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1茉莉酸甲酯对丹参茎叶丹酚酸和丹酚酸B含量的影响李明冯世阳广东药学院中药学院广州510006摘要目的探讨茉莉酸甲酯METHYJASMONAT,MJ对栽培丹参的药效成分影响,并为丹参地上部分的开发利用提供一定的研究依据。方法采用比色法和HPLC法,以丹酚酸和丹酚酸B为检测指标,对茉莉酸甲酯处理的丹参茎叶样品进行检测。结果丹参种苗经茉莉酸甲酯喷施处理后的48H内,其茎叶中丹酚酸和丹酚酸B含量均高于对照,在所测试范围510A1A2A3510A1A4的浓度中,随浓度的升高而含量增加。结论外施茉莉酸甲酯能促进丹参茎叶中的丹酚酸和丹酚酸B含量的积累,可以考虑在生产中加以应用,并注意今后在丹参的种植及采收中地上部分的利用。关G19202G16801G726丹参G727茉莉酸甲酯G727丹酚酸G727丹酚酸BSTUDYONTHEEFFECTOFTOTALPHENOLICACIDSANDSALVIANOLICACIDBCONTENTINTHELEAVESANDSTEMSOFSALVIAMILTIORRHIZATREATEDBYMETHYJASMONATLIMINGFENGSHIYANGG54G70HG82G82G79G82G73CHG76G81G72G86G72G48G68G87G72G85G76G68G48G72G71G76G70G68G15G42G88G68G81G74G71G82G81G74PG68G85G80G68G70G72G88G87G76G70G68G79G56G81G76G89G72G85G86G76G87G92G15G42G88G68G81G74G93HG82G8851000G25G15CHG76G81G68OBJECTIVEOBJECTIVEG55G82G87HG72G72G73G73G72G70G87G82G73G80G72G87HG92G79G77G68G86G80G82G81G68G87G72G708G48G45G709G82G81G80G72G71G76G70G76G81G72G70G82G80G83G82G86G76G87G76G82G81G82G73G70G88G79G87G76G89G68G85SALVIAMILTIORRHIZA,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丹参G708SALVIAMILTIORRHIZABGEG709为G2779G5430G12197植G10301丹参的G5190G10169G7693及G7693茎,其G7389效成分G2265G6336G8712G9354G5627和G14038G9354G5627成分。G14038G9354G5627成分G1039G16213G7171G1120G14832G18272G12879G2282G2524G10301G708G2265G6336丹参G18242G451G19556丹参G18242G12573G709,G8712G9354G5627成分G1039G16213为酚酸G12879G2282G2524G10301G708G2265G6336丹参G13044G451G2419G1811G14602G18287G451G17867G17857A0A5A6A7A8A9A10A11A12A13A14A15A16A17A0A5A18A19A20A21A19A22A23A24A25A26A27A28A18A24A29A30A20A31A26A32A33A32A34A35A32A36A37A38A39A40A41A42A43A44A11A45A46A47A48A49A50A51A52A53A54A15A55A56A57A39A58A59A60A61A62A63A8A63A60A22A30A64A23A23A64A65A66A61A67A68A68A69A70A68A60A69A70A71A72A73A74A63A75A24A20A21A20A29A22A19A20A22A23A202G20333酸G451G13055G14621酸G451G2666G2869酸G451丹酚酸SALVIANOLICACIDG36G451BG12573G709。对于丹参的G8712G9354G5627酚酸G12879G2282G2524G10301,G5353G17227G1114G2319药学G4490的G7509G3835G18337G16282,G1075G11013于丹参的G1268G13491应用G7053G5347为G8712G10018G9094,G17829G1135G5192G7481,对于其G8712G9354G5627酚酸G12879G2282G2524G10301的研究G17751G3822A76A77A78A79A80。丹酚酸BG7171G11458G2081研究G17751G3822的丹酚酸G1055一,在G8847G11115G5527G15892G12661G11154G11161G451G5942G5627G13937G9826G451G6251G13937G13432G13512G2282G451G6251G2172G14045G12921样G11840G2282和G6925G2904G16772G5530G2163能障碍G12573G7053面发挥着G18337G16213作用A76A81A80。最新研究表明,丹参叶中的酚酸G12879含量与G7693中相似,G7389G1135甚至高于G7693部A82A83A78A84A85。茉莉酸甲酯G708MJG709G7171植G10301响应G11161G2419G10301G451害虫G12573G3822种环境胁迫的共同信号分子,广泛存在于高G12573植G10301体内,并作为新型的植G10301激G13044,在调节植G10301生长发育G451光G2524作用G451G6251逆反应G12573G7053面G17227着G18337G16213的作用,外施到植G10301体可以达到一定的逆境胁迫和调节效应A76A86A78A87A80。G7389报道外源G5627MJG12879G2282G2524G10301能G7389效刺激植G10301次生代谢G10301的生G10301G2524成,可G5353G17227G3822种植G10301次生产G10301的迅速积累A76A88A80。