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首页> 外文期刊>Tree Physiology >Functional repression of PtSND2 represses growth and development by disturbing auxin biosynthesis, transport and signaling in transgenic poplar
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Functional repression of PtSND2 represses growth and development by disturbing auxin biosynthesis, transport and signaling in transgenic poplar

机译:PtSND2的功能抑制通过干扰转基因杨树中的生长素生物合成,转运和信号传导来抑制生长和发育。

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Using chimeric repressor silencing technology, we previously reported that functional repression of PtSND2 severely arrested wood formation in transgenic poplar (Populus). Here, we provide further evidence that auxin biosynthesis, transport and signaling were disturbed in these transgenic plants, leading to pleiotropic defects in their growth patterns, including inhibited leaf enlargement and vascular tissue development in the leaf central vein, suppressed cambial growth and fiber elongation in the stem, and arrested growth in the root system. Two transgenic lines, which displayed the most remarkable phenotypic deviation from the wild-type, were selected for detailed studies. In both transgenic lines, expression of genes for auxin biosynthesis, transport and signaling was down-regulated, and indole-3-acetic acid distribution was severely disturbed in the apical buds, leaves, stems and roots of field-grown transgenic plants. Transient transcription dual-luciferase assays of ProPtTYDC2::LUC, ProPttLAX2::LUC and ProPoptrIAA20.2::LUC in poplar protoplasts revealed that expression of auxin-related genes might be regulated by PtSND2 at the transcriptional level. All these results indicate that functional repression of PtSND2 altered auxin biosynthesis, transport and signaling, and thereby disturbed the normal growth and development of transgenic plants.
机译:使用嵌合阻遏物沉默技术,我们先前曾报道PtSND2的功能抑制严重阻止了转基因杨树(杨)中的木材形成。在这里,我们提供了进一步的证据,证明这些转基因植物中的生长素生物合成,运输和信号传导受到干扰,导致其生长方式的多效性缺陷,包括抑制了叶的扩张和叶中央静脉中血管组织的发育,抑制了冈比亚的冈比亚生长和纤维伸长。茎,阻止根系生长。选择了两个显示出与野生型最显着的表型差异的转基因品系用于详细研究。在这两个转基因品系中,生长素转基因植物的生长素生物合成,运输和信号转导的基因表达均被下调,吲哚-3-乙酸的分布受到严重干扰。杨树原生质体中ProPtTYDC2 :: LUC,ProPttLAX2 :: LUC和ProPoptrIAA20.2 :: LUC的瞬时转录双荧光素酶测定显示,在转录水平上生长素相关基因的表达可能受PtSND2调控。所有这些结果表明,PtSND2的功能抑制改变了植物生长素的生物合成,转运和信号传导,从而干扰了转基因植物的正常生长发育。

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