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Differences in the Genetic Structure of Citrus Triploid Hybrids Recovered from 2x x 2x and 4x x 2x Sexual Hybridizations

机译:从2x x 2x和4x x 2x有性杂交中发现的柑橘三倍体杂种的遗传结构差异

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摘要

Citrus triploid hybrids can be recovered by 2x x 2x hybridisations as a consequence of the formation of In gametes or by interploid hybridisation. Most of the tetraploid parents used are doubled-diploid (DD). The genetic structure of diploid gametes and particularly the rate of parental heterozygosity restitution (PHR) depend on the meiotic process by which they were originated. Second-division restitution (SDR) is the In gamete formation mechanism involved in 'Fortune' and Clementines. With SDR, PHRis positively linked with the distance of each locus to the centromere. With DD parents, PHR depends of the rate of preferential pairing and thus the proportion of disomic versus tetrasomic segregations. We have compared the genetic structure of two populations of diploid gametes of Clementine (one population of In gametes and one of Ix gametes produced by DD) with SNPs and SSRs markers covering the 9 citrus chromosomes. The DD displays mostly tetrasomic segregation; however three linkage groups present intermediate segregation and one display a tendency for disomy. The PHR in In gametes is 2/3 of the one obtained in 2x gametes produced by DD. The two methods of triploid production appear complementary in terms of genotypic variability. 4x x 2x hybridizations are more efficient than 2x x 2x for developing new cultivars phenotypically closer to the diploid parent of the DD. Conversely, 2x * 2x hybridisations provides the opportunity to select more innovative products.
机译:由于形成配子或通过倍体间杂交,可以通过2x x 2x杂交回收柑橘三倍体杂种。使用的大多数四倍体亲本是双倍二倍体(DD)。二倍体配子的遗传结构,尤其是父母杂合子恢复的速率取决于它们起源的减数分裂过程。第二分区归还(SDR)是涉及“财富”和克莱门汀的配子形成机制。使用SDR,PHR与每个基因座到着丝粒的距离呈正相关。对于DD父母,PHR取决于优先配对的比率,因此取决于二体组与四体组分离的比例。我们已经比较了两个柑桔二倍体配子的群体(一个群体的In配子和一个DD产生的1x配子)的遗传结构与覆盖9个柑橘染色体的SNP和SSRs标记。 DD主要显示四体偏析。但是,三个连接基团存在中间隔离,一个连接基团显示二体化趋势。 In配子中的PHR是DD生产的2x配子中获得的PHR的2/3。就基因型变异性而言,两种三倍体生产方法似乎是互补的。 4x x 2x杂交比2x x 2x杂交更有效地开发在表型上更接近DD二倍体亲本的新品种。相反,2x * 2x杂交提供了选择更多创新产品的机会。

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