G11458G2081G7389利用G48G45研究诱导丹参毛状G7693中的G7389效成分的积累的报道A76A88A80,本研究旨在利用MJ作为诱导子G15在丹参的生产中进行田间喷施实验,探索MJ对丹酚酸B的调控机制G15以及MJ在丹参生产中的应用及丹参地上部分的进一步G2524理开发提供研究依据。1材料与G7053法1G171实验材料和实验地点供试材料为丹参G708SALVIAMILTIORRHIZABG74G72G709种苗G15购于山东菏泽丹参种植基地,茉莉酸甲酯G708MJG709为美国G54G76G74G80G68公司产品。实验地位于广东药学院G3835学城校区药用植G10301实验园。1G172实验设计及处理实验设5个处理G726对照G708丹参喷清G8712G709G727喷施MEJA510A89A90G80G82G79/LG727喷施MEJA510A89A87G80G82G79/LG727喷施MEJA510A89A84G80G82G79/LG727喷施MEJA510A89A81G80G82G79/L。小区面积1G80A79,4次G18337复,随机区组实验设计。MEJA和清G8712均在出齐三片复叶时喷施,将配好的各种浓度的MJG9354G9094用喷壶均匀地喷到对应各组叶片上,以喷满全部叶片为度,喷后立即套上保鲜袋。喷施后48小时取样,取每铢苗的全部小叶片,将叶置G250烘G5190箱烘G25H,取出粉碎,过50G11458筛后用棕色广口瓶保存。1G17G22丹参G5647酚酸含量测定1G17G22G171G2419G1811G14602G18287标G1946G7366G13459制定G2419G1811G14602G18287标G1946G9094G726G12946G4506G12228取G2419G1811G14602G182878G1750G80G74,加G8712G9354G16311并定G4493至20G80G79G7084253G173G74/G80G79,作为对照品G9354G9094。分G2047G12946G4506G2572取G2419G1811G14602G18287对照品G90940G174G4510G178G4511G172G4511G17G25G4512G170G80G79加G8712至2G80L,分G2047加0G175G8G49G68G49G50A795G170G80LG6930置5G80G76G81,加G184910G8G36G79G49G50A81A810G175G80G79,G6930置5G80G76G81,加G18491G80G82G79/LG49G68G50HG90945G170G80G79,G6930置10G80G76G81后,以G7186色G2070为G12366G11345,在500G81G80处测G5483G2572光G1552。以浓度G59为G8190G3364标,G2572光G1552G60为G13449G3364标,G7053G12255为G92G320G170014G91G140G170004,G85G320G17G28G28G281,G13459G5627范围为2G25G161G220G173G74/G80L。1G17G22G172G5647酚酸的测定G12946G4506G12228取样品粉G74230G172G74,置50G80LG4493量瓶中,加2G8G11428酸G8712G9354G9094G1343412G80L,G9036G888515H,加酸G8712G15929G17287量,G6403G668310G80G76G81,经G5190G10169G9400G13452过G9400,G5335G2447G2033G9400G9094,G12946G4506量取G13505G9400G90945G80L,置分G9094G9443G7019中,加G49G68CG790G175G74,G1069酸G1069酯G14807取G22次,每次5G80L,G8712G9032G14988G5190,G8543G11053G10301以G7092G8712G1069G18267G9354G16311并定量G17728G12239到10G80LG4493量瓶中,G1889用G7092G8712G1069G18267G12244G18334至G2063度,G6683匀,经G5190G10169G9400G13452过G9400,G5335G2447G2033G9400G9094,G12946G4506量取G9400G90941G80LG6365G2419G1811G14602G18287标G1946G7366G13459测定的G7053法测定G2572光度,计G12651生药G8712G9354G5627G5647酚酸的含量。1G174丹参叶片丹酚酸B含量测定1G174G171色G16901G7477G1226色G16901G7621G726G39G76G78G80G68G50G39G54C184G17G25250G80G805G173G80G15G8981G2172相G726甲G18267G16G1069G14108G160G1725G8G11979酸G708G220G72610G726G250G709,G8981速为1G80G79/G80G76G81,检测G8886长G72628G25G81G80G727G7621G9213G220。1G174G172对照品G9354G9094的制G3803取丹酚酸B对照品G22G80G74,置10G80G79G4493量瓶中,加G265G8甲G18267G17878量,G9354G16311,G1889用G265G8甲G18267定G4493至G2063度,G6683匀,即G5483。1G174G17G22供试品G9354G9094的制G3803取丹参样品粉G7423G134340G1725G74,G12946G4506G12228定,置G1867G3634G19193G5430瓶中,G12946G4506加G1849G265G8甲G18267G9354G909425G80L,G4506G3634,G12228定G18337量,加G9921G3250G89811H,G6930G1931,G1889G12228定G18337量,用G265G8甲G18267G9354G9094G15929G1817G1014G3845的G9354G2070量,G6683匀,过G9400,取G9400G9094,即G5483。