数字农科院2.0

Phylogenetic and Expression Analysis of the Sucrose Synthase and Sucrose Phosphate Synthase Gene Family in Potatoes

文献类型: 外文期刊

作者: Hu J.;Duan Y.;Hu J.;Zhang S.;Li G.

作者机构:

关键词: bioinformatics analysis;gene expression;Solanum tuberosumL;sucrose metabolism

期刊名称: Metabolites

ISSN: 2218-1989

年卷期: 2024 年 14 卷 1 期

页码:

收录情况: SCIE(2024版)

摘要: Sucrose synthase (SUS) and sucrose phosphate synthase (SPS) are essential in plant sucrose metabolism. The potato is an important crop worldwide, but systematic analyses of the StSUS and StSPS gene families in potatoes are still lacking. Ten sucrose metabolism-related genes were identified in this study. The SUSs and SPSs could each be split into three subgroups through phylogenetic analysis. StSUSIc was the most highly expressed gene in different developmental tissues. Ka/Ks analysis showed that StSUSIb and StSUSIc were subjected to more-significant homozygous selection pressure. Our cis-acting element analysis of the StSUS and StSPS promoter sequences showed four elements: defense- and stress-responsive, hormone-responsive, light-responsive, and transcription factor elements. The expression of StSUS and StSPS genes was found to be regulated by circadian rhythm. In the treatments of 1% to 5% sucrose, glucose, and fructose, the expression of StSUS and StSPS family genes was enhanced by sucrose, but inhibited at high-glucose and fructose concentrations. This study identified six StSUS and four StSPS genes and analyzed their gene structure, conserved motifs, chromosome position, promoter elements, phylogenetic tree, and tissue-specific expression patterns. Our results will motivate more research into the biological process underlying the genes of sucrose metabolism in potatoes. © 2024 by the authors.

分类号:

  • 相关文献

[1]Characterization and expression analysis of Gossypium NLP family reveals the roles of GhNLP2.1 contributing to nitrogen use efficiency in upland cotton. Yunqi Gu,Xiaotong Li,Asif Iqbal,Xiangru Wang,Tong Luo,Qianqian Wang,Yuanchun Pu,Huiping Gui,Meizhen Song,Qiang Dong. 2025

[2]Cloning and Expression of the Chloroplast Copper/Zinc-Superoxide Dismutase Gene in Upland Cotton (Gossypium hirsutum L.). Yu Shuxun,Fan Shuli,Song Meizhen. 2007

[3]Host plant effects on alkaline phosphatase activity in the whiteflies, Bemisia tabaci Biotype B and Trialeurodes vaporariorum. Peng, Lu,Liu, Wan-Xue,Wan, Fang-Hao,Peng, Lu,Harris, Marvin K.. 2011

[4]Sucrose metabolism in cotton (Gossypium hirsutum L.) fibre under low temperature during fibre development. Zhou, Zhiguo,Xu, Naiyin.

[5]Induction of Direct or Priming Resistance against Botrytis cinerea in Strawberries by beta-Aminobutyric Acid and Their Effects on Sucrose Metabolism. Wang, Kaituo,Liao, Yunxia,Xiong, Qi,Wang, Kaituo,Kan, Jianquan,Wang, Kaituo,Zheng, Yonghua,Cao, Shifeng.

[6]CO2 Enrichment Improves the Drought Resistance of Cucumber Seedlings by Improving Antioxidant Capacity and Sucrose Metabolism. S. H. Li,Y. M. Li,M. Li,X. R. He,W. L. Jiang,B. B. Liu,Q. M. Li. 2022

[7]Changes in antioxidant system and sucrose metabolism in maize varieties exposed to Cd. Li, Cong,Cao, Yingdi,Li, Tianfeng,Guo, Meiyu,Ma, Xinglin,Zhu, Yanshu,Fan, Jinjuan. 2022

[8]Soil Available Phosphorus Deficiency Reduces Boll Biomass and Lint Yield by Affecting Sucrose Metabolism in Cotton-Boll Subtending Leaves. Miao Sun,Pengcheng Li,Ning Wang,Cangsong Zheng,Xuezhen Sun,Helin Dong,Huimin Han,Weina Feng,Jingjing Shao,Yufeng Zhang. 2022

