数字农科院2.0

Natural variations in the promoter of ZmDeSI2 encoding a deSUMOylating isopeptidase controls kernel methionine content in maize

文献类型: 外文期刊

作者: Xin Lu;Yuhong Lei;Zhennan Xu;Zixiang Cheng;Meng Liu;Yuxin Tai;Xiaohua Han;Zhuanfang Hao;Mingshun Li;Degui Zhang;Hongjun Yong;Jienan Han;Zhenhua Wang;Wen Xue Li;Jianfeng Weng;Zhiqiang Zhou;Xinhai Li

作者机构:

关键词: deSUMOylation;maize;methionine;natural variation;sulfite reductase

期刊名称: Molecular Plant

ISSN: 1674-2052

年卷期: 2025 年 18 卷 5 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版)

摘要: Improving the methionine (Met) content in maize kernels is of key importance to the animal feed industry; however, the genetic and molecular mechanisms governing maize kernel Met content remain largely unexplored. In this study, we leveraged a panel consisting of 348 diverse inbred maize lines to explore the genetic and molecular mechanisms that control kernel Met levels. A genome-wide association study followed by transcriptomic analysis identified the deSUMOylating isopeptidase gene ZmDeSI2. Further biochemical experiments revealed that ZmDeSI2 directly reduces the SUMOylation and accumulation of the sulfite reductase ZmSIR, thereby repressing Met accumulation. Natural variants in the ZmDeSI2 promoter region were found to serve as key determinants of the expression of this gene, predominantly due to the absence or presence of a ZmWRKY105 transcription factor binding site. The elite ZmDeSI2Hap2 haplotype without this binding site in the ZmDeSI2 promoter was associated with a 1.36-fold increase in Met levels in the kernels of modified near-isogenic lines generated through marker-assisted breeding. Taken together, these results provide new insights into the molecular processes that control Met biosynthesis, highlighting an elite natural variant suitable for application in maize breeding for Met biofortification.

分类号:

  • 相关文献

[1]Loss-of-function of LIGULELESS1 activates the jasmonate pathway and promotes maize resistance to corn leaf aphids. Huang, Shijie,Wang, Chuanhong,Wang, Ling,Li, Shuai,Wang, Tengyue,Tao, Zhen,Zhao, Yibing,Ma, Jing,Zhao, Mengjie,Zhang, Xinqiao,Wang, Lei,Xie, Chuanxiao,Li, Peijin. 2024

[2]A genome-wide association study uncovers a ZmRap2.7-ZCN9/ZCN10 module to regulate ABA signalling and seed vigour in maize. Guo, Shasha,Ai, Junmin,Zheng, Nannan,Hu, Hairui,Xu, Zhuoyi,Chen, Quanquan,Li, Li,Liu, Yunjun,Zhang, Hongwei,Li, Jieping,Pan, Qingchun,Chen, Fanjun,Yuan, Lixing,Fu, Junjie,Gu, Riliang,Wang, Jianhua,Du, Xuemei. 2024

[3]Natural variation of CT2 affects the embryo/kernel weight ratio in maize. Zhang, Yumin,Zhen, Sihan,Zhang, Chunxia,Zhang, Jie,Shangguan, Xiaoqing,Lu, Jiawen,Wu, Qingyu,Dirk, Lynnette M. A.,Downie, A. Bruce,Wang, Guoying,Zhao, Tianyong,Fu, Junjie. 2024

[4]DissectingthemaizedirectandindirectdefenseresponseagainstAsianCornBorer. 汪海,李圣彦,查象敏,朱莉,黄大昉,郎志宏. 2015

[5]TheDifferentialTranscriptionNetworkbetweenEmbryoandEndospermintheEarlyDevelopingMaizeSeed. XiaoduoLu,DijunChen,DefengShu,ZhaoZhang,WeixuanWang,ChristianKlukas,Ling-lingChen,YunliuFan,MingChen,ChunyiZhang. 2015

[6]Identification of natural allelic variation in TTL1 controlling thermotolerance and grain size by a rice super pan-genome. Lin, Yarong,Zhu, Yiwang,Cui, Yuchao,Qian, Hongge,Yuan, Qiaoling,Chen, Rui,Lin, Yan,Chen, Jianmin,Zhou, Xishi,Shi, Chuanlin,He, Huiying,Hu, Taijiao,Gu, Chenbo,Yu, Xiaoman,Zhu, Xiying,Wang, Yuexing,Qian, Qian,Zhang, Cuijun,Wang, Feng,Shang, Lianguang. 2023

