麝香2n花粉形成的细胞学研究

M. Adeleke, M. Pillay, B. Okoli
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引用次数: 1

摘要

目前的穆萨育种策略复杂且耗时,涉及从3x - 2x杂交中选择四倍体。然后将这些四倍体与二倍体杂交得到次生三倍体。考虑到杂交种子的结实率很低,杂交种子的常规胚胎抢救程序和香蕉的生长周期长,大约需要10 - 12年才能产生一个可接受的香蕉杂交种。如果能通过单侧性多倍体过程直接从2x - 2x杂交获得三倍体香蕉,对香蕉育种过程有极大的好处。关于Musa种产生2n花粉的机制鲜有报道。本研究利用细胞学分析方法研究了二倍体、三倍体和四倍体穆萨材料中导致2n花粉形成的减数分裂不规则性类型。结果表明,小孢子发生过程中细胞质分裂和核分裂的异常可能是二氮花粉形成的机制。本研究描述的减数分裂畸变对穆萨育种具有指导意义。在木属植物中,2n花粉的形成是通过一段恢复(FDR)和二段恢复(SDR)两种方式进行的。据说FDR更有希望将更多的杂合性从父母转移到后代。
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Cytological Study of 2n Pollen Formation in Musa
Current Musa breeding strategies are complex and time consuming involving the selection of tetraploids from 3x - 2x crosses. Secondary triploids are then obtained by crossing these tetraploids with diploids. Considering the very low hybrid seed set, routine embryo rescue procedures of hybrid seeds and the long growth cycle of banana, it takes approximately 10 - 12 years to produce an acceptable banana hybrid. The banana breeding process could benefit tremendously if triploid bananas could be obtained directly from 2x - 2x crosses through the process of unilateral sexual polyploidization. There are few reports on the mechanisms through which Musa species produce 2n pollen. This study investigated the type of meiotic irregularities that lead to 2n pollen formation in diploid, triploid and tetraploid Musa accessions using cytological analyses. The results showed that aberrations in cytokinesis and karyokinesis during microsporogenesis are possible mechanisms for 2n pollen formation in Musa. The meiotic aberrations described in this study have implications for Musa breeding. It appears that 2n pollen formation in Musa occurs via both first division restitution (FDR) and second division restitution (SDR). FDR is said to be more promising in transferring more heterozygosity from parents to offspring.
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