期刊文献+

可变剪接在糖料作物上的研究进展 被引量:1

Research Progress on Alternative Splicing in Sugar Crops
下载PDF
导出
摘要 可变剪接在真核生物中普遍存在,是生物体产生多种蛋白质的一个重要机制。大量证据表明,可变剪接的复杂性与植物的发育、进化、适应性有关。可变剪接的相关研究为培育优质的作物品种提供了理论依据。文章主要综述了可变剪接的类型、研究方法以及糖料作物关于可变剪接的最新研究进展,并结合当前的研究形势对未来可变剪接的研究方向提出建议。研究发现,甘蔗、甜菜、甜叶菊糖料作物的可变剪接研究几乎都处于尝试阶段,今后在分子机制、规律、功能等方面还有大量的未知信息有待研究,可变剪接的研究可为提高糖料作物抗逆性、环境适应性、产糖量等方面提供帮助。 Alternative splicing is common in eukaryotes and is an important mechanism for organisms to produce a variety of proteins.A lot of evidence shows that the complexity of alternative splicing is related to the development,evolution and adaptability of plants.The relevant research on alternative splicing provides a theoretical basis for breeding high-quality crop varieties.This study mainly summarized the types and research methods of alternative splicing,as well as the research progress in sugar crops,and suggested the research direction of alternative splicing in the future according to the current research.It was found that the study of alternative splicing in sugarcane,sugar beet,stevia and other sugar crops had been almost in the trial stage,and there was still a lot of unknown information to be studied in future such as molecular mechanism,pattern,function and so on.The study of alternative splicing could help improve the stress tolerance,environmental adaptability and sugar yield of sugar crops.
作者 徐悦 申子萌 王希 赵春雷 XU Yue;SHEN Zimeng;WANG Xi;ZHAO Chunlei(College of Advanced Agriculture and Ecological Environment of Heilongjiang University/Sugar Beet Research Institute of Chinese Academy of Agricultural Sciences,Harbin 150080;Shanghai Belief Biomed Pharmaceutical Technology Co.,Ltd.,Shanghai 200000;College of Life Sciences and Technology,Longdong University,Qingyang,Gansu 745000;The Key Laboratory of Sugar Beet Genetic Breeding,Colleges of Heilongjiang Province/Sugar Beet Engineering Research Center of Heilongjiang Province,Harbin 150080;National Sugar Crops Improvement Center/Key Laboratory of North Sugar Crop Resource and Utilization,Chinese Academy of Agricultural Sciences,Harbin 150080;Gansu Key laboratory of Protection and Utilization for Biological Resources and EcologicalRestoration,Qingyang,Gansu 745000;China Blue Sky Ecological Technology(Beijing)Co.,Ltd.,Beijing 100083)
出处 《中国糖料》 2023年第3期21-26,共6页 Sugar Crops of China
基金 博士后研究人员落户黑龙江科研启动资助金“甜菜分子标记开发与重要性状相关标记的筛选”(LBH-Q18108) 2017年度黑龙江省省属高等学校基本科研业务费科技创新类重点项目“甜菜分子标记位点库的深度挖掘与候选SSR标记开发”(KJCXZD201713) 财政部和农业农村部国家现代农业产业技术体系(糖料)项目“甜菜种质资源收集与评价”(CARS-170102)资助。
关键词 糖料作物 甜菜 甘蔗 甜叶菊 可变剪接 研究进展 sugar crops sugar beet sugarcane stevia alternative splicing research progress
  • 相关文献

参考文献8

二级参考文献202

  • 1闻芳,李衍达.基因表达调控与选择性剪接机制研究[J].电子学报,2001,29(z1):1735-1739. 被引量:6
  • 2李稚锋,王正志,张成岗.真核基因可变剪接研究现状与展望[J].生物信息学,2004,2(2):35-38. 被引量:12
  • 3熊高飞,熊向阳,张吉翔.mRNA结构及其稳定性的关系[J].细胞生物学杂志,2006,28(4):513-517. 被引量:6
  • 4李翔,秦岭,戴世鲲,姜淑梅,刘志恒,欧阳永长.海洋微生物宏基因组工程进展与展望[J].微生物学报,2007,47(3):548-553. 被引量:11
  • 5[1]Roberts GC,Smith CW.Alternative splicing:combinatorial output from the genome[J].Curr Opin Chem Biol,2002,6(3):375-383.
  • 6[2]Paul M,Harrison,Anuj Kumar,et al.Aquestion of size:the eukaryotic proteome and the problems in defiming it[J].Nucleic Acids Research,2002,30(5):1083-1090.
  • 7[3]GrabowskiPJ,Black DL.Alternative RNA splicing in the nervous systen[J].Prog Neurobiol,2001,65(3):289-308.
  • 8[4]Lopez A.Alternative splicing of pre-mRNA:developmental consequences and mechanisms of regulation[J].Ann.Rev.Genet,1998,32:279-305.
  • 9[5]Javier F,Caceres,Alberto R Kornblihtt.Alternative splicing;multiple control mechanisms and involvement in human disease[J].TRENDS in Genetics,2002,18(4):186-193.
  • 10[6]Black,Douglas L.Mechanisms of Alternative Pre-Messenger RNA Splicing[J].Annual review of Biochemistry,2003,72:291-336.

共引文献136

同被引文献12

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部