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Intragenic recombination between two non-functional semi-dwarf 1 alleles produced a functional SD1 allele in a tall recombinant inbred line in rice

机译:两个非功能性半矮1等位基因之间的基因内重组在水稻的一个高重组近交系中产生了功能性SD1等位基因

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摘要

Intragenic recombination is one of the most important sources of genetic variability. In our previous study, RI92 a tall line (160 cm of plant height) was observed in the cross progeny between two semi-dwarf indica cultivars Zhenshan 97 and Minghui 63. Genome-wide genotyping and sequencing indicated that the genome constitution of RI92 was completely from both parents. Bulk segregant analysis in a BC3F2 population revealed that “green revolution gene” semi-dwarf 1 (sd1) was most likely the gene controlling the tall plant height in RI92. Sequencing analysis of SD1 revealed that an intragenic recombination occurred between two parental non-functional sd1 alleles and generated a functional SD1 in RI92. Four-fold high recombination rate in SD1 located bins to the genome-wide average was observed in two RIL populations, indicating recombination hotspot in the SD1 region. Intragenic recombination creates new alleles in the progeny distinct from parental alleles and diversifies natural variation.
机译:基因内重组是遗传变异性的最重要来源之一。在我们之前的研究中,RI92在两个半矮in稻品种珍山97和明慧63的杂交后代中观察到一条高线(株高160 cm)。全基因组的基因分型和测序表明RI92的基因组组成完全来自父母双方。在BC3F2群体中进行的大量分离物分析表明,“绿色革命基因”半矮人1(sd1)最有可能控制RI92中高株高的基因。 SD1的测序分析表明,两个亲本非功能性sd1等位基因之间发生了基因内重组,并在RI92中产生了功能性SD1。在两个RIL群体中观察到SD1定位的垃圾箱中的重组率高至全基因组平均水平的四倍,表明SD1区域的重组热点。基因内重组在后代中产生不同于亲本等位基因的新等位基因,并使自然变异多样化。

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