作物学报 ›› 2021, Vol. 47 ›› Issue (10): 1941-1952.doi: 10.3724/SP.J.1006.2021.04227
何潇1,2(
), 刘兴3, 辛正琦1,2, 谢海艳1,2, 辛余凤1,2, 吴能表1,2,*(
)
HE Xiao1,2(
), LIU Xing3, XIN Zheng-Qi1,2, XIE Hai-Yan1,2, XIN Yu-Feng1,2, WU Neng-Biao1,2,*(
)
摘要:
本研究以半夏为研究对象, 基于其转录组数据克隆获得1个苯丙氨酸解氨酶基因, 命名为PtPAL, 通过DNAMAN、MEGA等生物信息学软件进行序列结构与系统进化分析表明, 该基因核酸序列长度为2289 bp, 编码762个氨基酸, 终止密码子为TAA, PtPAL与单子叶植物百合PAL相似度达78%, 具有PAL-HAL、PLN02457、phe_am_lyase、Lyase_aromatic及HutH结构域, 属于苯丙氨酸解氨酶家族成员(Lyase_I_like Superfamily)。半夏PtPAL与单子叶植物百合、菠萝和油棕亲缘关系较近, 归于单子叶植物。采用实时荧光定量PCR分析PtPAL在不同组织间的表达情况表明, PtPAL基因在叶中表达量最高, 其次是块茎和根, 花中表达量最低。通过对半夏PtPAL基因进行功能表达分析发现, PtPAL重组蛋白可以高效催化L-Phe生成t-CA, 且催化反应最适pH与温度分别为9.0、70℃; PtPAL的Km、Vmax、Kcat和Kcat/Km分别为0.89 mmol L-1、63.96 nKat mg-1、6.56 s-1和7.37×103 s-1 M-1。进一步探究金属离子对PtPAL酶活性的影响表明, Ba2+显著增强了PtPAL酶活性, Mn2+、Co2+、Cu2+及Zn2+抑制了PtPAL酶活性。本研究为进一步研究PtPAL的功能特点及半夏苯丙胺类生物碱代谢途径奠定基础。
| [1] | 刘永红, 郭建宏, 刘文婷, 梁宗锁. 药用植物半夏生物碱类成分研究进展. 西北农林科技大学学报(自然科学版), 2015, 43(9):171-177. |
| Liu Y H, Guo J H, Liu W T, Liang Z S. Research progress on alkaloids from Pinellia ternata. J Northwest A&F Univ(Nat Sci Edn), 2015, 43(9):171-177 (in Chinese with English abstract). | |
| [2] | 郑萍, 戴贵东, 李汉青. 麻黄碱及伪麻黄碱药理作用研究进展. 宁夏医学杂志, 2002, 24(2):126-127. |
| Zheng P, Dai G D, Li H Q. Research progress on the pharmacological effects of ephedrine and pseudoephedrine. Ningxia Med J, 2002, 24(2):126-127 (in Chinese). | |
| [3] | 高晔珩, 党力纳. 麻黄研究进展. 陕西中医学院学报, 2003, (6):60-61. |
| Gao Y H, Dang L N. Research progress of Ephedra. J Shaanxi Coll Trad Chin Med, 2003, (6):60-61 (in Chinese). | |
| [4] | 杨顺楷, 杨亚力, 杨维力. 苯丙氨酸解氨酶(PAL, EC 4.3.1.5)反应机理研究新进展. 生物加工过程, 2004, 2(4):1-5. |
| Yang S K, Yang Y L, Yang W L. Recent advances in the research of mechanism of the phenylalanine ammonia-lyase (PAL, EC 4.3.1.5) reaction. Chin J Bioproc Eng, 2004, 2(4):1-5 (in Chinese with English abstract). | |
| [5] | 刘千子, 宋文琦, 张世华, 张雪梅, 程卓鑫. 菘蓝中苯丙氨酸解氨酶家族基因的鉴定及分析. 中国校医, 2019, 33(6):396. |
| Liu Q Z, Song W Q, Zhang S H, Zhang X M, Cheng Z X. Identification and analysis of phenylalanine ammonia-lyase family genes in Iisatis indigotica Fortune. Chin J School Doctor, 2019, 33(6):396 (in Chinese with English abstract). | |
| [6] | Appert C, Logemann E, Hahlbrock K, Schmid J, Amrhein N. Structural and catalytic properties of the four phenylalanine ammonia-lyase isoenzymes from parsley (Petroselinum crispum Nym). FEBS J, 2010, 225:491-499. |
| [7] |
Shi R, Shuford C M, Wang J P, Sun Y H, Yang Z C, Chen H C, Anukit S T, Li Q Z, Liu J, Muddiman D C, Sederoff R R, Chiang V L. Regulation of phenylalanine ammonia-lyase (PAL) gene family in wood forming tissue of Populus trichocarpa. Planta, 2013, 238:487-497.
