Ö²Îï¼¤ËØÍÑÂäËᣨABA£©µ÷½Ú×ÅÖ²ÎïµÄÉú³¤¡¢·¢ÓýºÍ¶ÔÉúÎï/·ÇÉúÎïвÆÈµÄÏìÓ¦¡£ºËÐĵÄABAÐźÅͨ·ÊÇÓÉÈý¸öÖ÷Òª²¿·Ö×é³É£ºABAÊÜÌ壨pYR1/pYLs£©¡¢2CÐ͵°°×Á×Ëáø£¨pp2C£©ºÍSNF1Ïà¹Øµ°°×¼¤Ã¸2£¨SnRK2£©¡£È»¶ø£¬ABAÐźŵĸ´ÔÓÐÔ£¬ÈÔÈ»ÊÇØ½´ý½â¾öµÄÎÊÌâ¡£

×î½ü£¬¹ú¼ÊÒÅ´«Ñ§ÆÚ¿¯¡¶pLOS Genetics¡·ÔÚÏß·¢±íÁËÖпÆÔºÉϺ£ÉúÃü¿ÆÑ§Ñо¿ÔºÖ콡¿µÔºÊ¿´øÁìµÄÒ»ÏîÑо¿£¬ÌâΪ¡°Type One protein phosphatase 1 and Its Regulatory protein Inhibitor 2 Negatively Regulate ABA Signaling¡±¡£ÕâÏîÑо¿½«TOpp1ºÍAtI-2×÷ÎïABAÐźÅתµ¼µÄ¸ºµ÷½ÚÒò×Ó¡£

Ö콡¿µÊǹú¼ÊÖøÃûÖ²ÎïÉúÎïѧ¼Ò¡¢Ö²Îï¿¹Äæ·Ö×ÓѧÁì¾ü¿ÆÑ§¼Ò£¬ÃÀ¹ú¿ÆÑ§ÔºÔºÊ¿¡¢ÃÀ¹úÆÕ¶É´óѧÉúÎﻯѧϵºÍÔ°ÒÕ¼°Ô°ÁÖϵ½Ü³ö½ÌÊÚ£¬Ê×Åú¡°****¡±ÈëÑ¡Õߣ¬ÖпÆÔºÉϺ£Ö²ÎïÄæ¾³ÉúÎïѧÑо¿ÖÐÐÄÖ÷ÈΡ£Ö콡¿µ1988Ä기ÃÀÁôѧ£¬2000ÄêÊÜÆ¸ÃÀ¹úÑÇÀûÉ£ÄÇ´óѧֲÎï¿ÆÑ§ÏµÕý½ÌÊÚ£¬ÔøÈμÓÖÝ´óѧºÓ±õ·ÖУÕûºÏ»ùÒò×éѧÑо¿ËùËù³¤¡£ÔÚֲκµ¡¢ÄÍÑÎÓëÄ͵Íη½Ãæ×ö³öÁ˽ܳö³É¾Í£¬ÊÇÊÀ½çÖ²Îï¿ÆÑ§ÁìÓò·¢±íÂÛÎÄÒýÓÃÂÊ×î¸ßµÄ¿ÆÑ§¼ÒÖ®Ò»¡£½ü¼¸¸öÔ·¢±í¶àÏîÖØÒªÑ§Êõ³É¹û£ºÖ콡¿µ½ÌÊÚ·¢±ípNASת»ùÒòÑо¿Ð³ɹû£»Ö콡¿µÔºÊ¿£º¿ª·¢ÐÂÐͶà·¸´ÓÃCRISpR/Cas9ƽ̨£»Ö콡¿µÔºÊ¿CellResearch·¢²¼±í¹ÛÒÅ´«Ð·¢ÏÖ¡£

ABA¿ØÖÆ×ÅÖ²ÎïµÄ¶à¸ö·¢Óý¹ý³Ì£¬ÈçÖÖ×ÓÐÝÃß¡¢ÃÈ·¢£¬¸ù/¾¥µÄÉú³¤£¬¿ª»¨ºÍË¥ÀÏ¡£µ±Ö²ÎïÓöµ½Ñ¹Á¦µÄÇé¿ö£¬ABA¿ÉÒÔѸËÙÓÕµ¼µÄ»ùÒò±í´ïµÄÖØÐ±à³Ì£¬²¢´¥·¢¶à¸öÉúÀí·´Ó¦£¬ÈçÆø¿×¹Ø±Õ£¬ÒÔ¼õÉÙÖ²ÎïµÄË®·ÖËðʧ¡£¼øÓÚABAÔÚµ÷½ÚÖ²ÎïÉú³¤¸÷¸ö·½ÃæºÍÓ¦¼¤·´Ó¦ÖеÄÖØÒªÐÔ£¬Á˽âABAÏìÓ¦²»Àû»·¾³Ìõ¼þµÄ·Ö×Ó»úÖÆ£¬ÊÇÖÁ¹ØÖØÒªµÄ¡£