1G175G174G13459G5627关G13007考G4531G12946G4506G12228取丹酚酸B对照品G9354G9094,分G2047G12946G4506G2572取2G22037G79,4G22037G79,8G22037G79,10G22037G79,12G22037G79G45114G22037G79分G2047进样,测定G4804面积,以G4804面积G60对进样量G59进行G13459G5627G3250G5414,G5483G3250G5414G7053G12255G60G322G22G2502G59G16G22522G174,G85G320G17G28G28G28G28G727表明丹酚酸B进样量在0G17G2504G173G74G16G22G17G2524G173G74范围内与G4804面积成G14403好的G13459G5627关G13007。1G175G175G12946G4506度试验取样品G9354G909420G79,G18337复进样G25次。G13479G7536丹酚酸BG4804面积G53G54G39G321G1725G8,G18337复G56274G14403好。1G175G17G25G12295定G5627试验取样品G9354G909410L,分G2047在制G3803后0G4512G4514G4518G45112G45124H测定,G13479G7536丹酚酸BG4804面积G53G54G39G321G1758G8,表明24H内G9354G9094G12295定。1G175G17G26G3250收G10587试验G5191行在G25G1233样品G9354G9094中加G1849丹酚酸B标G1946品G9354G90941G17G26G80G79,依法G6817作,测定,G13479G7536G5191均G3250收G10587为G288G170G8,G53G54G39G321G170G8。丹酚酸B的HPLCG3282G16277G32821。2G17G13479G7536与分G75242G171G993同浓度MJ对丹参地上部分G8712G9354G5627G5647酚酸含量的影响实验G13479G7536G7186G12046G708G16277表1G709,在所测试的范围内,丹参地上部分茎G451叶的G8712G9354G5627G5647酚酸含量随茉莉酸甲酯浓度的升高而增加,叶中的G8712G9354G5627G5647酚酸含量增加的G12255度G17751茎中增加的G3835,G3926茉莉酸甲酯浓度为510A89A84G48时,叶的G5647酚酸含量G17751对照增加G1114G252G705,茎中G5647酚酸含量G17751对照增加G1114G22G25G705G727茉莉酸甲酯浓度在510A89A81G7477G1226G991,叶的G5647酚酸含量G17751对照增加G1114100G705,茎中G5647酚酸含量G17751对照增加G111448G705。A91A92A93A94A95A96A97A98A99A100A101A102A103A104A105A106A107A108A109A99A110A111A112A113A114A115A116A117A118A119A92A120A121A122A122A119A123A124A125A122A126A127A125A128A129A116A118A130A131A116A128A125A118A131A123A116A123A131A132A123A125A128A124A119A128A124A131A128A124A133A119A129A124A119A134A129A116A128A132A118A119A116A130A119A129A125A122A135A136A137A138A139A136A140A139A137A141A139A142A143A143A144A139A145A136A146A147A148A149A150A151A152A153A154A155A156A157A158A159A160A161A162A163A164A165A166A167A168A169A170A168A171A170A168A172A173A174A175A176A177A170A159A160A161A162A163A164A165A166A167A168A178A170A168A171A170A168A172A173A174A175A176A177A170A179A180A181A182A183A184A185A180A182A180A186A181A182A187A181A185A180A182A180A183A188A183A189A186A180A190A191A192A182A192A181A185A180A182A180A192A181A182A193A186A185A180A182A180A186A194A183A189A186A180A195A196A192A182A184A197A185A180A182A180A192A192A182A186A187A185A180A182A180A192A198A183A189A186A180A195A199A184A182A180A193A185A180A182A180A181A192A182A200A193A185A180A182A180A181A201A183A189A186A180A195A202A183A182A181A184A185A180A182A180A181A192A182A193A197A185A180A182A180A1812G172G993同浓度MJ对丹参地上部分丹酚酸B含量的影响实验G13479G7536G708G32822G16G25,表2G709G7186G12046,在测试的范围内,丹参地上部分茎G451叶的丹酚酸B含量随MJ浓度的升高而增加,其中叶的丹酚酸B含量增加的G12255度G17751茎的G3835,G3926茉莉酸甲酯浓度为510A190A203G48时,叶的丹酚酸B含量G17751对照增加G11148G22G705,茎中丹酚酸B含量G17751对照增加G11142G28G705G727MJ浓度在510A190A204G48G7477G1226G991,叶的丹酚酸B含量G17751对照增加G111411G26G705,茎中丹酚酸B含量G17751对照增加G11145G26G705。