doi: 10.1007/s00425-013-1905-1 |
| [8] |
Song J, Wang Z Z. Molecular cloning expression and characterization of a phenylalanine ammonia-lyase gene (SmPAL1) from Salvia miltiorrhiza. Mol Biol Rep, 2009, 36:939-952.
doi: 10.1007/s11033-008-9266-8 pmid: 18454352 |
| [9] |
Rosler J. Maize phenylalanine ammonia-lyase has tyrosine ammonia-lyase activity. Plant Physiol, 1997, 113:175-179.
doi: 10.1104/pp.113.1.175 |
| [10] |
Yu H N, Liu X Y, Gao S, Han X J, Cheng A X, Lou H X. Molecular cloning and functional characterization of a phenylalanine ammonia-lyase from liverwort Plagiochasma appendiculatum. Plant Cell Tissue Organ Cult, 2014, 117:265-277.
doi: 10.1007/s11240-014-0438-z |
| [11] | 王燕, 刘卫红, 杜何为, 许峰, 程水源. 底物、末端产物对离体银杏叶苯丙氨酸解氨酶活性的影响. 果树学报, 2004, 21:443-446. |
| Wang Y, Liu W H, Du H W, Xu F, Cheng S Y. Effects of substrate and terminal products on the phenylalanine ammonia-lyse (PAL) activities in in vitro leaves of Ginkgo biloba. J Fruit Sci, 2004, 21:443-446 (in Chinese with English abstract). | |
| [12] | 江力, 袁怀波, 周强, 江汉湖. 底物和产物对鲜切山药苯丙氨酸解氨酶活性的影响. 食品科学, 2007, 28(10):35-37. |
| Jiang L, Yuan H P, Zhou Q, Jiang H H. Effects of substrate and products on activity of phenylalanine ammonia-lyase (PAL) in fresh-cut Dioscorea batatas. Food Sci, 2007, 28(10):35-37 (in Chinese with English abstract). | |
| [13] | 贺字典, 高增贵, 庄敬华, 陈捷, 郑俊强, 唐树戈. 玉米丝黑穗病菌对寄主防御相关酶活性的影响. 玉米科学, 2006, 14(2):150-151. |
| He Z D, Gao Z G, Zhuang J H, Chen J, Zheng J Q, Tang S G. Effect of maize head smut pathology (Sphacelotheca reiliana) on the major defensive enzymes of Host. J Maize Sci, 2006, 14(2):150-151 (in Chinese with English abstract). | |
| [14] | 刘佳. 美洲南瓜苯丙氨酸解氨酶(PAL)基因克隆、表达分析及品种抗灰霉病研究. 甘肃农业大学博士学位论文, 甘肃兰州, 2013. |
| Liu J. Cloning and Expression Analysis of Phenylalanine Ammonialyase gene (PAL) from Cucurbita pepo and the Study on Varieties Resistance to Botrytis Cinerea. PhD Dissertation of Gansu Agricultural University, Lanzhou, Gansu, China, 2013 (in Chinese with English abstract). | |
| [15] |
Muñoz-Espinoza V A, Lopez-Climent M F, Casaretto J A, Gomez-Cadenas A. Water stress responses of tomato mutants impaired in hormone biosynthesis reveal abscisic acid, jasmonic acid and salicylic acid interactions. Front Plant Sci, 2015, 6:997.
doi: 10.3389/fpls.2015.00997 pmid: 26635826 |
| [16] | Ma R F, Liu Q Z, Xiao Y, Zhang L, Li Q, Yin J, Chen W S. The phenylalanine ammonia-lyase gene family in Iisatis indigotica Fortune.: molecular cloning, characterization, and expression analysis. Chin J Nat Med, 2016, 14:801-812. |
| [17] | 罗才林, 李林, 陈立, 邓琴, 张俊, 马璇, 徐德林, 钱刚. 白及苯丙氨酸解氨酶基因的克隆、序列特征及激素响应表达分析. 中草药, 2019, 50:694-701. |
| Luo C L, Li L, Chen L, Deng Q, Zhang J, Ma X, Xu D L, Qian G. Cloning, sequence characterization, expression profiling of hormones response of phenylalanine ammonia-lyase gene in Bletilla striata. Chin Trad Herbal Drugs, 2019, 50:694-701 (in Chinese with English abstract). | |
| [18] |
Rother D, Poppe L, Morlock G, Viergutz S, Retey J. An active site homology model of phenylalanine ammonia-lyase from P. crispum. Eur J Biochem, 2002, 269:3065-3075.
doi: 10.1046/j.1432-1033.2002.02984.x |
| [19] |
Ritter H. Structural basis for the entrance into the phenylpropanoid metabolism catalyzed by phenylalanine ammonia-lyase. Plant Cell Online, 2004, 16:3426-3436.
