首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Wild peas vary in their cross-compatibility with cultivated pea (Pisum sativum subsp. sativum L.) depending on alleles of a nuclear-cytoplasmic incompatibility locus.
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Wild peas vary in their cross-compatibility with cultivated pea (Pisum sativum subsp. sativum L.) depending on alleles of a nuclear-cytoplasmic incompatibility locus.

机译:野生豌豆与栽培豌豆(Pisum sativum subsp。sativum L.)的交叉兼容性各不相同,具体取决于核质质不兼容位点的等位基因。

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Background: In hybrids between cultivated and wild peas, nuclear-cytoplasmic conflict frequently occurs. One of the nuclear genes involved, Scs1, was earlier mapped on Linkage Group III. Results: In reciprocal crosses of seven divergent pea accessions with cultivated P. sativum, some alleles of Scs1 manifested incompatibility with an alien cytoplasm as a decrease in pollen fertility to about 50% in the heterozygotes and lack of some genotypic classes among F2 segregants. Earlier, we defined monophyletic evolutionary lineages A, B, C and D of pea according to allelic state of three markers, from nuclear, plastid and mitochondrial genomes. All tested representatives of wild peas from the lineages A and C exhibited incompatibility due to Scs1 deleterious effects in crosses with testerlines of P. sativum subsp. sativum (the common cultivated pea) at least in one direction. A wild pea from the lineage B and a cultivated pea from the lineage D were compatible with the testerline in both directions. The tested accession of cultivated P. abyssinicum (lineage A) was partially compatible in both directions. The Scs1 alleles of some pea accessions even originating from the same geographic area were remarkably different in their compatibility with cultivated Pisum sativum cytoplasm. Conclusion: Variability of a gene involved in reproductive isolation is of important evolutionary role and nominate Scs1 as a speciation gene.
机译:背景:在栽培豌豆和野生豌豆的杂种中,经常发生核质冲突。涉及的核基因之一,Scs1,较早地定位在Linkage Group III上。结果:在七个不同豌豆种质与栽培的P. sativum的互作中,Scs1的一些等位基因表现出与外来细胞质不相容,这是由于杂合子中的花粉育性降低至约50%,并且在F2分离子中缺乏某些基因型。之前,我们根据来自核,质体和线粒体基因组的三个标记的等位基因状态定义了豌豆的单亲进化谱系A,B,C和D。从A和C谱系的所有野生豌豆的受测代表均表现出不相容性,这是由于在与P. sativum亚种的种系杂交后,Scs1有害。 Sativum(普通栽培豌豆)至少在一个方向上。来自谱系B的野生豌豆和来自谱系D的栽培豌豆在两个方向上都与测试线兼容。栽培的P. asssinicum(品系A)的受试品在两个方向上均部分相容。甚至来自同一地理区域的一些豌豆种的Scs1等位基因与栽培豌豆的胞质相容性也明显不同。结论:参与生殖分离的基因的变异具有重要的进化作用,并提名Scs1为物种形成基因。

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