Phylogenetic analysis of phytochrome A gene from Lablab purpureus (L.) Sweet

被引:2
|
作者
Krishna, Stuti [1 ]
Modha, Kaushal [1 ]
Parekh, Vipulkumar [2 ]
Patel, Ritesh [1 ]
Chauhan, Digvijay [3 ]
机构
[1] Navsari Agr Univ, NM Coll Agr, Dept Genet & Plant Breeding, Navsari 396450, Gujarat, India
[2] NAU, Dept Basic Sci & Humanities, ASPEE Coll Hort & Forestry, Navsari 396450, Gujarat, India
[3] Navsari Agr Univ, Pulses & Castor Res Stn, Navsari 396450, Gujarat, India
关键词
Phytochrome; PHYA3; GAF; PAS; Phylogenetic analysis; PHOTOPERIOD-SENSITIVITY; SOYBEAN MATURITY; GROWTH HABIT; ARABIDOPSIS; MUTATION; SEQUENCES; DETERMINACY; ADAPTATION; EXPRESSION; GENERATION;
D O I
10.1186/s43141-021-00295-z
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background Phytochromes are the best characterized photoreceptors that perceive Red (R)/Far-Red (FR) signals and mediate key developmental responses in plants. It is well established that photoperiodic control of flowering is regulated by PHY A (phytochrome A) gene. So far, the members of PHY A gene family remains unexplored in Lablab purpureus, and therefore, their functions are still not deciphered. PHYA3 is the homologue of phytochrome A and known to be involved in dominant suppression of flowering under long day conditions by downregulating florigens in Glycine max. The present study is the first effort to identify and characterize any photoreceptor gene (PHYA3, in this study) in Lablab purpureus and decipher its phylogeny with related legumes. Results PHYA3 was amplified in Lablab purpureus cv GNIB-21 (photo-insensitive and determinate) by utilizing primers designed from GmPHYA3 locus of Glycine max. This study was successful in partially characterizing PHYA3 in Lablab purpureus (LprPHYA3) which is 2 kb longer and belongs to exon 1 region of PHYA3 gene. Phylogenetic analysis of the nucleotide and protein sequences of PHYA genes through MEGA X delineated the conservation and evolution of Lablab purpureus PHYA3 (LprPHYA3) probably from PHYA genes of Vigna unguiculata, Glycine max and Vigna angularis. A conserved basic helix-loop-helix motif bHLH69 was predicted having DNA binding property. Domain analysis of GmPHYA protein and predicted partial protein sequence corresponding to exon-1 of LprPHYA3 revealed the presence of conserved domains (GAF and PAS domains) in Lablab purpureus similar to Glycine max. Conclusion Partial characterization of LprPHYA3 would facilitate the identification of complete gene in Lablab purpureus utilizing sequence information from phylogenetically related species of Fabaceae. This would allow screening of allelic variants for LprPHYA3 locus and their role in photoperiod responsive flowering. The present study could aid in modulating photoperiod responsive flowering in Lablab purpureus and other related legumes in near future through genome editing.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Bayesian mapping QTL for fruit and growth phenological traits in Lablab purpureus (L.) Sweet
    Yuan, Juan
    Yang, Runqing
    Wu, Tianlong
    [J]. AFRICAN JOURNAL OF BIOTECHNOLOGY, 2009, 8 (02): : 167 - 175
  • [32] Karyotype Analysis of Lablab purpureus (L.) Sweet Using Fluorochrome Banding and Fluorescence in situ Hybridisation with rDNA Probes
    She, Chao-Wen
    Jiang, Xiang-Hui
    [J]. CZECH JOURNAL OF GENETICS AND PLANT BREEDING, 2015, 51 (03) : 110 - 116
  • [33] Use of lablab (Lablab purpureus (L.) Sweet) for bio-control by native arthropods and its effect on yield of pumpkins
    Qureshi, S. A.
    Angove, M.
    Wilkens, S.
    Midmore, D. J.
    [J]. BULLETIN OF ENTOMOLOGICAL RESEARCH, 2016, 106 (02) : 191 - 196
  • [34] Analysis of qualitative and quantitative morphological traits related to yield in country bean (Lablab purpureus L. sweet) genotypes
    Khatun, Rahima
    Uddin, Md. Imtiaz
    Uddin, Mohammad Mahir
    Howlader, Mohammad Tofazzal Hossain
    Haque, Muhammad Shahidul
    [J]. HELIYON, 2022, 8 (12)
  • [35] A Green Solution for the Rehabilitation of Marginal Lands: The Case of Lablab purpureus (L.) Sweet Grown in Technosols
    Aguilar-Garrido, Antonio
    Reyes-Martin, Marino Pedro
    Vidigal, Patricia
    Abreu, Maria Manuela
    [J]. PLANTS-BASEL, 2023, 12 (14):
  • [36] Dry matter production of shoots and root density of two cultivars of Lablab purpureus (L.) Sweet
    Rodrigues, LRD
    Rodrigues, TDD
    Ramos, AKB
    De Quadros, DG
    [J]. PROCEEDINGS OF THE XIX INTERNATIONAL GRASSLAND CONGRESS: GRASSLAND ECOSYSTEMS: AN OUTLOOK INTO THE 21ST CENTURY, 2001, : 573 - 574
  • [37] Quantitative trait loci (QTL) mapping for inflorescence length traits in Lablab purpureus (L.) sweet
    Yuan, J.
    Wang, B.
    Wu, T. L.
    [J]. AFRICAN JOURNAL OF BIOTECHNOLOGY, 2011, 10 (18): : 3558 - 3566
  • [38] Assessment of variability in Lablab purpureus (L.) Sweet germplasm based on quantitative morphological and biochemical traits
    V. S. Vishnu
    P. M. Radhamany
    [J]. Genetic Resources and Crop Evolution, 2022, 69 : 1535 - 1546
  • [39] Fluorescent Banding and RAPD Analysis of Four Varieties of Lablab purpureus L.
    Rahman, Zannati
    Habib, Md. Ahashan
    Begum, Rokeya
    Alam, Sheikh Shamimul
    [J]. CYTOLOGIA, 2013, 78 (04) : 391 - 397
  • [40] Assessment of variability in Lablab purpureus (L.) Sweet germplasm based on quantitative morphological and biochemical traits
    Vishnu, V. S.
    Radhamany, P. M.
    [J]. GENETIC RESOURCES AND CROP EVOLUTION, 2022, 69 (04) : 1535 - 1546