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Nitrogen Nutrition, Its Regulation and Biotechnological Approaches to Improve Crop Productivity 被引量:1
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作者 Mettu Madhavi Reddy Kandasamy Ulaganathan 《American Journal of Plant Sciences》 2015年第18期2745-2798,共54页
Nitrogen is the most important macronutrient needed for plant growth and development. The availability of nitrogen in the soil fluctuates greatly in both time and space. Crop plants, except leguminous plants, depend o... Nitrogen is the most important macronutrient needed for plant growth and development. The availability of nitrogen in the soil fluctuates greatly in both time and space. Crop plants, except leguminous plants, depend on supply of nitrogen as fertilizers. Large quantities of nitrogen fertilizers are applied to crop plants, but only 33% of it is utilized by the plant. Plants have developed efficient mechanisms to sense the varying levels of nitrogen forms and uptake them. They also have well developed mechanisms to assimilate the incoming nitrogen immediately or translocate to different parts of the plant wherever it is needed. Maintenance of nitrogen homeostasis is essential to avoid toxicity. Apart from translocation and assimilation, plants have developed different mechanisms, nitrogen efflux;vacuolar nitrogen storage and downward transport of nitrogen from aerial parts to roots, for maintaining nitrogen homeostasis. In crop plants the “grain yield per unit of available nitrogen in the soil” is referred as the nitrogen use efficiency (NUE) for which remobilization of nitrogen, mediated by various transporters plays a crucial role. All these processes are tightly regulated by proteins and microRNA in response to both external and internal nitrogen levels, carbon status of the plant and hormones. As most crop plants are non-leguminous and depend on soil nitrogen, more production could be achieved if crop plants can be made to utilize the available nitrogen efficiently. The recent explosion of research information and the mechanisms behind nitrogen sensing, signaling, transport and utilization enables biotechnological interventions for better nitrogen nutrition of crop plants. This review discusses such possibilities in the context of recent understanding of nitrogen nutrition and the genomic revolution sweeping the crop science. 展开更多
关键词 NITROGEN NITROGEN Use Efficiency GENOMICS GENETIC Engineering RNA-SEQ nitrome microRNA
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稀土改性硅钨酸在催化硝化间二甲苯的选择性研究
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作者 杨青 陶秦洋 +2 位作者 陈雪 李帅 石春杰 《山东化工》 CAS 2020年第10期4-6,共3页
研究不同稀土离子改性的拟薄水铝石负载硅钨酸催化剂在催化硝化间二甲苯的选择性。通过X射线衍射(XRD),傅里叶红外(FT-IR)气相色谱(GC)等对所制备的催化剂及其催化硝化产物进行分析,结果表明:在温度50℃,反应时间时间4h、物质的量比n(... 研究不同稀土离子改性的拟薄水铝石负载硅钨酸催化剂在催化硝化间二甲苯的选择性。通过X射线衍射(XRD),傅里叶红外(FT-IR)气相色谱(GC)等对所制备的催化剂及其催化硝化产物进行分析,结果表明:在温度50℃,反应时间时间4h、物质的量比n(间二甲苯)∶n(硝酸铁)=1∶0.5时4-硝基间二甲苯产量达84.47%,选择性最强,4-硝基间二甲苯与2-硝基间二甲苯比例达5.70。 展开更多
关键词 间二甲苯 4-硝基间二甲苯 2-硝基间二甲苯 选择性 硝化
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Nitromed公司受到Vioxx撤市影响
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作者 孙艳萍 《国外药讯》 2005年第2期42-42,共1页
Nitromed和Merck & Co公司联合开发提高氧化氮浓度的COX-2抑制剂成为首个受到Merck公司在全球范围内撤消Vioxx(rolecoxib)(Ⅰ)影响的药物。这两家公司宣布,他们停止了这个系列中主要候选药的Ⅱ期临床试验,该候选药是(Ⅰ)的衍生物... Nitromed和Merck & Co公司联合开发提高氧化氮浓度的COX-2抑制剂成为首个受到Merck公司在全球范围内撤消Vioxx(rolecoxib)(Ⅰ)影响的药物。这两家公司宣布,他们停止了这个系列中主要候选药的Ⅱ期临床试验,该候选药是(Ⅰ)的衍生物。当天,(Ⅰ)在一项新的临床试验证实了其在心血管方面的危险后撤市。 展开更多
关键词 nitromed公司 VIOXX 撤市 临床试验 COX-2抑制剂
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NitroMed公司的BiDil达到Ⅲ期临床目标
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作者 王吉云 《国外药讯》 2004年第10期9-9,共1页
关键词 nitromed公司 硝酸异山梨酯和肼屈嗪 BiDil 心衰
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