In Silico Characterization of Lycopene Beta Cyclase (LCYB) and Lycopene Epsilon Cyclase (LCYE) Genes from DH-Pahang (Musa acuminata, A Genome) and DH-PKW (Musa balbisiana, B Genome)

Q4 Agricultural and Biological Sciences Journal of Tropical Life Science Pub Date : 2023-01-31 DOI:10.11594/jtls.13.01.09
I. Wiprayoga, K. Meitha, F. Dwivany
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Abstract

Alpha (α) and beta (β)-carotene are among the nutritious contents of bananas, with the unique feature of a high ratio of α-/β-carotene. Research on the gene and protein of the key enzymes determining the ratio of α-/β-carotene in bananas, namely lycopene beta cyclase (LCYB) and lycopene epsilon cyclase (LCYE), is currently not well defined. Hence, this study aimed to compare the characters of the LCYB and LCYE genes and their putative proteins from Musa acuminata 'DH-Pahang' and Musa balbisiana 'DH-PKW'. The corresponding nucleotide sequences from both species were aligned to detect similarities in the gene structure. Their protein products were characterized at the primary and tertiary levels. The phylogenetic tree was constructed based on nucleotide and protein sequences. The result showed that the gene structure between these two species is similar in LCYB in chromosome 9 but different in LCYB in chromosome 7 and LCYE. The presence of cis-acting regulatory elements in response to light dominated the 2000 nucleotide region of the 5'UTR of LCYB and LCYE genes in both species. Based on protein alignment and domain analysis, the NADB_Rossmann superfamily domain was detected in both LCYB and LCYE. Alignment of the three-dimensional protein structure showed a significant difference between MaLCYB.c07 and MbLCYB.c07 only. The phylogenetic tree based on protein sequences indicated the distant relationship of MaLCYB.c07 and MbLCYB.c07 with other LCYB ingroup OTUs. The results of this study could provide a molecular basis related to the exploration of bananas as a promising functional food to meet the needs of provitamin A.
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h - pahang (Musa acuminata, A基因组)和DH-PKW (Musa balbisiana, B基因组)番茄红素β环化酶(LCYB)和番茄红素Epsilon环化酶(LCYE)基因的计算机分析
α(α)和β(β)-胡萝卜素是香蕉的营养成分之一,具有α/β-胡萝卜素比例高的独特特点。决定香蕉中α-β-胡萝卜素比例的关键酶,即番茄红素β-环化酶(LCYB)和番茄红素ε-环化蛋白酶(LCYE)的基因和蛋白质的研究目前还不清楚。因此,本研究旨在比较“DH Pahang”和“DH-PKW”的LCYB和LCYE基因及其推定蛋白的特征。对两个物种的相应核苷酸序列进行比对,以检测基因结构的相似性。它们的蛋白质产物在初级和三级水平上进行了表征。基于核苷酸和蛋白质序列构建了系统发育树。结果表明,这两个物种的基因结构在9号染色体的LCYB上相似,但在7号染色体的LCYB和LCYE上不同。在这两个物种中,响应光的顺式作用调节元件的存在主导了LCYB和LCYE基因5’UTR的2000个核苷酸区域。基于蛋白质比对和结构域分析,在LCYB和LCYE中都检测到NADB_Rossmann超家族结构域。三维蛋白质结构的比对显示仅在MaLCYB.c07和MbLCYB.c7之间存在显著差异。基于蛋白质序列的系统发育树表明MaLCYB.c07和MbLCYB.c7与其他LCYB内群OTU存在远缘关系。这项研究的结果可以为探索香蕉作为一种有前途的功能性食品来满足维生素a的需求提供分子基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Tropical Life Science
Journal of Tropical Life Science Environmental Science-Ecology
CiteScore
1.00
自引率
0.00%
发文量
46
审稿时长
12 weeks
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