5A205A206A207A208A209A210A211A212A213A214A215A216A217A218A205A219A220A221A222A207A206A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A230A227A231A232A221A227A233A225A231A221A234A227A234A221A235A211A221A233A236A237A238A239A240A241A239A242A243A243A244A239A245A246A205A247A207A248A214A179A215A216A217A218A205A219A220A221A222A207A247A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A236A237A238A239A240A241A239A242A243A243A244A239A245A246A230A227A226A249A231A250A230A179A205A251A207A248A214A188A215A216A217A218A205A219A220A221A222A207A251A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A236A237A238A239A240A241A239A242A243A243A244A239A245A246A230A227A226A249A231A250A230A188A205A252A207A248A214A194A215A216A217A218A205A219A220A221A222A207A252A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A236A237A238A239A240A241A239A242A243A243A244A239A245A246A230A227A226A249A231A250A230A1946A205A253A207A248A214A198A215A216A217A218A205A219A220A221A222A207A252A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A236A237A238A239A240A241A239A242A243A243A244A239A245A246A230A227A226A249A231A250A230A198A205A254A207A248A214A201A215A216A217A218A205A219A220A221A222A207A253A215A216A217A218A218A223A224A225A226A227A228A225A222A224A227A226A225A229A236A237A238A239A240A241A239A242A243A243A244A239A245A246A230A227A226A249A231A250A230A201A255A247A207A8A0A210A1A2A212A208A13A16A3A4A208A209A210A211A21A5A6A7A23A9A10A11A12A26A227A14A231A250A247A207A32A229A229A250A234A228A225A229A37A15A225A233SALVIANOLICACIDBA234A225A233A228A250A233A228A221A233A228A223A250A230A228A250A226A230A227A233A235A231A250A227A232A250A230A225A229A236A246A240A17A239A246A238A239A240A241A239A242A243A243A244A239A245A246A74A18A19A149A150A151A152A153A154A155A156A157A158A169A96A159A165A151A112A166A167A168A113A170A178A96A159A165A151A112A166A167A168A113A170A179A180A180A182A200A192A185A180A182A180A186A180A182A200A200A185A180A182A180A184A188A183A189A186A180A195A20A180A182A187A186A185A180A182A180A181A180A182A200A197A185A180A182A180A181A194A183A189A186A180A195A196A180A182A193A183A185A180A182A180A181A180A182A197A187A185A180A182A180A186A198A183A189A186A180A195A199A186A182A186A181A185A180A182A180A184A180A182A193A181A185A180A182A180A181A201A183A189A186A180A195A202A186A182A192A192A185A180A182A180A192A186A182A186A180A185A180A182A180A1812G17G22MJ在G993同时间内对丹参地上部分G8712G9354G5627G5647酚酸含量的影响以510A190A203G48的MJ喷施丹参叶面,在G993同时间检测叶和茎中的G5647酚酸含量,G13479G7536G16277G3282G26。实验G13479G7536表明,随处理时间的G5322长,丹参叶和茎中的G5647酚酸含量增加,其中叶中的G5647酚酸含量增加的G5145度G17751茎的G3835。