The GmFAD7 gene family from soybean: identification of novel genes and tissue-specific conformations of the FAD7 enzyme involved in desaturase activity

被引:30
作者
Andreu, Vanesa [1 ]
Lagunas, Beatriz [1 ]
Collados, Raquel [1 ]
Picorel, Rafael [1 ]
Alfonso, Miguel [1 ]
机构
[1] Consejo Super Invest Cient, Estac Expt Aula Dei, Dept Plant Nutr, E-50059 Zaragoza, Spain
关键词
Desaturase; FAD7; fatty-acid; gene expression; plastid; protein conformation; soybean; PLASTID OMEGA-3-FATTY-ACID DESATURASE; SENSITIVE MECHANISM; MOLECULAR-CLONING; ARABIDOPSIS; TEMPERATURE; EXPRESSION; STABILITY; TRANSCRIPTION; SEQUENCE; MUTANTS;
D O I
10.1093/jxb/erq158
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The FAD7 gene encodes a omega 3 fatty acid desaturase which catalyses the production of trienoic fatty acids (TAs) in plant chloroplasts. A novel GmFAD7 gene (named GmFAD7-2) has been identified in soybean, with high homology to the previously annotated GmFAD7 gene. Genomic sequencing analysis together with searches at the soybean genome database further confirmed that both GmFAD7 genes were located in two different loci within the soybean genome, suggesting that the soybean omega 3 plastidial desaturase FAD7 is encoded by two different paralogous genes. Both GmFAD7-1 and GmFAD7-2 genes were expressed in all soybean tissues examined, displaying their highest mRNA accumulation in leaves. This expression profile contrasted with GmFAD3A and GmFAD3B mRNA accumulation, which was very low in this tissue. These results suggested a concerted control of plastidial and reticular omega 3 desaturase gene expression in soybean mature leaves. Analysis of GmFAD7 protein distribution in different soybean tissues showed that, in mature leaves, two bands were detected, coincident with the higher expression level of both GmFAD7 genes and the highest 18:3 fatty acid accumulation. By contrast, in seeds, where FAD7 activity is low, specific GmFAD7 protein conformations were observed. These GmFAD7 protein conformations were affected in vitro by changes in the redox conditions of thiol groups and iron availability. These results suggest the existence of tissue-specific post-translational regulatory mechanisms affecting the distribution and conformation of the FAD7 enzymes related with the control of its activity.
引用
收藏
页码:3371 / 3384
页数:14
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