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New role of phenylpropanoid compounds during sugarcane micropropagation in Temporary Immersion Bioreactors (TIBs)

机译:苯丙烷类化合物在甘蔗微繁殖过程中在临时浸没生物反应器(TIB)中的新作用

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摘要

The genomic characterization of sugarcane plants has been achieved by suppressing key genes of the phenylpropanoid pathway; as a result, a new function of phenolic metabolites has been characterized during micropropagation in TIBs. Genes related to cell metabolism and development (10), plant defenses (9), phenylpropanoids (7), methyl jasmonate response (5), ethylene (5), oxidative burst (3) and, auxins (3) pathways, among others (8) were found to be induced in sugarcane plants micropropagating in TIBs with phenolic metabolites, supporting that phenylpropanoids might act as elicitor molecules of others biochemical pathways. During adaptation to natural conditions, plants micropropagated in TIBs with highest levels of phenolics displayed an increased number of functional roots, a high growth rate and, an early ability to be colonized by the natural sugarcane endophytic Gluconacetobacter diazotrophicus.
机译:甘蔗植物的基因组鉴定已通过抑制苯丙烷途径的关键基因来实现。结果,已在TIBs的微繁殖过程中表征了酚代谢物的新功能。与细胞代谢和发育(10),植物防御(9),苯丙氨酸(7),茉莉酸甲酯响应(5),乙烯(5),氧化爆发(3)和植物生长素(3)途径有关的基因(3) 8)被发现是在甘蔗植物中通过酚类代谢物在TIB中微繁殖而诱导的,这表明苯丙烷可能是其他生化途径的激发分子。在适应自然条件的过程中,以最高酚含量的TIBs微繁殖的植物表现出增加的功能根数,高生长速率,以及早期被天然甘蔗内生葡糖醋杆菌重氮营养菌定殖的能力。

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