Ç廪****·¢±íÖ²Îﲡ¶¾Ñо¿Ð³ɹû
²¡¶¾Äܹ»¸ÉÈźÍÇÖÕ¼ËÞÖ÷»úе£¬²¢¹æ±Ü·ÀÓù·´Ó¦£¬´´ÔìÒ»¸öºÏÊʵÄϸ°û»·¾³ÓÃÒԳɹ¦´«È¾¡£Õâͨ³£ÊÇͨ¹ý²¡¶¾µ°°×ºÍËÞÖ÷Òò×ÓÖ®¼äµÄÏ໥×÷ÓöøÍê³ÉµÄ¡£Ë«Éú²¡¶¾£¨Geminiviruses£©ÊÇÒ»×é¸ÐȾֲÎïµÄDNA²¡¶¾£¬ÆäÖÐһЩ°üº¬Ò»¸öÎÀÐÇ·Ö×Ó£¨betasatellite£©£¬³ÆÎªDNA¦Â¡£6ÔÂ17ÈÕ£¬À´×ÔÇ廪´óѧ¡¢Öйúũҵ´óѧÕã½Ê¡Å©¿ÆÔºµÈ´¦µÄÑо¿ÈËÔ±£¬ÔÚ¹ú¼ÊÖøÃûÔÓÖ¾¡¶pLOS pathogens¡··¢±íÒ»ÏîÑо¿³É¹û¡£ÕâÏîÑо¿Ì½ÌÖÁËÃÞ»¨ËõÒ¶²¡Multan²¡¶¾£¨CLCuMuV£©ÈçºÎÓëÖ²ÎïÏ໥×÷ÓöøÒý·¢²¡¶¾ÐÔ¼²²¡µÄ¡£
±¾ÎÄͨѶ×÷ÕßÊÇÇ廪´óѧÉúÃü¿ÆÑ§Ñ§ÔºµÄÁõÓñÀÖ½ÌÊÚ¡£ÁõÓñÀÖ½ÌÊÚ1988Äê±ÏÒµÓÚÄÏ¿ª´óѧ£¬1992ÄêÔÚÖпÆÔºvwinµÂÓ®Ñо¿Ëù»ñ˶ʿѧ룬1997Ä꣬»ñÖпÆÔºvwinµÂÓ®Ñо¿ËùÓëÓ¢¹úËÕ¸ñÀ¼×÷ÎïÑо¿ËùÁªºÏÅàÑø²©Ê¿£¬ÔøÔÚÓ¢¹úËÕ¸ñÀ¼×÷ÎïÑо¿Ëù¡¢ÃÀ¹úµÂ¿ËÈøË¹´óѧ°Â˹¶¡·ÖУ¡¢ÃÀ¹úҮ³´óѧ×ö¹ý·ÃÎÊѧÕß¡¢²©Ê¿ºóºÍAssociate Research Scientist£¬2007ÄêÖÁ½ñΪÇ廪´óѧ½ÌÊÚ£¬¡°****¡±ÔðÈνÌÊÚ£¬²©Ê¿Éúµ¼Ê¦£¬¹ú¼Ò½Ü³öÇàÄê»ù½ð»ñµÃÕß¡£Ñо¿·½ÏòΪֲÎïÃâÒßµÄÐźŴ«µ¼Óëµ÷¿Ø¡¢Ö²Îﲡ¶¾²¡ÀíµÄ·Ö×Ó»ù´¡¡¢Ö²Îïϸ°û×ÔÊÉ¡¢Ö²Î﹦ÄÜ»ùÒò×é¡£Ñо¿³É¹û¶à´Î·¢±íÔÚplant physiology¡¢pLoS pathogens¡¢plant Cell¡¢Molecular plant¡¢New phytologist¡¢Journal of Biological Chemistry¡¢Developmental CellµÈ¹ú¼ÊѧÊõÆÚ¿¯¡£Ïà¹ØÔĶÁ£ºÉúÃü¿ÆÑ§¸ß±»ÒýÖйúѧÕß¹«²¼²ÜÑ©ÌÎʩһ¹«µÈÈëÑ¡¡£È¥Äê10Ô·ݣ¬ÁõÓñÀÖ½ÌÊÚ´øÁìµÄÒ»ÏîCRISpRгɹû·¢±íÔÚ¡¶Scientific Reports¡·£¬Ïà¹ØÔĶÁ£ºÇ廪****·¢±íCRISpRгɹû¡£
µ¥×é·ÖË«Éú²¡¶¾£¨Monopartite begomoviruses£©¿Éͨ¹ý¾ßÓÐÒ»¸öÖØÒªµÄ¼²²¡ÌØÒìÐÔÎÀÐÇ·Ö×Ó£¬ÔÚÐí¶à×÷ÎïÖÐÔì³É»ÙÃðÐԵļ²²¡¡£ÀýÈ磬ÖÁÉÙÓÐÁùÖÖ²»Í¬µÄ²¡¶¾ÓëÒ»¸öÎÀÐÇ·Ö×ÓÓйأ¬ÃÞ»¨ËõÒ¶²¡Multan ÎÀÐÇ·Ö×Ó(CLCuMuB)£¬¿Éµ¼ÖÂÃÞ»¨¾íÒ¶²¡£¨CLCuD£©£¬ÕâÊÇÑÇÖÞÃÞ»¨Éú²úµÄÒ»´óÖÆÔ¼ÒòËØ¡£ÃÞ»¨ËõÒ¶²¡Multan²¡¶¾£¨CLCuMuV£©ÊÇÆäÖÐÒ»ÖÖ²¡¶¾£¬Äܹ»¸ÐȾÃÞ»¨ºÍÆäËûÐí¶àÖ²Î°üÀ¨±¾ÊÏÑÌ¡£CLCuMuV°üº¬Ò»¸öÔ²Ðεĵ¥Á´DNA»ùÒò×飬ֻ±àÂë6¸öµ°°×¡£CLCuMuBÊÇÒ»¸öСµÄÔ²Ðε¥Á´DNA·Ö×Ó£¬¶ÔÓÚCLCuMuVÔÚÖ²ÎïÖÐÓÕ·¢¼²²¡Ö¢×´ÊDZز»¿ÉÉٵġ£
