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甘蓝型油菜八氢番茄红素合成酶(PSY)基因家族的功能分析

Functional analysis of the Brassica napus L. phytoene synthase (PSY) gene family.

作者信息

López-Emparán Ada, Quezada-Martinez Daniela, Zúñiga-Bustos Matías, Cifuentes Víctor, Iñiguez-Luy Federico, Federico María Laura

机构信息

Genomics and Bioinformatics Unit, Agriaquaculture Nutritional Genomic Center, CGNA, Temuco, La Araucanía, Chile; Instituto de Biología Vegetal y Biotecnología, Universidad de Talca, Talca, Maule, Chile.

Genomics and Bioinformatics Unit, Agriaquaculture Nutritional Genomic Center, CGNA, Temuco, La Araucanía, Chile.

出版信息

PLoS One. 2014 Dec 15;9(12):e114878. doi: 10.1371/journal.pone.0114878. eCollection 2014.

Abstract

Phytoene synthase (PSY) has been shown to catalyze the first committed and rate-limiting step of carotenogenesis in several crop species, including Brassica napus L. Due to its pivotal role, PSY has been a prime target for breeding and metabolic engineering the carotenoid content of seeds, tubers, fruits and flowers. In Arabidopsis thaliana, PSY is encoded by a single copy gene but small PSY gene families have been described in monocot and dicotyledonous species. We have recently shown that PSY genes have been retained in a triplicated state in the A- and C-Brassica genomes, with each paralogue mapping to syntenic locations in each of the three "Arabidopsis-like" subgenomes. Most importantly, we have shown that in B. napus all six members are expressed, exhibiting overlapping redundancy and signs of subfunctionalization among photosynthetic and non photosynthetic tissues. The question of whether this large PSY family actually encodes six functional enzymes remained to be answered. Therefore, the objectives of this study were to: (i) isolate, characterize and compare the complete protein coding sequences (CDS) of the six B. napus PSY genes; (ii) model their predicted tridimensional enzyme structures; (iii) test their phytoene synthase activity in a heterologous complementation system and (iv) evaluate their individual expression patterns during seed development. This study further confirmed that the six B. napus PSY genes encode proteins with high sequence identity, which have evolved under functional constraint. Structural modeling demonstrated that they share similar tridimensional protein structures with a putative PSY active site. Significantly, all six B. napus PSY enzymes were found to be functional. Taking into account the specific patterns of expression exhibited by these PSY genes during seed development and recent knowledge of PSY suborganellar localization, the selection of transgene candidates for metabolic engineering the carotenoid content of oilseeds is discussed.

摘要

八氢番茄红素合酶(PSY)已被证明在包括甘蓝型油菜(Brassica napus L.)在内的几种作物中催化类胡萝卜素生物合成的首个关键且限速步骤。由于其关键作用,PSY一直是种子、块茎、果实和花朵类胡萝卜素含量育种和代谢工程的主要目标。在拟南芥(Arabidopsis thaliana)中,PSY由单拷贝基因编码,但在单子叶和双子叶植物物种中已发现存在小的PSY基因家族。我们最近表明,PSY基因在A和C甘蓝基因组中以三倍体状态保留,每个旁系同源基因映射到三个“拟南芥样”亚基因组中每个亚基因组的同线位置。最重要的是,我们已经表明,在甘蓝型油菜中,所有六个成员均表达,在光合和非光合组织中表现出重叠冗余和亚功能化迹象。这个大的PSY家族是否实际编码六种功能酶的问题仍有待解答。因此,本研究的目的是:(i)分离、表征和比较六个甘蓝型油菜PSY基因的完整蛋白质编码序列(CDS);(ii)模拟它们预测的三维酶结构;(iii)在异源互补系统中测试它们的八氢番茄红素合酶活性;(iv)评估它们在种子发育过程中的个体表达模式。本研究进一步证实,六个甘蓝型油菜PSY基因编码具有高度序列同一性的蛋白质,这些蛋白质在功能限制下进化。结构建模表明,它们与假定的PSY活性位点共享相似的三维蛋白质结构。值得注意的是,发现所有六种甘蓝型油菜PSY酶均具有功能。考虑到这些PSY基因在种子发育过程中表现出的特定表达模式以及PSY亚细胞器定位的最新知识,讨论了用于油菜籽类胡萝卜素含量代谢工程的转基因候选物的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd1b/4266642/5b0a1367447f/pone.0114878.g001.jpg

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