数字农科院2.0

Decoding genetic diversity through genome engineering in bryophytes

文献类型: 外文期刊

作者: Ye, Hao;Luo, Guangyu;Liu, Jia;Cao, Jie;Ma, Qilong;Xiao, Mengnan;Dai, Junbiao

作者机构:

关键词: (1-1-1)genome engineering;bryophyte;synthetic biology;synthetic genomics;Physcomitrium patens;moss

期刊名称: PLANT JOURNAL

ISSN: 0960-7412

年卷期: 2025 年 121 卷 6 期

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Bryophytes, which include mosses, liverworts, and hornworts, have evolved a highly successful strategy for thriving in terrestrial environments, allowing them to occupy nearly every land ecosystem. Their success is due to a unique combination of biochemical adaptations, diverse structural forms, and specialized life cycle strategies. The key to their evolutionary success lies in their genomic diversity. To fully decode this diversity, the use of advanced genome engineering techniques is crucial. In this review, we explore the genomic diversity of bryophytes and the latest advancements in their genome studies and engineering, ranging from precise gene editing to whole-genome synthesis. Notably, the moss Physcomitrium patens stands out as the only land plant capable of efficiently utilizing homologous recombination for precise genome engineering. This capability has heralded a new era in plant synthetic genomics. By focusing on bryophytes, we emphasize the potential benefits of unraveling the genetic traits, which could have significant implications across various scientific fields, from fundamental biology to biotechnological applications.

分类号:

  • 相关文献

[1]Insights into a functional synthetic plant genome. Du, Fei,Dai, Junbiao,Jiao, Yuling. 2024

[2]Establishing chromosomal design-build-test-learn through a synthetic chromosome and its combinatorial reconfiguration. Jee Loon Foo,Shohei Kitano,Adelia Vicanatalita Susanto,Zhu Jin,Yicong Lin,Zhouqing Luo,Linsen Huang,Zhenzhen Liang,Leslie A. Mitchell,Kun Yang,Adison Wong,Yizhi Cai,Jitong Cai,Giovanni Stracquadanio,Joel S. Bader,Jef D. Boeke,Junbiao Dai,Matthew Wook Chang. 2023

[3]Benchmarking plant diversity of Palaearctic grasslands and other open habitats. Idoia Biurrun,Remigiusz Pielech,Iwona Dembicz,François Gillet,Łukasz Kozub,Corrado Marcenò,Triin Reitalu,Koenraad Van Meerbeek,Riccardo Guarino,Milan Chytrý,Robin J. Pakeman,Zdenka Preislerová,Irena Axmanová,Sabina Burrascano,Sándor Bartha,Steffen Boch,Hans Henrik Bruun,Timo Conradi,Pieter De Frenne,Franz Essl,Goffredo Filibeck,Michal Hájek,Borja Jiménez-Alfaro,Anna Kuzemko,Zsolt Molnár,Meelis Pärtel,Ricarda Pätsch,Honor C. Prentice,Jan Roleček,Laura M.E. Sutcliffe,Massimo Terzi,Manuela Winkler,Jianshuang Wu,Svetlana Aćić,Alicia T.R. Acosta,Elias Afif,Munemitsu Akasaka,Juha M. Alatalo,Michele Aleffi,Alla Aleksanyan,Arshad Ali,Iva Apostolova,Parvaneh Ashouri,Zoltán Bátori,Esther Baumann,Thomas Becker,Elena Belonovskaya,José Luis Benito Alonso,Asun Berastegi,Ariel Bergamini,Kuber Prasad Bhatta,Ilaria Bonini,Marc Olivier Büchler,Vasyl Budzhak,Álvaro Bueno,Fabrizio Buldrini,Juan Antonio Campos,Laura Cancellieri,Marta Carboni,Tobias. 2021

[4]Morphological Innovation Drives Sperm Release in Bryophytes. Zhang, Xinxin,Bian, Ang,Yang, Junbo,Liang, Ye,Zhang, Zhe,Yan, Meng,Yuan, Siqi,Zhang, Qun. 2024