在处理G262H和120H后,丹参叶中G5647酚酸含量分G2047G17751对照增加G1114G282G8和108G8,茎中G5647酚酸含量分G2047G17751对照增加G1114G220G8和44G8。7A22A24A25A27A28A29A30A22A25A28A28A31A33A25A24A25A22A34A35A36A38A39A40A41A42A43A44A45A46A47A48A114A49A50A51A168A65A170A205A69A52A53A70A54A55A56A23MJA212A208A13A16A3A4A57A209A210A21A5A23A6A7A220A221A222A207A69A32A229A229A250A234A228A225A229A37A15A221A233A235A221A229A229A250A224A250A233A228A228A224A250A227A228A250A235A228A221A226A250A230A225A233A230A227A231A232A221A227A233A225A231A221A234A227A234A221A235A221A233A228A223A250A230A228A250A226A230A227A233A235A231A250A227A232A250A230A225A229A236A246A240A17A239A246A238A239A240A241A239A242A243A243A244A239A245A2462G174MJ在G993同时间内对丹参地上部分丹酚酸B含量的影响以510A190A203G48的MJ喷施丹参叶面,在G993同时间分G2047检测茎叶中的丹酚酸B含量,G13479G7536G16277G32828。实验G13479G7536G7186G12046,随处理时间的G5322长,丹参叶和茎中的丹酚酸B含量增加,其中叶中的丹酚酸B含量增加的G5145度G1075G17751茎的G3835。在处理G262H和120H后,丹参叶中丹酚酸B含量分G2047G17751对照增加G111411G26G8和1G25G26G8,茎中丹酚酸B含量分G2047G17751对照增加G11145G26G8和8G25G8。A58A58A59A60A58A59A61A58A59A62A58A59A63A64A64A59A60A64A59A61A64A59A62A64A59A63A58A60A61A61A63A66A60A64A60A58A67A68A71A72A73A75A76A77A78A79A80A114A49A50A51A168A65A170A205A81A52A53A70A54A55A56A23MJA212A208A13A16A3A4A208A209A210A211A21A5A23A6A7A220A221A222A207A81A32A229A229A250A234A228A225A229A37A15A221A233A235A221A229A229A250A224A250A233A228A228A224A250A227A228A250A235A228A221A226A250A230A225A233A230A227A231A232A221A227A233A225A231A221A234A227A234A221A235A211A221A233A228A223A250A230A228A250A226A230A227A233A235A231A250A227A232A250A230A225A229A236A246A240A17A239A246A238A239A240A241A239A242A243A243A244A239A245A24682讨论G48G45对植G10301次生产G10301积累的作用与其生理G2163能G7389关,外施G48G45可以达到逆境的效应,G48G45G1075G7171植G10301G13466G14002响应G3822种环境胁迫的共同信号分子A82A83A84A191A84A85A86A87。本G20045研究表明,利用G48G45喷施丹参植G7678叶面,对丹参地上部分G5647酚酸和丹酚酸B的含量积累G18129G7389一定的促进作用,促进作用随G48G45浓度的增加和时间的G5322G13505而增G5390。药用植G10301的药效成分G3835G3822G7171次生代谢产G10301,植G10301次生产G10301的积累G7171与其生境G4506G2011相关的,一G1135逆境G7389利于次生产G10301的积累A82A85A85A87,G1186生G5589学的G16294度分G7524,G16780G3822次生产G10301G1075G7171植G10301G19462G5493逆境的植保G13044G12879G10301质。研究表明,G993同产地的丹参中的G14038G9354G5627和G8712G9354G5627成分的含量均G7389G7186著差异A88A85A89A90,表明丹参的次生产G10301含量受环境的调控G5627。在一G1135研究中利用G48G45作为诱导子诱导培养的G13466G14002积累G11458的产G10301,G3926G726G48G45能够诱导培养的肉苁蓉G13466G14002中苯G1069G18267甙G451红豆杉G13466G14002中的G13055杉G18267G12573G10301质含量的增加G15对于培养的丹参毛状G7693中丹参G18242含量的积累G1075G7389促进作用A88A91A84A85A204A84A85A92A90。G48G45可以G1186植G10301的气孔进G1849植G10301体G15在G13466G14002质中被酯酶G8712G16311为茉莉酸G12573小分子G15实现G19462G5493信号的远距离G1268导G15并能在植G10301间进行信号交G8981,在植G10301组织的G9094相和气相中自G11013的快速G12239G2172。本研究G13479G7536G7186G12046,G48G45对丹参叶的作用效应G17751茎的G7186著,可能G11013于G48G45直接喷施到叶G7389关,而在茎中存在距离效应和浓度效应,相关机制需进一步研究。