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首页> 外文期刊>Plant physiology >Genome-wide reprogramming of primary and secondary metabolism, protein synthesis, cellular growth processes, and the regulatory infrastructure of Arabidopsis in response to nitrogen
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Genome-wide reprogramming of primary and secondary metabolism, protein synthesis, cellular growth processes, and the regulatory infrastructure of Arabidopsis in response to nitrogen

机译:全基因组范围内的初级和次级代谢,蛋白质合成,细胞生长过程以及拟南芥对氮的调节基础设施的重编程

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摘要

Transcriptome analysis, using Affymetrix ATH1 arrays and a real-time reverse transcription-PCR platform for >1,400 transcription factors, was performed to identify processes affected by long-term nitrogen-deprivation or short-term nitrate nutrition in Arabidopsis. Two days of nitrogen deprivation led to coordinate repression of the majority of the genes assigned to photosynthesis, chlorophyll synthesis, plastid protein synthesis, induction of many genes for secondary metabolism, and reprogramming of mitochondrial electron transport. Nitrate readdition led to rapid, widespread, and coordinated changes. Multiple genes for the uptake and reduction of nitrate, the generation of reducing equivalents, and organic acid skeletons were induced within 30 min, before primary metabolites changed significantly. By 3 h, most genes assigned to amino acid and nucleotide biosynthesis and scavenging were induced, while most genes assigned to amino acid and nucleotide breakdown were repressed. There was coordinate induction of many genes assigned to RNA synthesis and processing and most of the genes assigned to amino acid activation and protein synthesis. Although amino acids involved in central metabolism increased, minor amino acids decreased, providing independent evidence for the activation of protein synthesis. Specific genes encoding expansin and tonoplast intrinsic proteins were induced, indicating activation of cell expansion and growth in response to nitrate nutrition. There were rapid responses in the expression of many genes potentially involved in regulation, including genes for trehalose metabolism and hormone metabolism, protein kinases and phosphatases, receptor kinases, and transcription factors.
机译:使用Affymetrix ATH1阵列和实时逆转录PCR平台对> 1,400个转录因子进行转录组分析,以鉴定拟南芥中受长期氮剥夺或短期硝酸盐营养影响的过程。缺氮两天导致协调抑制大多数与光合作用,叶绿素合成,质体蛋白合成有关的基因,诱导许多次生代谢基因以及对线粒体电子运输进行重新编程。硝酸盐沉淀导致快速,广泛和协调的变化。在主要代谢物发生显着变化之前的30分钟内,诱导了多个基因吸收和还原硝酸盐,还原当量和有机酸骨架。到3小时,诱导了大多数分配给氨基酸和核苷酸生物合成和清除的基因,而抑制了大多数分配给氨基酸和核苷酸分解的基因。对分配给RNA合成和加工的许多基因以及大多数分配给氨基酸激活和蛋白质合成的基因进行了协调诱导。尽管参与中枢代谢的氨基酸增加,但次要氨基酸减少,为激活蛋白质合成提供了独立的证据。诱导编码扩展蛋白和液泡膜内在蛋白的特定基因,表明响应硝酸盐营养激活细胞膨胀和生长。在许多潜在参与调节的基因的表达中有快速反应,包括海藻糖代谢和激素代谢的基因,蛋白激酶和磷酸酶,受体激酶和转录因子。

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