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Novel root culture system using a recessive mutant with a rooty phenotype

机译:使用具有根表型的隐性突变体的新型根系培养系统

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Hairy roots induced by Agrobacterium rhizogenes-mediated transformation are widely used for the study of metabolic regulation and large-scale metabolite production. We developed an alternative root culture using an allelic mutant of Arabidopsis superroot 1 (sur1). When the mutant was cultured in liquid modified Heller's medium developed for hairy root cultures, it grew rapidly into a globe-shaped rooty phenotype and was easily subcultured in the medium. This mutant is advantageous as the desired characteristics can likely be maintained via seeds because the rooty phenotype is recessive. To verify this postulate, heterozygous sur1 plants were crossed with fatty acid desaturase (fad) mutants. The sur1 homozygous mutants under fad2 and fad3 background accumulated high amounts of oleic acid and linolenic acid, respectively, and the mutant crossed with a FAD3 overexpression transformant accumulated high amounts of alpha-linolenic acid. Thus, the sur1 root culture system is an alternative tool for studying metabolic regulation and the production of useful compounds in roots.
机译:发根农杆菌介导的转化诱导毛状根被广泛用于代谢调控和大规模代谢产物的研究。我们使用拟南芥超根1(sur1)的等位基因突变体开发了另一种根系培养。当该突变体在为毛状根培养而开发的液体改良的Heller培养基中培养时,它迅速长成球形的根表型,并易于在该培养基中继代培养。该突变体是有利的,因为所需的特性可能通过种子保持,因为根表型是隐性的。为了验证这一假设,将杂合sur1植物与脂肪酸去饱和酶(fad)突变体杂交。在fad2和fad3背景下的sur1纯合突变体分别积累了大量的油酸和亚麻酸,与FAD3过表达转化子杂交的突变体积累了大量的α-亚麻酸。因此,sur1根系培养系统是研究根系代谢调节和有用化合物生产的替代工具。

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