Ë÷È¡pierce Magnetic RNA-protein pull-Down KitµÄ×îÐÂ×ÊÁÏ£¬Á˽âÇáËɸ»¼¯µ°°×ºÍRNAÏ໥×÷ÓõİÂÃØ
ÏñCLCuMuBÕâÑùµÄÎÀÐÇ·Ö×Ó£¬´óС´óÔ¼ÊÇË«Éú²¡¶¾ DNA»ùÒò×éµÄÒ»°ë¡£ËüÃÇÔÚÖ²ÎïÖеĸ´ÖƺÍÒÆ¶¯ÐèҪ˫Éú²¡¶¾µÄ°ïÖú£¬Ö»±àÂëÒ»¸ö¶à¹¦ÄܵÄÖ²¡ÐÔµ°°×ÖʦÂC1¡£¦ÂC1¿ÉÉϵ÷ÆäͬԴ°ïÊÖ²¡¶¾µÄÔöÖ³£¬²¢²¹³äһЩ˫Éú²¡µÄµÄDNA B×é·Ö±àÂëµÄÔ˶¯¹¦ÄÜ¡£¦ÂC1¶ÔÓÚ²úÉú²¡¶¾¼²²¡Ö¢×´ÊÇÖÁ¹ØÖØÒªµÄ£¬²¢ÇÒÔÚת¼£¨TGS£©ºÍת¼ºó»ùÒò³ÁĬ£¨pTGS£©µÄÒÖÖÆ¹ý³ÌÖз¢»ÓÖØÒªµÄ×÷ÓᣴËÍ⣬¦ÂC1»¹¿ÉÒÔ´Ù½ø·ÛʵÄÐÔÄÜ£¬²¢Î£º¦Ö²ÎïµÄ·¢Óý¡£×î½ü·¢±íµÄ×ÛÊöÎÄÕÂÖУ¬ÎÒÃÇ¿ÉÒÔ¿´µ½¹ØÓÚ¦ÂC1¶à¹¦Äܵĸü¶àϸ½Ú¡£È»¶ø£¬Ë«Éú²¡¶¾ÈçºÎÀûÓæÂC1À´Ö´ÐÐÕâЩ²»Í¬µÄ¹¦ÄÜ£¬»¹ÐèÒª½øÒ»²½µÄ̽ÌÖ¡£
·ºËØ»¯ÊÇÒ»¸ö¸ß¶È¶¯Ì¬µÄ·ÒëºóÐÞÊιý³Ì£¬ÔÚÖ²ÎïÖÐÊÇÒ»¸öÖØÒªµÄµ°°×Öʽµ½âºÍ¿ìËÙµ÷½Ú»úÖÆ¡£Í¨¹ýÒ»×éÁ¬ÐøµÄø£¨E1¡¢E2ºÍE3£©£¬·ºËØ»¯¹²¼Û½áºÏµ½»ùÖʵ°°×ÉÏ£¬È»ºó£¬ÔÚ´ó¶àÊýÇé¿öÏ£¬¶à·ºËØ»¯µÄµ°°×Öʽ«±»26Sµ°°×øÌå½µ½â¡£×î·á¸»µÄE3¼Ò×å³ÉÔ±SKp1/CUL1/F-box (SCF)¸´ºÏÎïÊDZíÕ÷×îºÃµÄ¶àÑÇ»ù·ºËØÁ¬½Óø¡£ÔÚSCF¸´ºÏÎïÖУ¬SKp1/ASK1³äµ±CUL1ºÍF-boxµ°°×Ö®¼äµÄÒ»¸öÇÅÁº¡£ÓÐ700¶àÖÖÔ¤²âµÄF-boxµ°°×ÊÇÓÉÄâÄϽæ»ùÒò×é±àÂëµÄ¡£
ÒÔSCF¸´ºÏÎïΪ»ù´¡µÄE3·ºËØÁ¬½Óø£¬ÒÑÖª¿Éµ÷¿ØÖ²Îï¼¤ËØÐźš£Ò»Ð©Ö²Îï¼¤ËØÊÜÌåÊÇSCF¸´ºÏÎïÖеÄF-boxµ°°×£¬ÀýÈçSCFTIR1£¨Ö²ÎïÉú³¤ËØ£©¡¢SCFCOI1£¨ÜÔÀòËᣩµÈ¡£´ËÍ⣬SCF¸´ºÏÎïÔÚ¶à¸öµãÉϵ÷½Ú×ÅÒÒÏ©£¨ET£©ÐźÅתµ¼¡£ÒòΪֲÎï¼¤ËØÔÚÖ²ÎïÉú³¤ÖÐÆð׏ؼü×÷Óã¬Òò´ËÕâЩͨ·µÄË𺦣¬Í¨³£°éËæ×ÅÒì³£µÄ·¢Óý±íÐÍ¡£ÆäÖУ¬JAÔÚ¶Ô²¡ÔÌåºÍÀ¥³æµÄ·ÀÓùÖÐÆäÖйؼü×÷Óá£×î½ü£¬¾Ý±¨µÀJA;¾¶²ÎÓëÖ²Îï¶ÔË«Éú²¡¶¾¸ÐȾµÄ·ÀÓù¡£
ÔÚÕâÏîÑо¿ÖУ¬Ñо¿ÈËÔ±±¨µÀ³Æ£¬ÃÞ»¨ËõÒ¶²¡Multan²¡¶¾ (CLCuMuV)ʹÓÃÆäΨһµÄÎÀÐÇ·Ö×Ó±àÂëµ°°×¦ÂC1£¬À´µ÷¿ØÖ²ÎïµÄ·ºËØ»¯Í¾¾¶£¬ÒÔ½øÐÐÓÐЧµÄ¸ÐȾ¡£Ñо¿ÈËÔ±·¢ÏÖ£¬CLCuMubetasatellite (CLCuMuB) ¦ÂC1¿ÉÓëNbSKp1Ï໥×÷Ó㬲¢ÖжÏNbSKp1sºÍNbCUL1Ö®¼äµÄÏ໥×÷Óá£NbSKp1s»òNbCUL1µÄ³ÁĬ¿ÉÔöÇ¿CLCuMuV»ùÒò×éDNAµÄ»ýÀÛ£¬²¢µ¼ÖÂÑÏÖØµÄÖ²Îï¼²²¡Ö¢×´¡£¦ÂC1»áÏ÷ÈõSCFCOI1µÄÍêÕûÐÔ£¬ÒÔ¼°GAI£¨SCFSYL1µÄÒ»ÖÖ»ùÖÊ£¬¿É×è°¶ÔÜÔÀòËáJAºÍ³àÃ¹ËØGAµÄÏìÓ¦£©µÄÎȶ¨ÐÔ¡£´ËÍ⣬JA´¦Àí¿É¼õÉÙ²¡¶¾»ýÀÛºÍÖ¢×´¡£ÕâЩ½á¹û±íÃ÷£¬CLCuMuB ¦ÂC1¿Éͨ¹ýÓëNbSKp1sÏ໥×÷Óã¬ÒÖÖÆSCF E3Á¬½ÓøµÄ·ºËØ»¯¹¦ÄÜ£¬´Ó¶øÔöÇ¿CLCuMuVÔÚÖ²ÎïÖеĸÐȾ֢״ÓÕ·¢¡£
