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首页> 外文期刊>Plant Cell Reports >Extensive citrus triploid hybrid production by 2x × 4x sexual hybridizations and parent-effect on the length of the juvenile phase
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Extensive citrus triploid hybrid production by 2x × 4x sexual hybridizations and parent-effect on the length of the juvenile phase

机译:通过2x×4x有性杂交产生大量的柑橘三倍体杂种,并产生对幼年期长度的亲本效应

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The citrus fresh market demands the production of seedless citrus fruits, as seedy fruits are not accepted by consumers. The recovery of triploid plants has proven to be the most promising approach to achieve this goal, since triploids have very low fertility, are generally seedless and do not induce seeds in other cultivars by cross pollination. Triploid plants can be recovered by 2x × 4x sexual hybridization. In this work, we present an effective methodology to recover triploid plants from 2x × 4x hybridizations based on in vitro embryo rescue, ploidy level analysis by flow cytometry and genetic origin of triploid plants. The pollen viability of diploid and tetraploid citrus genotypes was analyzed by comparing the pollen germination rate in vitro. The pollen viability of tetraploid (doubled-diploid) genotypes is generally reduced but sufficient for successful pollination. Triploid embryos were identified in normal and undeveloped seeds that did not germinate under greenhouse conditions. The influence of parents and environmental conditions on obtaining triploid plants was analyzed and a strong interaction was noted between the parents and environmental conditions. The parental effect on the length of the juvenile phase was also demonstrated through observations of a large number of progeny over the last 15 years. The juvenile phase length of the triploid hybrids obtained with ‘Fortune’ mandarin as female parent and tetraploid ‘Orlando’ tangelo as male parent was shorter than the juvenile phase obtained with a clementine as female parent and tetraploids of ‘Nova’, ‘W. Leaf’ and ‘Pineapple’ male parents.
机译:柑橘类新鲜市场要求生产无核柑橘类水果,因为消费者不接受有核水果。三倍体植物的恢复已被证明是实现这一目标的最有前途的方法,因为三倍体的繁殖力非常低,通常没有种子,并且不会通过异花授粉诱导其他品种的种子。三倍体植物可以通过2x×4x有性杂交来恢复。在这项工作中,我们提出了一种有效的方法,该方法可基于体外胚胎抢救,通过流式细胞仪进行的倍性水平分析和三倍体植物的遗传起源,从2x×4x杂交中回收三倍体植物。通过比较花粉的萌发率,分析了二倍体和四倍体柑橘基因型的花粉生存力。四倍体(双倍二倍体)基因型的花粉生存力通常会降低,但足以成功授粉。在正常和未发育的种子中鉴定出三倍体胚胎,这些种子在温室条件下不会发芽。分析了父母和环境条件对获得三倍体植物的影响,并指出了父母与环境条件之间的强相互作用。在过去15年中,通过观察大量后代,也证明了父母对少年期长度的影响。以“ Fortune”普通话为母本和四倍体“ Orlando” tangelo作为公本的三倍体杂种的幼年期长度短于以柑桔为母本和“ Nova”,“ W”的四倍体的幼年期。叶”和“菠萝”的男性父母。

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