Chromosome instability of allopolyploid resynthesized Brassica napus

N. Ohmido, Kana Ueda, K. Fujii
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引用次数: 3

Abstract

Allopolyploid resynthesized Brassica napus (AACC, 2n = 38) was produced by cross-hybridization between B. rapa (AA, 2n = 20) and B. oleracea (CC, 2n = 18) for new vegetative crop breeding. Many studies have provided evidences for the phenotype instability and close relationship between A and C genome in the amphidiploid resynthesized B. napus cultivars. In fact, a new B. napus varieties, Hanakkori showed atypical morphological characters and generated many off-type progeny plants. In this study, we investigated the pollen fertility, chromosome number, structure, and behavior linked to defi ne the factors, which produce the unstable phenotypic expressions in the Hanakkori progenies. We define the chromosome number and chromosome organization using fl uorescence in situ hybridization analysis on somatic mitosis and meiosis cells. Off-type plants with lower pollen fertility show the instability of chromosome number and structures with small chromosome fragments. Observation of chromosomes behaviors at meiosis showed that the meiotic division in off-type plants led to appreciably higher abnormalities than in on-type plants. These results demonstrated that minimized abnormal chromosome structure and formation might be essential to stabilize the normal progenies in the B. napus plant breed-
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异源多倍体再合成甘蓝型油菜的染色体不稳定性
利用rapa (AA, 2n = 20)与甘蓝(CC, 2n = 18)杂交获得异源多倍体重组甘蓝型油菜(AACC, 2n = 38),用于培育新的营养作物。许多研究都证明了雌雄二倍体再合成甘蓝型品种的表型不稳定性和A基因组与C基因组的密切关系。事实上,甘蓝型油菜新品种Hanakkori表现出非典型的形态特征,并产生了许多异型后代植株。本研究从花粉的育性、染色体数目、结构和行为等方面探讨了影响花楸后代不稳定表型表达的因素。我们用荧光原位杂交分析确定体细胞有丝分裂和减数分裂细胞的染色体数目和染色体组织。花粉育性较低的off型植物表现出染色体数目和结构的不稳定性,染色体片段较小。对染色体减数分裂行为的观察表明,离型植物的减数分裂导致的染色体异常明显高于同型植物。这些结果表明,尽量减少异常染色体的结构和形成可能是稳定甘蓝型油菜正常后代的关键
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