ÄâÄϽæABA abi1-1ºÍabi2-1Í»±äÌ壬ÊÇÔÚABA²»Ãô¸Ð±íÐ͵ÄÒÅ´«É¸Ñ¡ÖзÖÀë³öÀ´µÄ¡£ÕâÁ½ÖÖÍ»±äÌåÔÚÖÖ×ÓÃÈ·¢¡¢Ó×ÃçÉú³¤ºÍÆø¿×¹Ø±Õ¹ý³ÌÖУ¬¾ù±íÏÖ³öÏÔÐÔ¸ºÐ§Ó¦¡£ÓÐÑо¿·¢ÏÖ£¬ABI1ºÍABI2±àÂëͬԴ2CÐÍË¿°±Ëá/ËÕ°±ËᣨSer/Thr£©Á×Ëáø£¨pp2Cs£©£¬±íÃ÷Á×Ëáø½éµ¼µÄÈ¥Á×Ëữ¶ÔÓÚµ÷½ÚABAÐÅºÅÆð׏ؼüµÄ×÷Ó᣾ݱíÃ÷£¬ÕâЩclade A pp2Cs¸ºÏòµ÷¿ØABAÐźÅתµ¼Í¨Â·¡£

Á¢¼´Ë÷È¡Mem-pER plusĤµ°°×ÌáÈ¡ÊÔ¼ÁºÐµÄ¸ü¶à×ÊÁÏ

SNF1Ïà¹Øµ°°×¼¤Ã¸£¨SnRK2s£©Ò²µ÷½ÚABAÐźÅתµ¼¡£ÄâÄϽæÍ»±äÌåost1-1/snrk 2.6£¨Open Stomata 1£¬ÓÖÃûSnRK2.6£©±íÏÖ³ö£ºABAÓÕµ¼µÄÆø¿×¹Ø±ÕÊÜË𣬹âÓÕµ¼µÄÆø¿×¿ª·ÅÒ²³öÏÖȱÏÝ¡£ÔÚÄâÄϽæÖÐÒÑÈ·¶¨ÁË10¸öSnRK2£¨SnRK2.1¨C10£©£»È»¶øÔÚÔ­ÉúÖÊÌåµÄ˲ʱ±í´ï¼ì²âÖУ¬Ö»ÓÐ4¸ö£¨SnRK2.2 / 2.3 / 2.6 / 2.8£©¿ÉÒÔͨ¹ýABA¼¤»î£¬´Ó¶ø±íÃ÷£¬SnRK2³ÉÔ±¿ÉÄÜÔÚÒÀÀµ»ò²»ÒÀÀµABAµÄÐźÅתµ¼Í¾¾¶Öз¢»Ó×÷Óá£ABAÓÕµ¼µÄ»ùÒò±í´ïºÍÆäËûABA·´Ó¦£¬ÔÚsnrk2.2/3/6ÈýÍ»±äÌåÖ²ÖêÖм¸ºõÊÇÍêÈ«×è¶ÏµÄ£¬´Ó¶ø±íÃ÷ÕâÈý¸öSnRK2sÊÇABAÐźÅתµ¼¹Ø¼üµÄÕýÏòµ÷½ÚÒò×Ó¡£½á¹û±íÃ÷£¬·ÖÖ§A pp2CsÓëSnRK2s»î»¯»·ÉϵÄSnRK2sºÍÈ¥Á×Ëữ¹Ø¼üSer/Thr²Ð»ù½áºÏ¡£

