数字农科院2.0

Functional analysis of polyphenol oxidase 1 gene in common wheat

文献类型: 外文期刊

作者: Zhai, Shengnan;Liu, Hang;Xia, Xianchun;Li, Haosheng;Cao, Xinyou;He, Zhonghu;Ma, Wujun;Liu, Cheng;Song, Jianmin;Liu, Aifeng;Zhang, Jingjuan;Liu, Jianjun

作者机构:

关键词: gene function;genetic regulation;RNAi;PPO activity;TILLING

期刊名称: FRONTIERS IN PLANT SCIENCE

ISSN: 1664-462X

年卷期: 2023 年 14 卷

页码:

收录情况: SCIE(2023版)

摘要: Polyphenol oxidase (PPO) activity is a major cause of the undesirable brown color of wheat-based products. Ppo1, a major gene for PPO activity, was cloned based on sequence homology in previous studies; however, its function and regulation mechanism remain unclear. In this study, the function and genetic regulation of Ppo1 were analyzed using RNA interference (RNAi) and Targeting Induced Local Lesions IN Genomes (TILLING) technology, and superior mutants were identified. Compared with the control, the level of Ppo1 transcript in RNAi transgenic lines was drastically decreased by 15.5%-60.9% during grain development, and PPO activity was significantly reduced by 12.9%-20.4%, confirming the role of Ppo1 in PPO activity. Thirty-two Ppo1 mutants were identified in the ethyl methanesulfonate (EMS)-mutagenized population, including eight missense mutations, 16 synonymous mutations, and eight intron mutations. The expression of Ppo1 was reduced significantly by 6.7%-37.1% and 10.1%-54.4% in mutants M092141 (G311S) and M091098 (G299R), respectively, in which PPO activity was decreased by 29.7% and 28.8%, respectively, indicating that mutation sites of two mutants have important effects on PPO1 function. Sequence and structure analysis revealed that the two sites were highly conserved among 74 plant species, where the frequency of glycine was 94.6% and 100%, respectively, and adjacent to the entrance of the hydrophobic pocket of the active site. The M092141 and M091098 mutants can be used as important germplasms to develop wheat cultivars with low grain PPO activity. This study provided important insights into the molecular mechanism of Ppo1 and the genetic improvement of wheat PPO activity.

分类号:

  • 相关文献

[1]Genetic analysis of phytoene synthase 1 (Psy1) gene function and regulation in common wheat. Shengnan Zhai, Genying Li, Youwei Sun, Jianmin Song, Jihu Li, Guoqi Song, Yulian Li, Hongqing Ling, Zhonghu He and Xianchun Xia. 2016

[2]Development of two multiplex PCR assays targeting improvement of bread-making and noodle qualities in common wheat. Zhang, X. K.,Liu, L.,He, Z. H.,Sun, D. J.,He, X. Y.,Xu, Z. H.,Zhang, P. P.,Chen, F.,Xia, X. C.,Zhang, X. K.,He, Z. H.. 2008

[3]Unraveling crop enzymatic browning through integrated omics. Wang, Chunkai,Meng, Lin,Zhang, Guochao,Yang, Xiujun,Pang, Bingwen,Cheng, Junjie,He, Bing,Sun, Fushan. 2024

[4]烟草TILLING技术体系的建立及NtPhyB基因的筛选. 宗鹏,李凤霞,王倩,刘贯山,龚达平,陈雅琼,孙玉合. 2014

[5]TILLING技术的发展及其在不同植物中的应用. 闫智慧,郭会君,徐荣旗,刘录祥. 2014

[6]小麦TILLING分析中CELⅠ酶切及PCR反应体系的优化. 潘娜,郭会君,赵世荣,赵林姝,古佳玉,李军辉,王广金,徐荣旗,刘录祥. 2012

[7]TILLING技术在植物功能基因组及育种中的应用(英文). 汪得凯,孙宗修,陶跃之. 2006

[8]TILLING 技术的发展及其在不同植物中的应用. 闫智慧,郭会君,徐荣旗,刘录祥. 2014

[9]小麦TILLING分析中CEL I酶切及PCR反应体系的优化. 潘娜,郭会君,赵世荣,赵林姝,古佳玉,李军辉,王广金,徐荣旗,刘录祥. 2012

[10]基于TILLING技术筛选大豆GmAGL15基因突变体. 孙彦波,李忠峰,王俊,邱丽娟. 2019

[11]TILLING技术在作物突变研究中的应用现状与前景. 潘娜,郭会君,赵世荣,王广金,刘录祥. 2011

[12]EMS诱发小麦京411突变群体构建及Wx-A1基因突变体鉴定. 李晓,郭会君,闫智慧,赵世荣,赵林姝,古佳玉,谢永盾,刘录祥. 2016

[13]小麦类胡萝卜素合成途径关键基因Lcye功能分析. 翟胜男,郭军,刘成,李豪圣,宋健民,刘爱峰,曹新有,程敦公,李法计,何中虎,夏先春,刘建军. 2020

[14]Do-it-yourself Molecular Biology for Plant Breeding: Low-cost Tools for Developing Countries. Huynh, O. A.,Hofinger, B. J.,Jankowicz-Cieslak, J.,Forster, B. P.,Till, B. J.,Beshir, M. M.,Guo, H.. 2013

[15]Identification of novel alleles induced by EMS-mutagenesis in key genes of kernel hardness and starch biosynthesis in wheat by TILLING. Li, Wenjie,Zhao, Baocun,Li, Wenjie,Guo, Huijun,Xie, Yongdun,Zhao, Linshu,Gu, Jiayu,Zhao, Shirong,Liu, Luxiang,Wang, Yongbin,Wang, Guangjin.

[16]Stress-induced higher vein density in the C-3-C-4 intermediate Moricandia suffruticosa under drought and heat stress. Zhu, Xiaoyi,Liu, Jun,Sun, Xingchao,Kuang, Chen,Liu, Hongfang,Zhang, Liang,Zheng, Qiwei,Liu, Jing,Li, Jun,Wang, Hanzhong,Hua, Wei. 2022

[17]A reference-guided TILLING by amplicon-sequencing platform supports forward and reverse genetics in barley. Congcong Jiang,Miaomiao Lei,Yu Guo,Guangqi Gao,Lijie Shi,Yanlong Jin,Yu Cai,Axel Himmelbach,Shenghui Zhou,Qiang He,Xuefeng Yao,Jinhong Kan,Georg Haberer,Fengying Duan,Lihui Li,Jun Liu,Jing Zhang,Manuel Spannagl,Chunming Liu,Nils Stein. 2022

[18]Tilling In Cereal Crops For Allele Expansion And Mutation Detection By Using Modern Sequencing Technologies. Irshad, Ahsan,郭会君,,赵林姝,,刘录祥. 2020

[19]A novel type of malformed floral organs mutant in barley was conferred by loss-of-function mutations of the MADS-box gene HvAGL6. Sun, Man,Jiang, Congcong,Gao, Guangqi,An, Chaodan,Wu, Wenxue,Kan, Jinhong,Zhang, Jinpeng,Li, Lihui,Yang, Ping. 2024

[20]Application and Progress of Genomics in Deciphering the Genetic Regulation Mechanisms of Plant Secondary Metabolites. Chong Liu,Hang Xu,Zheng Li,Yukun Wang,Siwei Qiao,Hao Zhang. 2025

作者其他论文 更多>>