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Contributions of classical and molecular cytogenetic in meiotic analysis and pollen viability for plant breeding

机译:植物育种植物分析及花粉活力典型和分子细胞遗传学的贡献

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The analysis of meiotic behavior has been widely used in the study of plants as they provide relevant information about the viability of a species. Meiosis boasts a host of highly conserved events and changes in genes that control these events will give rise to irregularities that can alter the normal course of meiosis and may lead to complete sterility of the plant. The recombination of genes that occur in meiosis is an important event to generate variability and has been important in studies for genetic improvement and to create viable hybrids. The use of fluorescence in situ hybridization and genomic in situ hybridization (GISH) in meiosis allows the localization of specific regions, enables to differentiate genomes in a hybrid, permits to observe the pairing of homoeologous chromosomes, and if there was a recombination between the genomes of progenitor species. Furthermore, the GISH allows us to observe the close relationship between the species involved. This article aims to report over meiosis studies on plants and hybrids, the use and importance of molecular cytogenetic in meiotic analysis and contributions of meiotic analysis in breeding programs. Full-Text PDF
机译:对油削性行为的分析已广泛用于植物的研究,因为它们提供了有关物种可行性的相关信息。 MeIosis拥有一系列高度保守的事件和控制这些事件的基因的变化将产生可能改变模棱两可病程的不规则性,并且可能导致植物完全无菌。在减数分裂中发生的基因的重组是产生可变性的重要事件,并且在遗传改善的研究中具有重要的重要事件,并在遗传改善和创造活杂种中很重要。使用荧光原位杂交和基因组的原位杂交(GISH)在减数分裂中允许特定区域的定位,使得能够区分混合物中的基因组,允许观察同源染色体的配对,以及基因组之间存在重组祖种类。此外,GISH允许我们观察所涉及的物种之间的密切关系。本文旨在报告对植物和杂交种,分子细胞遗传学在育种方案中减数分裂分析的使用和重要性的分数突,使用和重要性。全文PDF

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