[7]Supplemental Dietary Methionine Affects the Pelt Quality and Nutrient Metabolism of Raccoon Dogs (Nyctereutes procyonoides). Liu, H.,Li, G.,Zhong, W.,Li, D.,Liu, F.,Sun, W.. 2012

[8]Interrelationship between methionine and cystine of early Peking ducklings. Xie, M,Hou, SS,Huang, W,Zhao, L,Yu, JY,Li, WY,Wu, YY. 2004

[9]Effects of Dietary Methionine Levels on Choline Requirements of Starter White Pekin Ducks. Tang, J.,Xie, M.,Hou, S. S.,Wen, Z. G.,Yang, P. L..

[10]Bioengineering approaches to improve the nutritional values of seeds by increasing their methionine content. Amir, Rachel,Amir, Rachel,Han, Tihanfu,Ma, Fengming. 2012

[11]Soybean seeds expressing feedback-insensitive cystathionine -synthase exhibit a higher content of methionine. Song, Shikui,Hou, Wensheng,Wu, Cunxiang,Yu, Yang,Sun, Shi,Han, Tianfu,Godo, Itamar,Matityahu, Ifat,Hacham, Yael,Amir, Rachel,Amir, Rachel. 2013

[12]Methionine requirements of male White Peking ducks from twenty-one to forty-nine days of age. Xie, M,Hou, SS,Huang, W. 2006

[13]The effect of lysine and methionine on milk protein mRNA expression of bovine mammary epithelial cells in vitro. Li, X. Y.,Wang, J. Q.,Bu, D. P.,Wei, H. Y.,Hu, H.,Zhou, L. Y.. 2010

[14]Genetic background and environmental conditions drive metabolic variation in wild type and transgenic soybean (Glycine max) seeds. Cohen, Hagai,Yu, Yang,Hou, Wensheng,Sun, Shi,Han, Tianfu,Cohen, Hagai,Shir, Ofer M.,Amir, Rachel,Shir, Ofer M.,Amir, Rachel.

[15]Supplementing Ruminally Protected Lysine, Methionine, or Combination Improved Milk Production in Transition Dairy Cows. Elsaadawy S.A.,Wu Z.,Wang H.,Hanigan M.D.,Bu D.. 2022

[16]Effect Of Dietary Methionine Deficiency Followed By A Re-Feeding Phase On The Hepatic Antioxidant Activities Of Lambs. Liu, R, Diao, QY, Cui, K. 2021

[17]Methionine Promotes the Growth and Yield of Wheat under Water Deficit Conditions by Regulating the Antioxidant Enzymes, Reactive Oxygen Species, and Ions. Muhammad Faisal Maqsood,Muhammad Shahbaz,Saba Kanwal,Muhammad Kaleem,Syed Mohsan Raza Shah,Muhammad Luqman,Iqra Iftikhar,Usman Zulfiqar,Arneeb Tariq,Shahzad Amir Naveed,Naila Inayat,Atta Mohi Ud Din,Muhammad Uzair,Muhammad Ramzan Khan,Fozia. 2022

[18]Methionine Supplementation Affects Fecal Bacterial Community and Production Performance in Sika Deer (Cervus nippon). Yan Wu,Yongzhen Zhu,Xiaolan Guo,Xiaoxu Wang,Weitao Yuan,Cuiliu Ma,Xiaoli Chen,Chao Xu,Kaiying Wang. 2023

[19]Methionine restriction diets: Unravelling biological mechanisms and enhancing brain health. Yi Liu,Jingjing Guo,Hao Cheng,Juan Wang,Yanfeng Tan,Jingjing Zhang,Hongxun Tao,Hongyan Liu,Jianbo Xiao,Dashi Qi,Xinyu Mei. 2024

[20]Methionine and vitamin E supplementation improve production performance, antioxidant potential, and liver health in aged laying hens. Guangtian Ma,Habtamu Ayalew,Tahir Mahmood,Yves Mercier,Jing Wang,Jing Lin,Shugeng Wu,Kai Qiu,Guanghai Qi,Haijun Zhang. 2024

作者其他论文 更多>>