[9]Alternating red and blue irradiation affects carbohydrate accumulation and sucrose metabolism in butterhead lettuce. Xiao Li Chen,Li chun Wang,You Li Li,Qi Chang Yang,Wen zhong Guo. 2022

[10]Abscisic acid treatment prolongs the postharvest life of strawberry fruit by regulating sucrose and cell wall metabolism. Yaoyao Zhao,David A. Brummell,Qiong Lin,Yuquan Duan. 2024

[11]Positional differences of rice spikelet formation under high temperature are associated with sucrose utilization discrepancy. Jingqing Wang,Hui Li,Tianming Lan,Chenghan Tang,Peng Zhang,Yulin Chen,Huizhe Chen,Jing Xiang,Yikai Zhang,Zhigang Wang,Yuping Zhang,Yaliang Wang. 2025

[12]Chlorine Modulates Photosynthetic Efficiency, Chlorophyll Fluorescence in Tomato Leaves, and Carbohydrate Allocation in Developing Fruits. Su, Longpu,Lu, Tao,Li, Qiang,Li, Yang,Wan, Xiaoyang,Jiang, Weijie,Yu, Hongjun. 2025

[13]Cloning and Characterization of miRNAs and Their Targets, Including a Novel miRNA-Targeted NBS-LRR Protein Class Gene in Apple (Golden Delicious). Ma, Chao,Lu, You,Bai, Songlin,Zhang, Wennan,Duan, Xuwei,Meng, Dong,Wang, Zhigang,Li, Tianzhong,Wang, Zhigang,Zhou, Zongshan,Wang, Aide. 2014

[14]Cloning, identification, and bioinformatics analysis of a putative aquaporin TsAQP from Trichinella spiralis. Cui, J. M.,Zhang, N. Z.,Li, W. H.,Yan, H. B.,Fu, B. Q.,Fu, B. Q.. 2015

[15]Toxoplasma gondii: Bioinformatics analysis, cloning and expression of a novel protein TgIMP1. Bai, Yang,He, Shenyi,Zhao, Guanghui,Chen, Lin,Shi, Na,Zhou, Huaiyu,Cong, Hua,Zhao, Qunli,Bai, Yang,He, Shenyi,Zhao, Guanghui,Chen, Lin,Shi, Na,Zhu, Xing-Quan,Zhu, Xing-Quan.

[16]Molecular cloning and expression analysis of the STAT1 gene in the water buffalo (Bubalus bubalis). Deng, Tingxian,Pang, Chunying,Zhu, Peng,Yang, Bingzhuang,Liang, Xianwei,Deng, Tingxian,Pang, Chunying,Zhu, Peng,Yang, Bingzhuang,Liang, Xianwei,Liao, Biyun,Zhang, Ming.

[17]GhNAC12, a neutral candidate gene, leads to early aging in cotton (Gossypium hirsutum L). Fengli Zhao,JianhuiMa,Libei Li,Shuli Fan,Yaning Guo,Meizhen Song,Hengling Wei,Chaoyou Pang,Shuxun Yu. 2016

[18]Genome-Wide Identification and Characterization of the PPO Gene Family in Cotton (Gossypium) and Their Expression Variations Responding to Verticillium Wilt Infection. Shuhan Yang,Qun Ge,Sumei Wan,Zhihao Sun,Yu Chen,Yanfang Li,Qiankun Liu,Juwu Gong,Xianghui Xiao,Quanwei Lu,Yuzhen Shi,Renhai Peng,Haihong Shang,Guodong Chen,Pengtao Li. 2023

[19]Cloning, characterization and bioinformatics analysis of the sequences of mir-10a and mir-10b in sheep (hu sheep). Zhibo Wu,Zhenhan Zhai,Mengyao Wang,Hongxiang Ding,Huibin Shi,Zhilong Tian,Xiaohui Zhang,Yuqin Wang,Caihong Wei,Fadi Li. 2021

[20]Genome-wide expression analysis reveals involvement of asparagine synthetase family in cotton development and nitrogen metabolism. Asif Iqbal,Gui Huiping,Wang Xiangru,Zhang Hengheng,Zhang Xiling,Song Meizhen. 2022

作者其他论文 更多>>