Phosphotidylinositol (PI) can be hydrolyzed into inositol 1,4,5_ trisphosphate/diacylglycerol (IP 3/DAG), the second signalling messengers which can be further phosphorylated by phospholipases to other signalling mole...Phosphotidylinositol (PI) can be hydrolyzed into inositol 1,4,5_ trisphosphate/diacylglycerol (IP 3/DAG), the second signalling messengers which can be further phosphorylated by phospholipases to other signalling molecules, and phosphatidic acid (PA) and lysophosphoglyceride (lysoPI) involved in many signalling cascades. It has been shown that PI signalling pathway and the involved enzymes are critical for plant development and response to environmental factors. Three classes of phospholipases, named PLA 2, PLC and PLD, were classified based on their cleavage sites, and the presence of variants of isoforms indicating their different functions in plant growth/development. The update information of phospholipases with focus on the interaction of plant hormone and environmental factors has been provided.展开更多
氮是植物生长必需的营养元素。植物从土壤中吸收的氮素主要是NO3-和NH4+等无机氮源。植物吸收NO3-和NH4+的系统均有高亲和转运系统(high-affinity transport system,HATS)和低亲和转运系统(low-affinity transport system,LATS)之分。...氮是植物生长必需的营养元素。植物从土壤中吸收的氮素主要是NO3-和NH4+等无机氮源。植物吸收NO3-和NH4+的系统均有高亲和转运系统(high-affinity transport system,HATS)和低亲和转运系统(low-affinity transport system,LATS)之分。近10多年的研究已对这些转运系统的分子基础有了较好的理解,本文着重对近年来植物吸收无机氮分子机制的研究进展进行了综述。展开更多
文摘Phosphotidylinositol (PI) can be hydrolyzed into inositol 1,4,5_ trisphosphate/diacylglycerol (IP 3/DAG), the second signalling messengers which can be further phosphorylated by phospholipases to other signalling molecules, and phosphatidic acid (PA) and lysophosphoglyceride (lysoPI) involved in many signalling cascades. It has been shown that PI signalling pathway and the involved enzymes are critical for plant development and response to environmental factors. Three classes of phospholipases, named PLA 2, PLC and PLD, were classified based on their cleavage sites, and the presence of variants of isoforms indicating their different functions in plant growth/development. The update information of phospholipases with focus on the interaction of plant hormone and environmental factors has been provided.
文摘氮是植物生长必需的营养元素。植物从土壤中吸收的氮素主要是NO3-和NH4+等无机氮源。植物吸收NO3-和NH4+的系统均有高亲和转运系统(high-affinity transport system,HATS)和低亲和转运系统(low-affinity transport system,LATS)之分。近10多年的研究已对这些转运系统的分子基础有了较好的理解,本文着重对近年来植物吸收无机氮分子机制的研究进展进行了综述。