首页> 外文期刊>Agronomy Research >Development of metabolic engineering approaches to regulate the content of total phenolics, antiradical activity and organic acids in callus cultures of the highbush blueberry (Vaccinium corymbosum L.)
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Development of metabolic engineering approaches to regulate the content of total phenolics, antiradical activity and organic acids in callus cultures of the highbush blueberry (Vaccinium corymbosum L.)

机译:新陈代谢工程方法的发展,以调节高骨髓愈伤组织癌症总酚类,抗旱性和有机酸的含量(髋臼骨盆瘤疫苗。)

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Blueberry (Vaccinium corymbosum L.) is increasingly cultivated to produce high quality berries for consumption and potential applications in medicine, nutrition and as industrial precursors. Seasonal availability sets limitations on chemical compound isolation from cultivated plants. Biotechnological solutions, such as tissue cultures and metabolic engineering, can provide sufficient amounts of plant material with reasonably high metabolite levels, which may be adjusted by different strategies. Here, we describe our approach to modifying total phenolic content (TPC), antiradical activity (ARA) and amounts of selected organic acids in in vitro cultures of two varieties of V. corymbosum by varying the growth media. TPC, ARA and acid levels were determined in mature leaves of field-grown plants and in stable callus cultures derived from leaves of varieties ‘Bluecrop’ and ‘Duke’ grown on Murashige-Skoog (MS) and Woody plant (WP) media supplemented with varying concentrations and combinations of different plant growth hormones. TPC varied from 83 mg g -1 dry weight (DW) to 142 mg g -1 DW in leaves of ‘Bluecrop’ and ‘Duke’, respectively, and correlated with their ARA with ‘Duke’ at the lead. For callus cultures the highest ARA, as well as the highest TPC of 94 mg g -1 DW was observed in ‘Bluecrop’ grown on WP medium with 2,4-dichlorophenoxyacetic acid (2,4-D). High level of quinic acid was found in the mature leaves of all tested varieties, while callus cultures exhibited relative increase in amounts of malic, succinic and citric acids instead. Oxalic acid was found only in callus cultures.
机译:越来越多地培养蓝莓(Vaccinium Corymbosum L.)以生产用于消费和药物,营养和工业前体的潜在应用的高质量浆果。季节性可用性对栽培植物的化学复合分离的限制设定。组织培养和代谢工程如组织培养和代谢工程,可以提供足够量的植物材料,其具有相当高的代谢物水平,这可能通过不同的策略调整。在这里,通过改变生长培养基,我们描述了通过改变两种V.Corymbosum的体外培养物中所选有机酸的总酚类含量(TPC),抗动物活性(ARA)和量的方法。 TPC,ARA和酸水平在成熟的植物的成熟叶中测定,稳定的愈伤组织培养物中衍生自Murashige-skoog(MS)和柔化的穆拉克里奇(MS)和木质植物(WP)培养基不同植物生长激素的不同浓度及组合。 TPC分别从83mg g -1干重(dw)在'bluecrop'和'duke'的叶子中变化至142mg g -1 dw,并与铅处的'duke'与他们的ara相关联。对于愈伤组织培养物中的最高ARA,以及在WP培养基上生长的“BLUECROP”中观察到94mg G-1 DW的最高TPC,用2,4-二氯苯乙酸(2,4-D)。在所有测试品种的成熟叶片中发现了高水平的奎酸,而愈伤组织培养物表现出相对增加的麦芽,琥珀酸和柠檬酸。仅在愈伤组织培养物中发现草酸。

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