数字农科院2.0

The Complete Chloroplast Genome and the Phylogenetic Analysis of Fimbristylis littoralis (Cyperaceae) Collected in Cherry Blossom Nursery

文献类型: 外文期刊

作者: Zhaoliang Gao;Yutong Cai;Jiaqi Long;Bo Wang;Zhaofeng Huang;Yuan Gao

作者机构:

关键词: chloroplast genome;phylogenetic analysis;repeat;sedges;weed removal

期刊名称: International Journal of Molecular Sciences

ISSN: 1661-6596

年卷期: 2025 年 26 卷 5 期

页码:

收录情况: SCIE(2025版)

摘要: Fimbristylis littoralis, also known as globe fringerush, is one of the most troublesome annual Cyperaceae weeds in dryland fields and nurseries in the Yangtze Plain, Middle and Lower in China. The chloroplast (cp) genome of F. littoralis, and even this genus, has not been studied yet. In this study, the feature of the cp genome of F. littoralis and its phylogenetic relationships has been reported for the first time. It exhibited a typical circular tetramerous structure, with 86 protein-encoding genes. There were 149 simple sequence repeats (SSRs) and 1932 long repeats (LRs) detected. The IR expansion and contraction revealed the uniqueness of F. littoralis because there is a special cross-boundary gene, rps3, located at the LSC/IRb junction. Phylogenetic and divergence time dating analysis showed the close relationship between F. littoralis and the genus Cyperus, as well as many evolutionary directions of Cyperaceae family plants. The most recommended chemical method for removing this weed from nurseries is to spray 13 g ai ha−1 (the amount of active ingredient applied per hectare) of saflufenacil before emergence or 7.5 g ai ha−1 of halosulfuron-methyl after emergence. In conclusion, this study was the first to report the complete cp genome of a plant in the genus Fimbristylis. Our findings also provided valuable biological information for studying the phylogenetic relationships and evolution among the family Cyperaceae.

分类号:

  • 相关文献

[1]The complete chloroplast genome of Agropyron desertorum (Fisch. ex Link) Schult. Junfeng Yang,Wenxuan Du,Yongzhen Pang. 2021

[2]The complete chloroplast genome of weedy rice Oryza sativa f. spontanea. Chenfeng Dong,Yiyu Hu,Chuyu Ye,Longjiang Fan,Longbiao Guo. 2021

[3]Complete Chloroplast Genome of Krascheninnikovia ewersmanniana: Comparative and Phylogenetic Analysis. Peng Wei,Youzheng Li,Mei Ke,Yurong Hou,Abudureyimu Aikebaier,Zinian Wu. 2024

[4]Characteristics and Phylogenetic Analysis of the Complete Chloroplast Genome of Abelmoschus esculentus. Dong, Junyuan,Du, Guanghui,Ji, Qingqing,An, Xingcai,Zhu, Ziyi,Tang, Shenyue,Luo, Xiahong,Chen, Changli,Liu, Tingting,Zou, Lina,Li, Shaocui,Chen, Jiquan,An, Xia. 2025

[5]Characteristics and Phylogenetic Analysis of the Complete Chloroplast Genome of Hibiscus sabdariffa L.. Junyuan Dong,Qingqing Ji,Xingcai An,Xiahong Luo,Changli Chen,Tingting Liu,Lina Zou,Shaocui Li,Guanghui Du,Jikang Chen,Xia An. 2025

[6]Complete Chloroplast Genome Features and Phylogenetic Analysis of Linum usitatissimum L.. Qingqing Ji,Guanghui Du,Xingcai An,Junyuan Dong,Xiahong Luo,Changli Chen,Tingting Liu,Lina Zou,Shaocui Li,Jikang Chen,Xia An. 2025

[7]Identification and preliminary analysis of several centromere-associated bacterial artificial chromosome clones from a diploid wheat library. Liu, Z,Yue, W,Dong, YS,Zhang, XY. 2006

