Cloning, Expression and Characterization of Sugarcane (Saccharum officinarum L.) Transketolase

被引:0
|
作者
Nahid Kalhori
R. Nulit
Rusea Go
机构
[1] Universiti Putra Malaysia,Department of Biology, Faculty of Science
来源
The Protein Journal | 2013年 / 32卷
关键词
Transketolase; Pentose phosphate pathway; Subcellular localisation; Phylogenetic; Sugarcane; cDNA cloning; Protein expression;
D O I
暂无
中图分类号
学科分类号
摘要
Pentose phosphate pathway (PPP) composed of two functionally-connected phases, the oxidative and non-oxidative phase. Both phases catalysed by a series of enzymes. Transketolase is one of key enzymes of non-oxidative phase in which transfer two carbon units from fructose-6-phosphate to erythrose-4-phosphate and convert glyceraldehyde-3-phosphate to xylulose-5-phosphate. In plant, erythrose-4-phosphate enters the shikimate pathway which is produces many secondary metabolites such as aromatic amino acids, flavonoids, lignin. Although transketolase in plant system is important, study of this enzyme is still limited. Until to date, TKT genes had been isolated only from seven plants species, thus, the aim of present study to isolate, study the similarity and phylogeny of transketolase from sugarcane. Unlike bacteria, fungal and animal, PPP is complete in the cytosol and all enzymes are found cytosolic. However, in plant, the oxidative phase found localised in the cytosol but the sub localisation for non-oxidative phase might be restricted to plastid. Thus, this study was conducted to determine subcellular localization of sugarcane transketolase. The isolation of sugarcane TKT was done by reverse transcription polymerase chain reaction, followed by cloning into pJET1.2 vector and sequencing. This study has isolated 2,327 bp length of sugarcane TKT. The molecular phylogenetic tree analysis found that transketolase from sugarcane and Zea mays in one group. Classification analysis found that both plants showed closer relationship due to both plants in the same taxon i.e. family Poaceae. Target P 1.1 and Chloro P predicted that the compartmentation of sugarcane transketolase is localised in the chloroplast which is 85 amino acids are plant plastid target sequence. This led to conclusion that the PPP is incomplete in the cytosol of sugarcane. This study also found that the similarity sequence of sugarcane TKT closely related with the taxonomy plants.
引用
收藏
页码:551 / 559
页数:8
相关论文
共 50 条
  • [21] Basic Study Microspore Development of Indonesian Sugarcane (Saccharum officinarum L.)
    Anitasari, Septarini Dian
    Sari, Dwi Nur Rikhma
    Astarini, Ida Ayu
    Defiani, Made Ria
    [J]. BIOSCIENCE RESEARCH, 2018, 15 (02): : 913 - 917
  • [22] Screening and characterization of molecular markers for sugarcane stem borer (Saccharum officinarum L.) resistance genes
    Aristya, G. R.
    Larasati, B.
    Prabowo, H.
    Husna, N.
    Kasiamdari, R. S.
    [J]. 3RD INTERNATIONAL CONFERENCE ON BIOSCIENCES, 2020, 457
  • [23] Allelopathic plants. 17. sugarcane (Saccharum officinarum L.)
    Sampietro, Diego A.
    Soberon, Jose R.
    Sgariglia, Melina A.
    Quiroga, Emma N.
    Vattuone, Marta A.
    [J]. ALLELOPATHY JOURNAL, 2007, 20 (02): : 243 - 250
  • [24] Acclimatization of drought tolerance with Somaclonal variants of sugarcane (Saccharum officinarum L.)
    Naheed, Rashda
    Arfan, Muhammad
    Farhat, Fozia
    Ijaz, Siddra
    Khalid, Hamza
    [J]. ADVANCEMENTS IN LIFE SCIENCES, 2020, 8 (01): : 57 - 62
  • [25] Acoustic Characterization of Sugarcane Bagasse Particleboard Panels (Saccharum officinarum L)
    Martins Carvalho, Sylvia Thais
    Mendes, Lourival Marin
    da Silva Cesar, Antonia Amanda
    Florez, Jeimy Blanco
    Mori, Fabio Akira
    [J]. MATERIALS RESEARCH-IBERO-AMERICAN JOURNAL OF MATERIALS, 2015, 18 (04): : 821 - 827
  • [26] Balancing selection contributed to domestication of autopolyploid sugarcane (Saccharum officinarum L.)
    Arro, Jie
    Park, Jong-Won
    Wai, Ching Man
    VanBuren, Robert
    Pan, Yong-Bao
    Nagai, Chifumi
    da Silva, Jorge
    Ming, Ray
    [J]. EUPHYTICA, 2016, 209 (02) : 477 - 493
  • [27] Purification, kinetic and thermodynamic characterization of soluble acid invertase from sugarcane (Saccharum officinarum L.)
    Hussain, Altaf
    Rashid, Muhammad Hamid
    Perveen, Raheela
    Ashraf, Muhammad
    [J]. PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2009, 47 (03) : 188 - 194
  • [28] The Stability of Sugar Yield in Promising Sugarcane Genotypes (Saccharum officinarum L.)
    Fouladvand, Mahmoud
    Ebrahimi, Asa
    Rahaie, Mahdi
    Shariati, Vahid
    [J]. INTERNATIONAL JOURNAL OF AGRONOMY, 2024, 2024
  • [29] Diversity and Value of Extant Hawaiian Sugarcane (Saccharum officinarum [L.]) Cultivars
    Lincoln, Noa
    Anderson, Todd
    Kantar, Michael
    You, Qian
    Wang, Jianping
    [J]. ECONOMIC BOTANY, 2021, 75 (3-4) : 253 - 267
  • [30] Morphological and Microsatellite-Based Molecular Characterization of Locally Collected Sugarcane (Saccharum officinarum L.)
    Libayao, Carl F.
    Manuel, Ma Carmina C.
    Ocampo, Eureka Teresa M.
    Lalusin, Antonio G.
    [J]. PHILIPPINE AGRICULTURAL SCIENTIST, 2021, 104 (01): : 45 - 53