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首页> 外文期刊>Plant Molecular Biology >Divergent functions of orthologous NAC transcription factors in wheat and rice
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Divergent functions of orthologous NAC transcription factors in wheat and rice

机译:直系同源NAC转录因子在小麦和水稻中的功能差异

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The wheat GPC-B1 gene located on chromosome 6B is an early regulator of senescence and affects remobilization of protein and minerals to the grain. GPC-B1 is a NAC transcription factor and has a paralogous copy on chromosome 2B in wheat, GPC-B2. The closest rice homolog to both wheat GPC genes is Os07g37920 which is located on rice chromosome 7 and is colinear with GPC-B2. Since rice is a diploid species with a sequenced genome, we initiated the study of Os07g37920 to develop a simpler model to study senescence and mineral remobilization in cereals. We developed eleven independent RNA interference transgenic rice lines (Os07g37920-RNAi) and 10 over-expressing transgenic lines (Os07g37920-OE), but none of them showed differences in senescence. Transgenic Os07g37920-RNAi rice plants had reduced proportions of viable pollen grains and were male-sterile, but were able to produce seeds by cross pollination. Analysis of the flower morphology of the transgenic rice plants showed that anthers failed to dehisce. Transgenic Os07g37920-OE lines showed no sterility or anther dehiscence problems. Os07g37920 transcript levels were higher in stamens compared to leaves and significantly reduced in the transgenic Os07g37920-RNAi plants. Wheat GPC genes showed the opposite transcription profile (higher transcript levels in leaves than in flowers) and plants carrying knock-out mutations of all GPC-1 and GPC-2 genes exhibited delayed senescence but normal anther dehiscence and fertility. These results indicate a functional divergence of the homologous wheat and rice NAC genes and suggest the need for separate studies of the function and targets of these transcription factors in wheat and rice.
机译:位于6B号染色体上的小麦GPC-B1基因是衰老的早期调节剂,影响蛋白质和矿物质向谷粒的迁移。 GPC-B1是NAC转录因子,在小麦的2B号染色体上具有旁系同源拷贝GPC-B2。与两个小麦GPC基因最接近的水稻同源物是Os07g37920,其位于水稻第7号染色体上,与GPC-B2共线。由于水稻是具有序列化基因组的二倍体物种,我们启动了Os07g37920的研究,以开发一个更简单的模型来研究谷物的衰老和矿物质迁移。我们开发了11个独立的RNA干扰转基因水稻品系(Os07g37920-RNAi)和10个过表达的转基因水稻品系(Os07g37920-OE),但它们均未显示衰老差异。转基因Os07g37920-RNAi水稻植物的花粉粒比例降低,并且不育,但能够通过异花授粉产生种子。对转基因水稻植株的花的形态分析表明,花药开裂失败。转基因Os07g37920-OE品系没有显示无菌性或花药裂开问题。与叶片相比,雄蕊中的Os07g37920转录水平更高,而在转基因Os07g37920-RNAi植物中则显着降低。小麦的GPC基因显示出相反的转录特征(叶中的转录水平高于花中的转录水平),携带所有GPC-1和GPC-2基因敲除突变的植物显示出延迟的衰老,但花药开裂和肥力正常。这些结果表明同源小麦和水稻NAC基因的功能差异,并建议需要分别研究小麦和水稻中这些转录因子的功能和靶标。

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