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Molecular modeling and in silico characterization of GmABCC5: a phytate transporter and potential target for low-phytate crops

机译:GmABCC5的分子建模和计算机表征:肌醇六磷酸转运蛋白和低肌醇六磷酸作物的潜在目标

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摘要

Designing low-phytate crops without affecting the developmental process in plants had led to the identification of ABCC5 gene in soybean. The GmABCC5 gene was identified and a partial gene sequence was cloned from popular Indian soybean genotype Pusa16. Conserved domains and motifs unique to ABC transporters were identified in the 30 homologous sequences retrieved by BLASTP analysis. The homologs were analyzed for their evolutionary relationship and physiochemical properties. Conserved domains, transmembrane architecture and secondary structure of GmABCC5 were predicted with the aid of computational tools. Analysis identified 53 alpha helices and 31 beta strands, predicting 60% residues in alpha conformation. A three-dimensional (3D) model for GmABCC5 was developed based on 5twv.1.B (Homo sapiens) template homology to gain better insight into its molecular mechanism of transport and sequestration. Spatio-temporal real-time PCR analysis identified mid-to-late seed developmental stages as the time window for the maximum GmABCC5 gene expression, a potential target stage for phytate reduction. Results of this study provide valuable insights into the structural and functional characteristics of GmABCC5, which may be further utilized for the development of nutritionally enriched low-phytate soybean with improved mineral bioavailability.
机译:在不影响植物发育过程的情况下设计低肌醇六磷酸作物导致了大豆中ABCC5基因的鉴定。鉴定出GmABCC5基因,并从流行的印度大豆基因型Pusa16克隆了部分基因序列。通过BLASTP分析检索到的30个同源序列中,鉴定了ABC转运蛋白特有的保守结构域和基序。分析了同系物的进化关系和理化特性。 GmABCC5的保守域,跨膜结构和二级结构借助于计算工具进行了预测。分析鉴定出53条α螺旋和31条β链,预测α构象中有60%的残基。基于5twv.1.B(智人)模板同源性开发了GmABCC5的三维(3D)模型,以更好地了解其转运和螯合的分子机制。时空实时PCR分析确定了种子发育的中后期,是最大GmABCC5基因表达的时间窗口,这是植酸还原的潜在目标阶段。这项研究的结果为GmABCC5的结构和功能特性提供了有价值的见解,可进一步用于开发营养丰富的低植酸大豆并提高矿物质的生物利用度。

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