doi: 10.1105/tpc.104.025288 |
| [20] |
Okada T, Mikage M, Sekita S. Molecular characterization of the phenylalanine ammonia-lyase from Ephedra sinica. Biol Pharm Bull, 2008, 31:2194-2199.
doi: 10.1248/bpb.31.2194 |
| [21] |
Hsieh L S, Hsieh Y L, Yeh C S, Cheng C Y, Yang C C, Lee P D. Molecular characterization of a phenylalanine ammonia-lyase gene (BoPAL1) from Bambusa oldhamii. Mol Biol Rep, 2011, 38:283-290.
doi: 10.1007/s11033-010-0106-2 |
| [22] |
Hu G S, Jia J M, Hur Y J, Chung Y S, Lee J H, Yun D J, Chung W S, Yi G H, Kim T H, Kim D H. Molecular characterization of phenylalanine ammonia-lyase gene from Cistanche deserticola. Mol Biol Rep, 2011, 38:3741-3750.
doi: 10.1007/s11033-010-0489-0 |
| [23] |
Zhu L, Cui W, Fang Y, Liu Y, Gao X, Zhou Z. Cloning, expression and characterization of phenylalanine ammonia-lyase from Rhodotorula glutinis. Biotechnol Lett, 2013, 35:751-756.
doi: 10.1007/s10529-013-1140-7 |
| [24] |
Ma W L, Wu M, Wu Y, Ren Z, Zhong Y. Cloning and characterization of a phenylalanine ammonia-lyase gene from Rhus chinensis. Plant Cell Rep, 2013, 32:1179-1190.
doi: 10.1007/s00299-013-1413-6 |
| [25] | 周修任. 优质中草药——半夏的人工栽培技术与市场前景. 科学种养, 2020, (8):56-59. |
| Zhou X R. High-quality Chinese herbal medicine—Pinellia ternate’s artificial cultivation technology and market prospects. Sci Plant Breed, 2020, (8):56-59 (in Chinese). | |
| [26] | 杜欣谊. 苯丙氨酸解氨酶的研究进展. 现代化农业, 2016, (7):24-26. |
| Du X Y. Research progress of phenylalanine ammonia lyase. Modern Agric, 2016, (7):24-26 (in Chinese). | |
| [27] |
Chen M J, Vijaykumar V, Lu B W, Xia B, Li N. Cis- and trans-cinnamic acids have different effects on the catalytic properties of Arabidopsis phenylalanine ammonia lyases PAL1, PAL2 and PAL4. J Integr Plant Biol, 2005, 47:67-75.
doi: 10.1111/jipb.2005.47.issue-1 |
| [28] | 欧阳光察, 应初衍, 沃绍根, 薛应龙. 植物苯丙氨酸解氨酶的研究: VI. 水稻、小麦PAL的纯化及基本特性. 植物生理学报, 1985, 11:204-214. |
| Ou-Yang G C, Ying C Y, Wo S G, Xue Y L. Studies on plant phenylalanine ammonia-lyase (PAL): VI. Purification and some properties of PAL from etiolated seedings of rice (Oryza sativa) and wheat(Triticum aestivum). Physiol Mol Biol Pants, 1985, 11:204-214 (in Chinese with English abstract). | |
| [29] | 卢涛, 赵德立, 夏凯, 杨亚力, 杨顺楷, 刘成君. 红酵母苯丙氨酸解氨酶的分离纯化及性质研究. 四川大学学报(自然科学版), 2004, 41:865-868. |
| Lu T, Zhao D L, Xia K, Yang Y L, Yang S K, Liu C J. Purification and properties of phenylalanine ammonia-lyase from Rhodotorula sp. A1401. J Sichuan Univ (Nat Sci Edn), 2004, 41:865-868 (in Chinese with English abstract). | |
| [30] | 田晓明. 油茶PAL基因的全长克隆及其在原核和真核生物中的表达. 中南林业科技大学硕士学位论文, 湖南长沙, 2010. |
| Tian X M. Phenylalanine Ammonia-lyase Gene from Camellia oleifera Full-length Gene and Expression in Prokaryotic and Eukaryotic. MS Thesis of Central South University of Forestry & Technology, Changsha, Hunan, China, 2010 (in Chinese with English abstract). | |
| [31] |
Hu Y S, Zhang L, Di P, Chen W S. Cloning and induction of phenylalanine ammonia-lyase gene fromSalvia miltiorrhiza and its effect on hydrophilic phenolic acids levels. Chin J Nat Med, 2009, 7:449-457.
