| ²é¿´: 1045 | »Ø¸´: 1 | |||
| ±¾Ìû²úÉú 1 ¸ö ·ÒëEPI £¬µã»÷ÕâÀï½øÐв鿴 | |||
canfeng2008Òø³æ (ÕýʽдÊÖ)
|
[ÇóÖú]
һС¶ÎÉúÎï·½ÃæµÄÕªÒª£¬ººÒëÓ¢£¬ÎұȽϼ±Òª£¬Ð»Ð»ÁË
|
||
|
¹ýÑõ»¯ÎïøÌåÔöÖ³Ì弤»îÊÜÌå¦Ã(PPAR¦Ã)ÔÚÖ¬ÖÊ´úлµÄ¹ý³ÌÖÐÆðןËÐÄ×÷Óã¬Äܹ»µ÷½ÚÖ¬ÖÊ´úл°Ð»ùÒòµÄ±í´ï£¬´Ù½øÖ¬ÖʵijÁ»ý¡£µ«µ±²æÍ·×ªÂ¼Òò×ÓOÑǼÒ×å1£¨FoxO1£©ÓëPPAR¦ÃÏà½áºÏʱ£¬Æä´Ù½øÖ¬ÖʳÁ»ýµÄ×÷Óñ»ÒÖÖÆ¡£Ä¿Ç°¹ØÓÚÓãÀàµÄÖ¬ÖʳÁ»ýµÄÑо¿´ÓÓªÑø¡¢Éú»¯¡¢ÉúÀíµÄ½Ç¶ÈÓкܶàÏà¹Ø±¨µÀ£¬µ«´Ó·Ö×Ӻ͵°°×ˮƽÓÈÆäÊÇÁ½¸ö»ùÒòÏ໥µ÷¿ØµÄ·Ö×Ó»úÖÆµÄÑо¿ÉõÉÙ¡£Òò´Ë±¾ÏîÄ¿ÄâÒÔÎÒ¹úÌØÓеÄ﮿ÆÓãÀà²ÝÓãΪÊÔÑé²ÄÁÏ£¬²ÉÓÃÌåÍâÖØ×é±í´ïµ°°×¡¢WesternÔÓ½»¡¢Ï¸°ûÅàÑø¡¢ÃâÒßϸ°û»¯Ñ§¡¢È¾É«ÖÊÃâÒß³Áµí¼°ÊµÊ±¶¨Á¿PCRµÈ×éÖ¯¡¢Ï¸°û¡¢µ°°×ÖÊ×éѧºÍ·Ö×ÓÉúÎïѧ¼¼Êõ£¬Ñо¿FoxO1¡¢PPAR¦ÃµÄ·´Ó¦»úÖÆÒÔ¼°É¸Ñ¡³ö¸÷×ԵİлùÒò£¬Ì½Ë÷ÔÚ²ÝÓãÖ¬ÖÊ´úлµ÷¿ØÖеĵ÷¿ØÍøÂç¼°·Ö×Ó»úÖÆ¡£Ñо¿½á¹û¶Ô²ûÃ÷ÎÒ¹úÓãÀàÖ¬ÖÊ´úлµÄ·Ö×Óµ÷¿Ø»úÖÆÓÐ×ÅÖØÒªµÄÒâÒ壬ҲΪ¸ÄÉÆÓãÈâµÄ·çζ¼°Æ·ÖÊÌṩÁËÀíÂÛ»ù´¡¡£ [ Last edited by canfeng2008 on 2012-3-9 at 09:14 ] |
» ²ÂÄãϲ»¶
2026Äê8ÔÂ25ÈÕ¹ú×ÔÈ»·Å°ñǰͻȻÊÕµ½ÁÐÈëÆÀÉóר¼ÒÓʼþ£¬ÓйØÏµÂð£¿
ÒѾÓÐ20È˻ظ´
½ñÌìÎñί»á¿ªÍêÁË£¬Ã÷Ìì³ö½á¹ûÂð
ÒѾÓÐ22È˻ظ´
ÊÛSCIÒ»ÇøT0PÎÄÕ£¬ÎÒ:8O.55.1.O.5.4,¿ÆÄ¿ÆëÈ«,¿É+¼±
ÒѾÓÐ3È˻ظ´
ÊÛSCIÒ»ÇøT0PÎÄÕ£¬ÎÒ:8.O.55.1.O.5.4,¿ÆÄ¿È«,¿É+¼±
ÒѾÓÐ3È˻ظ´
ÔÚ¼á±ù»¹¸Ç×ű±º£µÄʱºò£¬ÎÒ¿´µ½ÁËŷŵÄ÷»¨¡£
ÒѾÓÐ9È˻ظ´
Ã÷ÌìÓ¦¸Ã¿É²éÁË£¡£¿
ÒѾÓÐ6È˻ظ´
ÓÐûÓдóÉñ°ïÎÒ¿´¿´»ù½ð´úÂë
ÒѾÓÐ10È˻ظ´
·Å°ñǰµÄ²»µ¶¨
ÒѾÓÐ19È˻ظ´
ijЩ»ú¹¹£¬ÒÔЧÂʵÍΪÈÙ£¬ÒÔЧÂʵÍ×÷Ϊ´æÔÚ¸Ð
ÒѾÓÐ10È˻ظ´
2026¹ú×ÔÈ»º¯ÆÀ·Ñµ½ÕË
ÒѾÓÐ23È˻ظ´
weichin
Ìú¸Ëľ³æ (Ö°Òµ×÷¼Ò)
- ·ÒëEPI: 183
- Ó¦Öú: 18 (СѧÉú)
- ½ð±Ò: 9734.7
- ºì»¨: 17
- Ìû×Ó: 4116
- ÔÚÏß: 345.2Сʱ
- ³æºÅ: 1490943
- ×¢²á: 2011-11-14
- רҵ: ½á¹¹ÌÕ´É
¡¾´ð°¸¡¿Ó¦Öú»ØÌû
¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï ¡ï
canfeng2008(½ð±Ò+20, ·ÒëEPI+1): ¡ïÓаïÖú ÎÒ»¹µÃÔٸĸ쬲»¹ý»¹ÊÇллÄãÁË 2012-03-11 01:28:26
