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首页> 外文期刊>Plant Biotechnology Journal >Transient Nod factor?¢????dependent gene expression in the nodulation?¢????competent zone of soybean ( Glycine max [L.] Merr.) roots
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Transient Nod factor?¢????dependent gene expression in the nodulation?¢????competent zone of soybean ( Glycine max [L.] Merr.) roots

机译:大豆根系结实适应区中的瞬时Nod因子依赖性基因表达(Glycine max [L.] Merr。)

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All lateral organ development in plants, such as nodulation in legumes, requires the temporal and spatial regulation of genes and gene networks. A total mRNA profiling approach using RNA?¢????seq to target the specific soybean ( Glycine max ) root tissues responding to compatible rhizobia [i.e. the Zone Of Nodulation (ZON)] revealed a large number of novel, often transient, mRNA changes occurring during the early stages of nodulation. Focusing on the ZON enabled us to discard the majority of root tissues and their developmentally diverse gene transcripts, thereby highlighting the lowly and transiently expressed nodulation?¢????specific genes. It also enabled us to concentrate on a precise moment in early nodule development at each sampling time. We focused on discovering genes regulated specifically by the Bradyrhizobium ?¢????produced Nod factor signal, by inoculating roots with either a competent wild?¢????type or incompetent mutant ( nodC ?¢???? ) strain of Bradyrhizobium japonicum . Collectively, 2915 genes were identified as being differentially expressed, including many known soybean nodulation genes. A number of unknown nodulation gene candidates and soybean orthologues of nodulation genes previously reported in other legume species were also identified. The differential expression of several candidates was confirmed and further characterized via inoculation time?¢????course studies and qRT?¢????PCR. The expression of many genes, including an endo?¢????1,4?¢???????2?¢????glucanase , a cytochrome P450 and a TIR?¢????LRR?¢????NBS receptor kinase , was transient, peaking quickly during the initiation of nodule ontogeny. Additional genes were found to be down?¢????regulated. Significantly, a set of differentially regulated genes acting in the gibberellic acid (GA) biosynthesis pathway was discovered, suggesting a novel role of GAs in nodulation.
机译:植物的所有侧向器官发育,例如豆类植物的结节,都需要基因和基因网络的时间和空间调节。使用RNA序列的总mRNA谱图分析方法可靶向对兼容的根瘤菌有反应的特定大豆(Glycine max)根组织。 [结节区(ZON)]揭示了结瘤早期阶段发生的大量新颖的,通常是瞬时的mRNA变化。专注于ZON使我们能够丢弃大部分根组织及其发育多样的基因转录物,从而突出了低而短暂表达的结节特异基因。这也使我们能够在每个采样时间专注于结核早期发育的精确时刻。我们着眼于通过用根癌的野生野生型或不适合的突变株(nodC突变型)菌株接种根部,来发现由根瘤菌产生的Nod因子信号特异性调控的基因。日本根瘤菌。总共鉴定出2915个基因差异表达,包括许多已知的大豆结瘤基因。还鉴定了许多先前在其他豆类物种中报道的未知结瘤基因候选物和大豆结瘤基因的直向同源物。证实了几种候选物的差异表达,并通过接种时间,路线研究和qRTΔPCR法进一步表征。许多基因的表达,包括内切葡聚糖酶1、4、4、2、5、7、8、6、8、8、11、12、11、11、12、11、12、11、11、12、11、11、12、11、12、11、11、12、11、11、12、11、11、12、11、12、11、11、6、7、5、6、7、6、7、8、6、7、6、7、7、7、6、7、7、6、7、7、6、7、6、7、6、7、7、6、5、6、7、6、5、6、7、5、6、5、6、7。 NBS受体激酶是瞬时的,在结节本体形成的起始过程中迅速达到峰值。发现其他基因被下调。重要的是,发现了一组在赤霉素(GA)生物合成途径中起作用的差异调节基因,表明GA在结瘤中具有新作用。

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