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首页> 外文期刊>Molecular biology and evolution >Analysis of a horizontally transferred pathway involved in vitamin B-6 biosynthesis from the soybean cyst nematode Heterodera glycines
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Analysis of a horizontally transferred pathway involved in vitamin B-6 biosynthesis from the soybean cyst nematode Heterodera glycines

机译:大豆囊肿线虫异形藻甘氨酸中涉及维生素B-6生物合成的水平转移途径的分析

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摘要

Heterodera glycines is an obligate plant parasite capable of biochemically and developmentally altering its host's cells in order to create a specialized feeding cell. Although the exact mechanism of feeding cell morphogenesis remains a mystery, the nematode's ability to manipulate the plant is thought to be due in part to horizontal gene transfers (HGTs). A bioinformatic screen of the nematode genome has revealed homologues of the genes SNZ and SNO, which comprise a metabolic pathway for the de novo biosynthesis of pyridoxal 5'-phosphate, the active form of vitamin B-6 (VB6). Analysis of the 2 genes, HgSNZ and HgSNO, show that they contain nematode-like introns, generate polyadenylated mRNAs, and map to the soybean cyst nematode genetic linkage map, indicating that they are part of the nematode genome. However, gene synteny, protein homology, and phylogenetic evidence suggest prokaryotic origin. This would represent the first case of the HGT of a complete pathway into a nematode or terrestrial animal. VB6 acts as a cofactor in over 140 different enzymes, and recent studies point toward an important role as a potent quencher of reactive oxygen species. With H. glycines' penchant for acquiring parasitism genes through HGT along with the absence of this pathway in other land-based animals suggests a specific need for VB6 which may involve the parasite-host interaction.
机译:Heterodera甘氨酸是专性植物寄生虫,能够生化和发育性地改变其宿主细胞,从而形成专门的饲养细胞。尽管饲养细胞形态发生的确切机制仍然是一个谜,但是线虫操纵植物的能力被认为部分是由于水平基因转移(HGT)。线虫基因组的生物信息学筛选已揭示了基因SNZ和SNO的同源物,它们包括从头开始生物合成吡ido醛5'-磷酸(维生素B-6(VB6)的活性形式)的代谢途径。对2个基因HgSNZ和HgSNO的分析表明,它们包含线虫样内含子,产生聚腺苷酸化的mRNA,并定位于大豆孢囊线虫的遗传连锁图谱,表明它们是线虫基因组的一部分。但是,基因同构,蛋白质同源性和系统发育证据表明原核生物起源。这将代表进入线虫或陆生动物的完整途径的HGT的第一种情况。 VB6在140多种不同的酶中起辅助因子的作用,最近的研究表明它可以作为有效的活性氧猝灭剂发挥重要作用。甘氨酸嗜好杆菌通过HGT获得寄生基因的倾向以及其他陆生动物中缺乏该途径的现象提示对VB6的特殊需求可能涉及寄生虫-宿主相互作用。

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