Estación Experimental Agropecuaria San Juan, Instituto Nacional de Tecnología Agropecuaria (INTA), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), San Juan, Argentina.
CNR - Institute of Biosciences and Bioresources (IBBR), Perugia, Italy.
Mol Biol Rep. 2020 Jun;47(6):4345-4355. doi: 10.1007/s11033-020-05554-9. Epub 2020 May 28.
Stearoyl-ACP desaturases (SADs) and fatty acid desaturases (FADs) play a critical role in plant lipid metabolism and also affect oil fatty acid composition introducing double bonds into the hydrocarbon chains to produce unsaturated fatty acids. In the present study, the genomic sequences of three SAD and three FAD candidate genes were characterized in olive and their expression was evaluated in different plant tissues. OeSAD genes corresponded to olive SAD1 and SAD2 and to a newly identified OeSAD4, sharing the conserved protein structure with other plant species. On the other hand, the full-length genomic sequences of two microsomal OeFAD genes (FAD2-1 and FAD2-2) and the plastidial FAD6, were released. When the level of expression was tested on different tissues of cv. Leccino, OeSAD1 and OeSAD2 were mainly expressed in the fruits, while OeFAD genes showed the lowest expression in this tissue. The mRNA profiling of all genes was directly studied in fruits of Leccino and Coratina cultivars during fruit development. In both genotypes, the expression level of OeSAD1 and OeSAD2 had the highest value during and after the pit-hardening period, when oil accumulation in fruit mesocarp is intensively increasing. Furthermore, the expression level of both OeFAD2 genes, which were the main candidates for oleic acid desaturation, were almost negligible during fruit ripening. These results have made possible to define candidate genes of the machinery regulation of fatty acid composition in olive oil, providing information on their sequence, gene structure and chromosomal location.
硬脂酰-ACP 脱饱和酶(SADs)和脂肪酸脱饱和酶(FADs)在植物脂质代谢中起着关键作用,它们还影响油脂肪酸组成,在烃链中引入双键产生不饱和脂肪酸。在本研究中,对橄榄中三个 SAD 和三个 FAD 候选基因的基因组序列进行了特征描述,并评估了它们在不同植物组织中的表达。OeSAD 基因与橄榄 SAD1 和 SAD2 以及新鉴定的 OeSAD4 相对应,与其他植物物种具有保守的蛋白质结构。另一方面,释放了两个微粒体 OeFAD 基因(FAD2-1 和 FAD2-2)和质体 FAD6 的全长基因组序列。当在 Leccino 品种的不同组织中测试表达水平时,OeSAD1 和 OeSAD2 主要在果实中表达,而 OeFAD 基因在该组织中的表达水平最低。在 Leccino 和 Coratina 品种的果实发育过程中,直接研究了所有基因的 mRNA 谱。在这两种基因型中,OeSAD1 和 OeSAD2 的表达水平在硬核期期间和之后达到最高值,此时果实中果皮的油脂积累正在迅速增加。此外,两种 OeFAD2 基因的表达水平,它们是油酸脱饱和的主要候选基因,在果实成熟期间几乎可以忽略不计。这些结果使得确定橄榄油中脂肪酸组成调节机制的候选基因成为可能,提供了关于它们的序列、基因结构和染色体位置的信息。