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Callogenesis and cell suspension establishment of tropical highland blackberry (Rubus adenotrichos Schltdl.) and its microscopic analysis

机译:热带高原黑莓(Rubus adenotrichos Schltdl。)的愈伤组织形成和细胞悬浮液的建立及其显微分析

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摘要

Blackberries are fruits produced worldwide, with 25 % of their production centered in Mexico, Central and South America. Tropical highland blackberry is a fruit that can potentially enhance human health, due to their high content in phenolic compounds, which include anthocyanins, phenolic acids, tannins (gallotannins and elagitannins) and flavonoids. Therefore, the overall aim of this study is the development of a callus induction protocol, the establishment of blackberry cell suspensions (Rubus adenotrichos Schltdl.) and their cell analysis through optical microscopy and TEM, for the potential production of phenolic compounds. In order to produce callogenesis, segments of blackberry leaves were disinfected and placed in different concentrations of 2,4-D and the control media (0; 0.5; 1.0; 1.5; 2.0; 2.5 and 3.0 mg/l of 2,4-D); obtaining the higher size of calli in the medium with 1.5 mg/l of 2,4-D. After this determination, and for this specific treatment, a growth curve was performed through the use of fresh and dry weight parameters, in order to identify each of the growth stages. Furthermore, the calli obtained from the 1.5 mg/l of 2,4-D treatment were placed in two different culture media (MS and MS supplemented with 1.5 mg/l of 2,4-D) in order to establish the cell suspensions and the growth curve. To the best treatment, the total polyphenols were also quantified. It was determined that the MS medium is ideal for the growth and disintegration of the cell suspensions, obtaining 0.0256 mg of gallic acid/g of fresh sample. Finally, a cell callus and cell suspension analysis was performed through OM and TEM, evidencing a higher hystological differentiation in the calli, as well as the observation of antioxidant storage in the plastids.
机译:黑莓是世界各地生产的水果,其生产的25%集中在墨西哥,中美洲和南美洲。热带高地黑莓是一种水果,可以提高人体健康,因为它们在酚类化合物中含量很高,其中包括花青素,酚酸,单宁(半乳鞣质和鞣花单宁)和类黄酮。因此,这项研究的总体目标是开发愈伤组织诱导方案,建立黑莓细胞悬浮液(Rubus adenotrichos Schltdl。)并通过光学显微镜和TEM对它们进行细胞分析,以潜在地生产酚类化合物。为了产生愈伤组织,将黑莓叶的片段消毒并置于不同浓度的2,4-D和对照培养基中(0; 0.5; 1.0; 1.5; 2.0; 2.5和3.0 mg / l的2,4-D );在1.5 mg / l的2,4-D培养基中获得更高的愈伤组织大小。在确定之后,对于该特定处理,通过使用新鲜和干重参数来绘制生长曲线,以识别每个生长阶段。此外,将从1.5 mg / l的2,4-D处理中获得的愈伤组织置于两种不同的培养基(MS和补充有1.5 mg / l的2,4-D的培养基)中,以建立细胞悬液和增长曲线。为了得到最佳治疗,还对总多酚进行了定量。经测定,MS培养基非常适合细胞悬浮液的生长和分解,每克新鲜样品可获得0.0256毫克没食子酸。最后,通过OM和TEM进行了细胞愈伤组织和细胞悬浮液分析,证明了愈伤组织中具有更高的Hystological分化,并观察到了质体中抗氧化剂的储存。

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