[8]The Complete Chloroplast Genome Of B.iondia Insignis Tsiang (Apocynaceae). Zhang, Rui,Guan, Min. 2019

[9]Comparative Analysis Of The Complete C.hloroplast Genome Of Four E ndangered Herbals Of Notopterygium. Yang, Jiao,Yue, Ming,Niu, Chuan,Ma, Xiong-Feng,Li, Zhong-Hu. 2017

[10]Comparative Chloroplast Genomics Of Gossypium S.pecies: Insights Into Repeat S equence Variations And Phylogeny. Zhou, Xiao-Jian,Zhang, Wen-Sheng,Wu, Ying,Zhou, Ke-Hai,Wu, Ying,Ren, Zhong-Ying,Pei, Xiao-Yu,Ma, Xiong-Feng,Li, Wei,Li, Zhong-Hu,He, Kun-Lun,Yang, Dai-Gang,Liu, Yan-Gai,Liu, Fang. 2018

[11]Assessing high-resolution melt curve analysis for accurate detection of DNA polymorphisms in the chloroplast gene accD of Crucifer species. Yan, Gui-xin,Wu, Xiao-ming,Li, Dan,Zeng, Chang-li,Lv, Pei-jun,Gao, Gui-zhen,Chen, Bi-yun,Xu, Kun,Lv, Xiao-dan,Zeng, Chang-li.

[12]The complete chloroplast genome of Arabidopsis lyrata. Wu, Zhiqiang,Gu, Cuihua,Tembrock, Luke R.,Sun, Cheng. 2016

[13]The complete chloroplast genome sequence of Chinese wild grape Vitis amurensis (Vitaceae: Vitis L.). Xie, Haikun,Jiao, Jian,Fan, Xiucai,Zhang, Ying,Jiang, Jianfu,Sun, Haisheng,Liu, Chonghuai.

[14]Sequencing of chloroplast genome using whole cellular DNA and Solexa sequencing technology. Wu, Jian,Liu, Bo,Cheng, Feng,Wang, Xiao-Wu,Ramchiary, Nirala,Choi, Su Ryun,Lim, Yong Pyo. 2012

[15]Comparative Bioinformatics Analysis of the Chloroplast Genomes of a Wild Diploid Gossypium and Two Cultivated Allotetraploid Species. Farshid Talat ,Kunbo Wang. 2015

[16]Complete chloroplast genome sequence of rapeseed (Brassica napus L.) and its evolutionary implications. Hu, Zhi-Yong,Hua, Wei,Huang, Shun-Mou,Wang, Han-Zhong,Hu, Zhi-Yong,Hua, Wei,Huang, Shun-Mou,Wang, Han-Zhong.

[17]The Complete Chloroplast Genome Sequences of Eight Fagopyrum Species: Insights Into Genome Evolution and Phylogenetic Relationships. Yu Fan,Ya’nan Jin,Mengqi Ding,Yu Tang,Jianping Cheng,Kaixuan Zhang,Meiliang Zhou. 2021

[18]A Phylogenetic Analysis Of Chloroplast G.enomes Elucidates The Relationships O f The Six Economically Important Brassica Species Comprising The Triangle Of U. Li, PR, Zhang, SJ, Li, F, Zhang, SF, Zhang, H, Wang, XW, Sun, RF, Bonnema, G, Borm, TJA. 2017

[19]Chloroplast Dna Markers For Echinochloa T.axa. Zhang, JP, Fu, F, Liu, C, Lin, ZX, Wang, YY, Ye, CY, Lu, YL. 2017

[20]Comprehensive Comparative Analysis and Development of Molecular Markers for Dianthus Species Based on Complete Chloroplast Genome Sequences. Lin S.,Liu J.,He X.,Wang J.,Wang Z.,Zhang X.,Bao M.,Fu X.. 2022

作者其他论文 更多>>