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Carbon and nitrogen nutrient balance signaling in plants

机译:植物碳氮营养平衡信号

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Cellular carbon (C) and nitrogen (N) metabolism must be tightly coordinated to sustain optimal growth and development for plants and other cellular organisms. Furthermore, C/N balance is also critical for the ecosystem response to elevated atmosphericCO_2. Despite numerous physiological and molecular studies in C/N balance or ratio response, very few genes have been shown to play important roles in C/N balance signaling. During recent five years, exciting progress was made through genetic and genomic studies. Several DNA microarray studies have shown that more than half of the transcriptome is regulated by C, N and the C-N combination. Three genetic studies involving distinct bioassays have demonstrated that a putative nitrate transporter (NTR2.1),a putative glutamate receptor (GLR1.1) and a putative methyltransferase (OSU1) have important functions in the C/N balance response. OSU1 is identical to QUA2/TSD2 which has been implicated to act in cell wall biogenesis, indicating a link between cellwall property and the C/N balance signaling. Given that many investigations are only focused on C alone or N alone, the C/N balance bioassays and gene expression patterns are discussed to assist phenotypic characterization of C/N balance signaling. Further, re-examination of those previously reported sugar or nitrogen responsive genes in C/N balance response may be necessary to dissect the C/N signaling pathways. In addition, key components involved in C-N interactions in bacterial, yeast and animal systems and whether they are functionally conserved in plants are discussed. These rapid advances have provided the first important step towards the construction of the complex yet elegant C/N balance signaling networks in plants.
机译:必须紧密协调细胞碳(C)和氮(N)的代谢,以维持植物和其他细胞生物的最佳生长发育。此外,C / N平衡对于生态系统对大气CO_2升高的响应也至关重要。尽管在C / N平衡或比率响应中进行了许多生理和分子研究,但很少有基因在C / N平衡信号传导中起重要作用。在最近五年中,通过基因和基因组研究取得了令人兴奋的进展。几项DNA微阵列研究表明,转录组的一半以上受C,N和C-N组合的调控。涉及不同生物测定的三项遗传研究表明,假定的硝酸盐转运蛋白(NTR2.1),假定的谷氨酸受体(GLR1.1)和假定的甲基转移酶(OSU1)在C / N平衡响应中具有重要功能。 OSU1与QUA2 / TSD2相同,后者被暗示在细胞壁生物发生中起作用,表明细胞壁特性与C / N平衡信号传导之间存在联系。鉴于许多研究仅针对单独的C或单独的N,因此讨论了C / N平衡生物测定和基因表达模式,以协助C / N平衡信号传导的表型表征。此外,可能有必要对C / N平衡反应中先前报道的糖或氮反应性基因进行重新检查,以剖析C / N信号通路。此外,还讨论了细菌,酵母和动物系统中涉及C-N相互作用的关键成分,以及它们是否在植物中功能保守。这些迅速的进步为建设植物中复杂而优雅的C / N平衡信号网络提供了重要的第一步。

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