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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Gene Block Causing Cross-Incompatibility Hidden in Wild and Cultivated Rice
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A Gene Block Causing Cross-Incompatibility Hidden in Wild and Cultivated Rice

机译:一种基因块,导致野生和栽培稻中隐藏的交叉不相容性

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Unidirectional cross-incompatibility was detected in advanced generations of backcrossing between wild ( Oryza rufipogon ) and cultivated ( O. sativa ) rice strains. The near-isogenic line (NIL) of T65 wx (Japonica type) carrying an alien segment of chromosome 6 from a wild strain gave a reduced seed setting only when crossed with T65 wx as the male. Cytological observations showed that abortion of hybrid seeds occurred as a consequence of a failure of early endosperm development followed by abnormalities in embryo development. The genetic basis of cross-incompatibility reactions in the female and male was investigated by testcrosses using recombinant inbred lines (RILs) that were established through dissecting the introgressed segments of wild and cultivated (Indica type) strains. The results revealed that the crossin-compatibility reaction was controlled by Cif in the female and by cim in the male. When the female plant with Cif was crossed with the male plant with cim , a failure of early endosperm development was observed in the hybrid zygotes. Among cultivars of O. sativa, cim was distributed predominantly in the Japonica type but not in the Indica type. In addition, a dominant suppressor, Su-Cif , which changes the reaction in the female from incompatible to compatible was proposed to present near the centromere of chromosome 6 of the Indica type. Further, the death of young F1 zygotes was controlled by the parental genotypes rather than by the genotype of the hybrid zygote itself since all three genes acted sporophytically, which strongly suggests an involvement of parent-of-origin effects. We discuss the results in relation to the origin of a crossing barrier as well as their maintenance within the primary gene pool.
机译:在野生(Oryza Rufipogon)和培养(O. sativa)水稻菌株之间的高度代读的前几代人的前一代中检测到单向交叉不相容性。携带来自野生菌株的染色体6的染色体6的外星物片段的T65 Wx(粳型)的近代型线(japonica型)仅当与雄性的T65 Wx交叉时,只有降低的种子设定。细胞学观察结果表明,杂交种子的流产由于早期胚乳发育的失败而发生,然后发生胚胎发育异常。使用重组近亲(RIL)研究了雌性和雄性的肾功能亢进反应的遗传基础,所述重组近亲(rils)通过疏忽遍布野生和栽培(籼型)菌株的狭窄段来确定。结果表明,通过CIF在雌性和雄性中的CIM控制横虫相容反应。当具有CIF的雌性植物与CIM的雄性植物交叉时,在杂交Zygotes中观察到早期胚乳发育的失败。在O. Sativa的品种中,CIM主要在粳稻类型中分布,但不在籼稻类型中分布。此外,提出了一种在籼型染色体6的染色体6附近呈现不相容的雌性与相容性不相容的雌性反应的显性抑制剂SU-CIF。此外,年轻F1 Zygotes的死亡是由父母基因型控制的,而不是通过杂交毒剂本身的基因型来控制,因为所有三种基因都疗程作用,这强烈地表明父母起源效果的累积。我们讨论了与交叉屏障的起源以及主要基因库中的维持相关的结果。

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