丹参通常以G7693G1849药G15本G20045研究检测G1114丹参茎叶中G8712G9354G5627G5647酚酸和丹酚酸B的含量均G17751高,未被G48G45处理的G7477G1226G991,叶的丹酚酸B含量为0G17G25G22G8G15茎的丹酚酸B含量为0G17G25G25G8G727经G48G45处理后,茎叶的丹酚酸B含量G18129G7389G993同G12255度的提高,G48G45在510A93A94G16510A93A95的浓度范围内G15叶的丹酚酸B含量G17751对照增加G1114G220G17G26G8G1611G26G705,茎中丹酚酸B含量G17751对照增加G1114G22G705G165G26G705,对于外施G48G45对丹参G7693中G1039G16213药效成分的影响,将另作报道。因此,今后G7389望考虑G48G45在丹参生产中的应用问题,在丹参的种植及采收中,应注意地上部分的利用,同时G7389必G16213深G1849研究G48G45促进丹酚酸G12573药效成分积累的机制。参考文献1ZHG36G50G54G45G15ZHG36G49G42G42G60G15LIG56G39G15G72G87G68G79G17G36G71G89G68G81G70G72G86G76G81G85G72G86G72G68G85G70HG82G73G83HG68G85G80G68G70G82G79G82G74G76G70G68G79G68G70G87G76G89G76G87G76G72G86G68G81G71G69G76G82G86G92G81G87HG72G86G76G86G83G68G87HG90G68G92G82G73G90G68G87G72G85G86G82G79G88G69G79G72G83HG72G81G82G79G76G70G70G82G80G83G82G88G81G71G86G82G73SALVIAMILTIORRHIZAG45G17CHG76G81G55G85G68G71G76G87HG72G85G69G39G85G88G74G869G708中G14621药G709,2004,G225G708G22G709G726G2241G16G2244G172G39G56G42H,ZHG36G49G42G45G55G17G55HG72G86G87G88G71G92G85G72G89G76G72G90G82G73G86G68G79G89G76G68G81G82G79G76G70G68G70G76G71G86G73G85G82G80G90G68G87G72G85G86G82G79G88G69G79G72G68G70G87G76G89G72G76G81G74G85G72G71G76G72G81G87G86G76G81SALVIAMILTIORRHIZAG39G56G42H,ZHG36G49G42G45G55G17G45G17BG68G86G76G70G48G72G71G76G70G68G79G54G70G76G72G81G70G72G86G68G81G71CG79G76G81G76G70G86G708基础G2319学与临床G709,2000,2510G1614G17G22ZHG50G56L,G49IEG45HG17G55HG72G86G87G88G71G92G85G72G89G76G72G90G82G73G86G68G79G89G76G68G81G82G79G76G70G68G70G76G71BG17G45G17PHG68G85G80G68G70G92G82G73G58G72G86G87CHG76G81G68G708西部药学G709,200G26,4G7084G709G72621G26G16220G174ZHG50G56FQ,HG56G36G49G42G54G53,G58G36G49G42G55G17G72G87G68G79G17PG85G72G79G76G80G76G81G68G85G92G86G87G88G71G92G82G81G70HG72G80G76G70G68G79G70G82G80G83G82G86G76G87G76G82G81G86G82G73G79G72G68G89G72G86G82G73G54G68G79G89G76G68G48G76G79G87G76G82G85G85HG76G93G68BG74G72G17G45G17G45G82G88G85G81G68G79G82G73G54HG68G81G39G82G81G74G56G81G76G89G72G85G86G76G87G92G82G73G55CG48G708山东G3835学学报G709G17200G26,G221G708G25G709504G1650G25G175LIZG42,G54HIG45G60,ZHG36G49G42ZHG17CG82G80G83G68G85G68G87G76G89G72G68G81G71G68G81G68G79G92G86G76G86G82G73G86G68G79G89G76G68G81G82G79G76G70G68G70G76G71BG76G81G39G68G81G86HG72G81G79G72G68G89G72G86G68G81G71G86G87G72G80G86G69G92HPLCG45G17G45G82G88G85G81G68G79G82G73PHG68G85G80G68G70G72G88G87G76G70G68G79PG85G68G70G87G76G70G72G708药学实践杂志G709,200G26,25G7085G709G726G220G26G16G220G28G17G25G54G70G82G87G87G15IG17G48G17G39G68G87G15G45G17FG17G54G68G79G76G70G92G79G76G70G68G70G76G71G68G81G71HG92G71G85G82G74G72G81G83G72G85G82G91G76G71G72G76G81G68G69G76G82G87G76G70G86G87G85G72G86G86G86G76G74G81G68G79G76G81G74G76G81G83G79G68G81G87G86G17PHG92G87G82G81G16G36G81G81G68G79G72G86G53G72G76G17

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