[5]MYC2: A Master Switch for Plant Physiological Processes and Specialized Metabolite Synthesis. Lei Luo,Ying Wang,Lu Qiu,Xingpei Han,Yaqian Zhu,Lulu Liu,Mingwu Man,Fuguang Li,Maozhi Ren,Yadi Xing. 2023

[6]Development of an eco-friendly pink cotton germplasm by engineering betalain biosynthesis pathway. Ge, Xiaoyang,Wang, Peng,Wang, Ye,Wei, Xi,Chen, Yanli,Li, Fuguang. 2022

[7]The Post-Antibiotic Era: A New Dawn for Bacteriophages. Youshun Jin,Wei Li,Huaiyu Zhang,Xuli Ba,Zhaocai Li,Jizhang Zhou. 2023

[8]Toward the Heterologous Biosynthesis of Plant Natural Products: Gene Discovery and Characterization. Huiyan Wang,Hao Guo,Ning Wang,Yi Xin Huo. 2021

[9]Plant synthetic epigenomic engineering for crop improvement. Yang, Liwen,Zhang, Pingxian,Wang, Yifan,Hu, Guihua,Guo, Weijun,Gu, Xiaofeng,Pu, Li. 2022

[10]Engineering Critical Enzymes And Pathways For Improved Triterpenoid Biosynthesis In Yeast. Guo, H, Wang, HY, Huo, YX. 2020

[11]Advances in mechanisms and engineering of electroactive biofilms. Zixuan You,Jianxun Li,Yuxuan Wang,Deguang Wu,Feng Li,Hao Song. 2023

[12]Multiplex Expression Cassette Assembly: A flexible and versatile method for building complex genetic circuits in conventional vectors. Jiang, Xun,Zhang, Zhuoxiang,Wu, Xiuming,Li, Changmei,Sun, Xuan,Li, Yiting,Chang, Aixia,Yang, Aiguo,Yang, Changqing. 2024

[13]microRNAs: Key Regulators in Plant Responses to Abiotic and Biotic Stresses via Endogenous and Cross-Kingdom Mechanisms. Ding T.,Li W.,Li F.,Ren M.,Wang W.. 2024

[14]Microalgae: towards human health from urban areas to space missions. Xiulan Xie,Abdul Jaleel,Jiasui Zhan,Maozhi Ren. 2024

[15]Plant-derived strategies to fight against severe acute respiratory syndrome coronavirus 2. Li W.,Ding T.,Chang H.,Peng Y.,Li J.,Liang X.,Ma H.,Li F.,Ren M.,Wang W.. 2024

[16]A novel nucleic acid linker for multi-gene expression enhances plant and animal synthetic biology. Ma, Xuhui,Yue, Qun,Miao, Liqing,Li, Suzhen,Tian, Jian,Si, Wei,Zhang, Liwen,Yang, Wenzhu,Zhou, Xiaojin,Zhang, Junmin,Chen, Rumei,Xu, Yuquan,Liu, Xiaoqing. 2024

[17]Editorial: Plant chassis for synthetic biology and its application in biomanufacturing. Zhu Liu,Zenglin Zhang,Sandeep Rawat,Lianyong Wang,Peijian Cao,Lei Zhao. 2024

[18]Synthetic, marine, light-driven, autotroph-heterotroph co-culture system for sustainable β-caryophyllene production. Wenchao Chen,Young Kyoung Park,Lucie Studená,David Bell,Piotr Hapeta,Jing Fu,Peter J. Nixon,Rodrigo Ledesma-Amaro. 2024

[19]From Taxus to paclitaxel: Opportunities and challenges for urban agriculture to promote human health. Xiulan Xie,Yaohua Zhai,Hao Cheng,Wen Hua Wei,Maozhi Ren. 2025

[20]Multi-Omics Analyses Reveal the Red and Far-Red Light Combination Enhancing Heterologous Protein and Metabolite Production in Nicotiana benthamiana. Zhang, Yating,Wang, Fengjiao,Du, Ran,Li, Tao,Zhou, Shaoqun,Yan, Jianbin,Li, Wei. 2025

作者其他论文 更多>>