将五倍体植物(AABCC)在分离的条件下进行开放授粉,其后代连续进行自花授粉,并进行了两代的强烈选择。此后,大量新的B型人口。甘蓝型油菜主要具有构成遗传多样性的A r A r C c C c 的基因组组成来自B的25个原始品种。 rapa 和 B的72个种。建造了carinata 。经过细胞学检查,该种群具有正确的AACC染色体构成,并且在遗传上不同于传统的B。 napus ,从A r / C c 和B c 的基因组组成以及新的遗传变异通过种间杂交过程。同时,在人群中观察到丰富的表型变异和许多新颖的有价值的性状。讨论了新颖变体的起源和种群的价值。数字对象标识符http://dx.doi.org/10.1007/s00122-010-1378-6

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