£¨ÉúÎïͨ£ºÍõÓ¢£©
ÉúÎïÍ¨ÍÆ¼öÔÎÄÕªÒª£º
CLCuMuB ¦ÂC1 Subverts Ubiquitination by Interacting with NbSKp1s to Enhance Geminivirus Infection in Nicotiana benthamiana
Abstract: Viruses interfere with and usurp host machinery and circumvent defense responses to create a suitable cellular environment for successful infection. This is usually achieved through interactions between viral proteins and host factors. Geminiviruses are a group of plant-infecting DNA viruses, of which some contain a betasatellite, known as DNA¦Â. Here, we report that Cotton leaf curl Multan virus (CLCuMuV) uses its sole satellite-encoded protein ¦ÂC1 to regulate the plant ubiquitination pathway for effective infection. We found that CLCuMu betasatellite (CLCuMuB) ¦ÂC1 interacts with NbSKp1, and interrupts the interaction of NbSKp1s with NbCUL1. Silencing of either NbSKp1s or NbCUL1 enhances the accumulation of CLCuMuV genomic DNA and results in severe disease symptoms in plants. ¦ÂC1 impairs the integrity of SCFCOI1 and the stabilization of GAI, a substrate of the SCFSYL1 to hinder responses to jasmonates (JA) and gibberellins (GA). Moreover, JA treatment reduces viral accumulation and symptoms. These results suggest that CLCuMuB ¦ÂC1 inhibits the ubiquitination function of SCF E3 ligases through interacting with NbSKp1s to enhance CLCuMuV infection and symptom induction in plants.