½üÄêÀ´£¬ABAÊÜÌ屻ȷ¶¨ÎªpYRABACTIN RESISTANCE 1 (pYR1)/pYR1-Like (pYL)/REGULATORY COMpONENT OF ABA RECEpTOR (RCAR)µ°°×¼Ò×å¡£ABAÓëÊÜÌå½áºÏ£¬´¥·¢ÊÜÌå·¢Éú¹¹Ïó¸Ä±ä£¬´Ó¶øÊ¹ËüÃÇÓëpp2Cs½»½Ó£¬²¢ÆÆ»µpp2C-SnRK2Ï໥×÷Ó㬴Ópp2Cs½éµ¼µÄÒÖÖÆ×÷ÓÃÊÍ·ÅSnRK2s¡£Ëæºó£¬¼¤»îµÄSnRK2sÁ×ËữÏÂÓΰе°°×£¬Èçϸ°ûĤÖеÄÀë×ÓͨµÀ£¬ÒÔ¼°Ï¸°ûºËÄÚµÄbZIpת¼Òò×Ó¡£

ΪÁËÈ·¶¨ABAÐźÅͨ·µÄDZÔÚÐÂ×é¼þ£¬¸ÃÑо¿Ð¡×é½øÐÐÁ˽Íĸ˫ÔÓ½»É¸Ñ¡£¬²ÉÓÃSnRK2.6×÷ΪÓÕ¶ü¡£Ñо¿ÈËÔ±·¢ÏÖ£¬1ÐÍÁ×Ëáø1£¨TOpp1£©¼°Æäµ÷½Úµ°°×£¬ÄâÄϽ棨ati-2£©£¬¿ÉÓ뼸¸öSnRK2sºÍpYLsÏ໥×÷Óá£ÉúÎﻯѧºÍÉúÀíѧ֤¾Ý±íÃ÷£¬TOpp1ºÍAtI-2¿ÉЭµ÷ÒÖÖÆSnRK2s£¬·´¹ýÀ´£¬ÓÖ¸ºµ÷¿ØABAÐźŴ«µ¼Í¨Â·¡£topp1ºÍati-2Í»±äÌåÖ²Îï¶ÔABAºÍÑÎÊǸ߶ÈÃô¸ÐµÄ£¬ÕâÓëËüÃÇÔÚABAÐźÅתµ¼ÖеŦÄÜÏàÒ»Ö¡£´ËÍ⣬ת¼×é·ÖÎö½á¹ûÏÔʾ£¬TOpp1ºÍAtI-2¹²Í¬µ÷½ÚÏìÓ¦ABAµÄÖØµþ»ùÒòȺ¡£

×ܶøÑÔÖ®£¬ÕâÏîÑо¿È·¶¨ÁËABAÐźÅתµ¼Í¨Â·ÐµÄ×é³É²¿·Ö¡ª¡ªTOpp1ºÍAtI-2£¬²¢ÃèÊöÁËËüÃÇÔÚABAÐźÅתµ¼ÖеÄÏû¼«×÷Óá£

£¨ÉúÎïͨ£ºÍõÓ¢£©

ÉúÎïÍ¨ÍÆ¼öÔ­ÎÄÕªÒª£º
Type One protein phosphatase 1 and Its Regulatory protein Inhibitor 2 Negatively Regulate ABA Signaling
Abstract: The phytohormone abscisic acid (ABA) regulates plant growth, development and responses to biotic and abiotic stresses. The core ABA signaling pathway consists of three major components: ABA receptor (pYR1/pYLs), type 2C protein phosphatase (pp2C) and SNF1-related protein kinase 2 (SnRK2). Nevertheless, the complexity of ABA signaling remains to be explored. To uncover new components of ABA signal transduction pathways, we performed a yeast two-hybrid screen for SnRK2-interacting proteins. We found that Type One protein phosphatase 1 (TOpp1) and its regulatory protein, At Inhibitor-2 (AtI-2), physically interact with SnRK2s and also with pYLs. TOpp1 inhibited the kinase activity of SnRK2.6, and this inhibition could be enhanced by AtI-2. Transactivation assays showed that TOpp1 and AtI-2 negatively regulated the SnRK2.2/3/6-mediated activation of the ABA responsive reporter gene RD29B, supporting a negative role of TOpp1 and AtI-2 in ABA signaling. Consistent with these findings, topp1 and ati-2 mutant plants displayed hypersensitivities to ABA and salt treatments, and transcriptome analysis of TOpp1 and AtI-2 knockout plants revealed an increased expression of multiple ABA-responsive genes in the mutants. Taken together, our results uncover TOpp1 and AtI-2 as negative regulators of ABA signaling.