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Differential Regeneration Response in Two Cotyledon Types of Vigna radiata: Histomorphological Analysis and Effect of β-arabinogalactan

机译:两种子叶Vigna radiata的差异再生响应:β-阿拉伯半乳聚糖的组织形态学分析和作用

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A unique differential regeneration response of the two cotyledon types, 'Cot E' (attached to the embryonal axis) and 'Cot' was reported earlier in Vigna radiata. The histological study revealed that there is a temporal difference in meristemoid development between 'Cot E' and 'Cot'. The meristematic tissue differentiate directly from the epidermal/sub-epidermal layers of 'Cot E', whereas, callus mediated differentiation occurs in the 'Cot'. It was observed that the frequency of shoot differentiationin 'Cot' explants increased distinctively when 20 mg l~(-1) of β-Arabinogalactan (β-ABG) was supplemented in the medium and an altered mode of regeneration was noted like that of 'Cot E'. While, under the same condition, the regeneration frequency decreased substantially in 'Cot E' and the explants became necrotic. The results indicate that the de-embryonated 'Cot E' grown in vitro contain more endogenous arabinogalactan proteins (AGPs) than 'Cot', presumably due to the wound formation during excision, as AGP is wound inducible. And perhaps due to the feed back inhibition, addition of β-ABG to the differentiation-inducing medium either resulted in necrosis of 'Cot E' or sharp decrease in regeneration efficiency. It was postulated that glycosylationof cytosolic peptides occurs when β-ABG was supplemented externally in the culture medium and resulted in AGP synthesis. Presence of AGP in the cotyledonary tissues was demonstrated through gel electrophoretic study and also verified by histo-chemical localization in these explant types. This is the first report showing presence of AGP in V. radiata. The dose dependent phytohormone like effect of β-ABG suggests its role as precursor for a novel 'growth regulator', AGP.
机译:早在Vigna radiata中已报道了两种子叶类型“ Cot E”(附着在胚轴上)和“ Cot”的独特差异再生反应。组织学研究表明,“ Cot E”和“ Cot”之间的间质发展存在时间差异。分生组织直接与“ Cot E”的表皮/表皮下层分化,而愈伤组织介导的分化发生在“ Cot E”中。观察到,当在培养基中添加20 mg l〜(-1)的β-阿拉伯半乳聚糖(β-ABG)时,'Cot'外植体中芽分化的频率显着增加,并且注意到再生方式发生了变化,如'婴儿床E'。在相同条件下,“ Cot E”的再生频率大大降低,外植体坏死。结果表明,在体外生长的去胚的“ Cot E”比“ Cot”包含更多的内源性阿拉伯半乳聚糖蛋白(AGP),大概是由于切除过程中的伤口形成,因为AGP是伤口可诱导的。也许是由于反馈抑制作用,向分化诱导培养基中添加β-ABG可能导致“ Cot E”坏死或再生效率急剧下降。据推测,当在培养基中外部补充β-ABG并导致AGP合成时,会发生胞质肽的糖基化。通过凝胶电泳研究证明了子叶组织中存在AGP,并且通过这些外植体类型中的组织化学定位也证实了AGP的存在。这是第一份报告显示辐射弧菌中存在AGP。 β-ABG的剂量依赖性植物激素样作用表明其作为新型“生长调节剂” AGP的前体。

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