sltmac: ½ð±Ò+20 2012-03-22 09:46:21
canfeng2008(½ð±Ò+20, ·ÒëEPI+1): ¡ïÓаïÖú ÎÒ»¹µÃÔٸĸ쬲»¹ý»¹ÊÇллÄãÁË 2012-03-11 01:28:26
sltmac: ½ð±Ò+20 2012-03-22 09:46:21
|
¹©²Î¿¼£º The peroxisome proliferator-activated receptor ¦Ã (PPAR¦Ã) plays a key role in the process of lipid metabolism by regulating the expression of target genes of lipid metabolism and promoting lipid deposition. However, PPAR¦Ã¡¯s function in in promoting lipid deposition is inhibited when it is combined with the FoxO1, a subfamily of the forkhead transcription factors. By far, a great much has been reported on the research on fish lipid deposition from the perspectives of nutrition, biochemistry, and physiology, but rare research has been done on the molecular and protein levels, especially on the molecular mechanism of mutual regulation between two genes. Therefore, the grass carp, a unique type of cyprinid fish in China, is to be chosen as the test material in this project, and such tissue, cellular, proteomic, and molecular biotechnologies as recombinant protein expression, Western blotting, cell culture, immunocytochemistry, chromatin immunoprecipitation, and real-time quantitative PCR, etc. are employed to study the reaction mechanism between FoxO1 and PPAR¦Ã, filter out the respective target genes, and explore the regulatory networks and molecular mechanisms in the regulation of lipid metabolism of grass carp. The research results not only shed light on the clarification of the molecular mechanisms for lipid metabolism of China¡¯s fish, but also provide a theoretical basis for improving the flavor and quality of fish. |

2Â¥2012-03-09 15:47:32









»Ø¸´´ËÂ¥
28