doi: 10.3724/SP.J.1009.2009.00449 |
| [32] | 刘俊频, 李胜立, 袁元, 郑玲辉, 全雪丽, 吴松权. 膜荚黄芪3个苯丙氨酸解氨酶基因的克隆与表达分析. 中草药, 2019, 50:1669-1675. |
| Liu J P, Li S L, Yuan Y, Zheng L H, Quan X L, Wu S Q. Cloning and expression of three PAL genes in Astragalus membranaceus. Chin Trad Herbal Drugs, 2019, 50:1669-1675 (in Chinese with English abstract). | |
| [33] | Lee B K, Park M R, Srinivas B, Chun J C, Kwon I S, Chung M, Yoo N H. Induction of phenylalanine ammonia-lyase gene expression by paraquat and stress-related hormones in Rehmannia glutinosa. Mol Cell, 2003, 16:34-39. |
| [34] |
Zhu Q, Dabi T, Beeche A, Yamamoto R, Lawton M A, Lamb C. Cloning and properties of a rice gene encoding phenylalanine ammonia-lyase. Plant Mol Biol, 1995, 29:535-550.
pmid: 8534851 |
| [1] | 左同鸿, 张贺翠, 曾静, 朱利泉. 甘蓝自交不亲和相关基因BoPUB3L的克隆与表达分析[J]. 作物学报, 2026, 52(6): 1698-1710. |
| [2] | 胡赵, 钱润, 谢丰璞, 应素平. 水稻SPX基因家族鉴定及响应磷处理的表达分析[J]. 作物学报, 2026, 52(6): 1902-1912. |
| [3] | 田立涛, 丁宁, 王树林, 齐恩芳, 张荣, 王蕊蕊, 马利雯, 李建武, 杨江伟. 马铃薯Argonaute基因家族鉴定及晚疫病诱导表达分析[J]. 作物学报, 2026, 52(4): 1116-1126. |
| [4] | 杨宗桃, 杨婷, 王禹童, 艾静, 李燕烨, 刘家勇, 邓军, 赵勇, 张跃彬. 甘蔗CLC基因家族鉴定与表达分析[J]. 作物学报, 2026, 52(3): 722-734. |
| [5] | 孟成, 王哲. 玉米ZmPFK基因家族全基因组鉴定及响应胁迫表达分析[J]. 作物学报, 2026, 52(3): 764-779. |
| [6] | 张力岚, 杨军, 王让剑. 基于WGCNA发掘茶树糖苷类香气前体含量性状相关的候选基因[J]. 作物学报, 2026, 52(2): 494-513. |
| [7] | 余开航, 周洪斌, 罗亮扎, 王玫郦, 姜瑞梅, 董陈文华, 李仕金, 毛孝强, 陈升位. 大麦亮氨酸富集重复型类受体激酶基因HvLRR-RLK-510的克隆和表达分析[J]. 作物学报, 2026, 52(2): 421-432. |
| [8] | 薛晓菲, 戴云静, 李熙林, 丁艳艳, 王翔, 雷长英, 韩焕勇, 贺道华. 陆地棉杜松烯合酶基因GhCDN10的特征及其在棉酚合成中功能分析[J]. 作物学报, 2025, 51(8): 2060-2076. |
| [9] | 王彬, 蒙姜宇, 邱浩良, 贺亚军, 钱伟. 甘蓝型油菜BnaDUF579基因家族的鉴定与表达模式分析[J]. 作物学报, 2025, 51(8): 2100-2110. |
| [10] | 郭腾达, 崔梦杰, 陈琳杰, 韩锁义, 郭敬坤, 吴晨迪, 付留洋, 黄冰艳, 董文召, 张新友. 花生磷脂酰肌醇转运蛋白基因AhSFH的克隆及其响应黄曲霉菌侵染的表达特征分析[J]. 作物学报, 2025, 51(6): 1489-1500. |
| [11] | 潘炬忠, 韦萍, 朱德平, 邵胜雪, 陈珊珊, 韦雅倩, 高维维. 水稻转录因子OsERF104的克隆和功能研究[J]. 作物学报, 2025, 51(4): 900-913. |
| [12] | 王林, 陈晓雨, 张文梦龙, 汪思琦, 程冰云, 程靖秋, 潘锐, 张文英. 大麦HvMYB2分子特性及响应干旱胁迫的功能分析[J]. 作物学报, 2025, 51(4): 873-887. |
| [13] | 张正康, 苏延红, 阮孙美, 张敏, 张攀, 张慧, 曾千春, 罗琼. 疣粒野生稻中OgXa13的克隆和功能研究[J]. 作物学报, 2025, 51(2): 334-346. |
| [14] | 王玉娇, 王永乐, 添长久, 郁春旺, 吕佳斌, 朱加保. 薏苡VQ4基因的克隆及耐盐性初步分析[J]. 作物学报, 2025, 51(12): 3198-3210. |
| [15] | 祁稼民, 许春苗, 肖斌. 马铃薯TIFY基因家族的全基因组鉴定及表达分析[J]. 作物学报, 2024, 50(9): 2297-2309. |
|
||