HE Hanjie,HUANG Xiaoxi,ZHANG Dangquan,et al.Effect of 6-Benzylaminopurine on Growth and Antioxidase Activities in Hairy Root Cultures of Pueraria phaseoloides[J].Northern Horticulture,2016,40(14):156-159.[doi:10.11937/bfyy.201614039]
细胞分裂素6-BA对三裂叶野葛毛状根生长和抗氧化酶活性的影响
- Title:
- Effect of 6-Benzylaminopurine on Growth and Antioxidase Activities in Hairy Root Cultures of Pueraria phaseoloides
- Keywords:
- Pueraria phaseoloides; hairy roots; 6-Benzylaminopurine; isoflavone compounds; soluble protein; antioxidase
- 文献标志码:
- A
- 摘要:
- 以三裂叶野葛毛状根为试材,研究了不同浓度6-BA对三裂叶野葛毛状根生长、异黄酮化合物及可溶性蛋白质含量和抗氧化酶活性的影响。结果表明:6-BA抑制三裂叶野葛毛状根的生长,降低其鲜样质量,且抑制作用与6-BA浓度成正比例关系,同时能提高毛状根培养物中异黄酮化合物的含量;但降低其毛状根培养物中可溶性蛋白质含量和超氧化物歧化酶(superoxide dismutase,SOD)活性水平,提高过氧化物酶(peroxidase,POD)活性水平,这表明6-BA可能通过调节三裂叶野葛毛状根的抗氧化酶活性进而调控其生长和异黄酮化合物的积累。
- Abstract:
- Using the hairy roots of Pueraria phaseoloides cultured in solid mediums as an experiment material,the effect of 6-Benzylaminopurine (6-BA) on growth,contents of isoflavone compounds and soluble protein and antioxidase activities was studied.The results showed that plant growth regulator 6-BA inhibited the growth of P.phaseoloides hairy roots,reduced the biomass of fresh weight of hairy roots compared with control,and the inhibition was in proportion to the concentration of 6-BA.Furthermore,6-BA promoted synthesis and accumulation of isoflavone compounds in hairy root cultures.Compared with control,6-BA decreased the contents of soluble protein and activities of superoxide dismutase in hairy root cultures,but enhanced the activities of peroxidase.These results indicated that plant growth regulator 6-BA regulated the growth and accumulation of isoflavone compounds through regulating antioxidase activities of P.phaseoloides hairy roots.
参考文献/References:
[1]吴德邻,陈忠毅,黄向旭.中国葛属(Pueraria DC.)的研究[J].热带亚热带植物学报,1994,2(3):12-21. [2]何含杰,施和平,王震.6-BA和硝酸银对三裂叶野葛毛状根生长及异黄酮含量的影响[J].植物生理学报,2015,51(7):1055-1060. [3]BOUE A M,WIESE T E,NEHLS S,et al.Evaluation of the estrogenic effects of legume extracts containing phytoestrogens[J].J Agric Food Chem,2003,51(8):2193-2199. [4]房翠萍,王维婷,王志芬,等.植物激素对丹参毛状根生长和丹参酮生物合成的影响[J].中药材,2011,34(5):661-664. [5]何含杰,施和平.6-苄氨基腺嘌呤和萘乙酸对三裂叶野葛毛状根生长和异黄酮含量的影响[J].生物工程学报,2014,30(10):1573-1585. [6]施和平,齐莹,张悦,等.黄瓜毛状根的诱导及细胞分裂素6-BA对其生长和形态的影响[J].生物工程学报,2006,22(3):514-520. [7]孙晶,高珂,王玲,等.不同培养基、外源激素和真菌诱导子对北柴胡毛状根生长及柴胡皂苷含量的影响[J].生物技术通讯,2015,26(4):546-550. [8]施和平,权宏,SPIROS K.三裂叶野葛毛状根的诱导及其固体培养与液体培养[J].生物工程学报,2003,19(3):307-311. [9]BRADFORD M M.A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding[J].Anal Biochem,1976,72:248-252. [10]BEAUCHAMP C,FRIDOVICH I.Superoxide dismutase:improved assays and an assay applicable to acrylamide gels[J].Anal Biochem,1971,44(1):276-287. [11]施和平,曾宝强,王云灵,等.镉及其与钙组合对褐脉少花龙葵毛状根生长、抗氧化酶活性和吸收镉的影响[J].生物工程学报,2010,26(2):147-158. [12]于荣敏,马娜,严春艳,等.外源激素对何首乌毛状根生长及蒽醌类成分生物合成的影响[J].生物工程学报,2006,22(4):619-623. [13]PUTALUN W,PRASAMSIWAMAI P,TANAKA H,et al.Solasodine glycoside production by hairy root cultures of Physalis minima Linn.[J].Biotechnol Lett,2004,26(7):545-548. [14]周倩耘,丁家宜,刘峻,等.植物激素对人参毛状根生长和皂甙含量的影响[J].植物资源与环境学报,2003,12(1):26-28. [15]齐香君,郭乐康.外源激素对黄芩毛状根生长及黄芩苷合成的影响[J].陕西科技大学学报,2009,27(2):48-50. [16]MITTLER R,VANDERAUWERA S,GOLLERY M,et al.Reactive oxygen gene network of plants[J].Trends Plant Sci,2004,9(10):490-498. [17]沈法富,喻树迅,范术丽,等.棉花叶片衰老过程中激素和膜脂过氧化的关系[J].植物生理与分子生物学学报,2003,29(6):589-592.
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备注/Memo
第一作者简介:何含杰(1979-),男,博士,讲师,研究方向为植物生理和植物分子生物学。E-mail:hejie224@163.com.基金项目:湖南省自然科学基金资助项目(2015JJ3178);长沙市科技攻关资金专项资助项目(K1406011-21);中南林业科技大学青年基金资助项目(QJ2012006B)。