首页> 外文期刊>Russian Journal of Plant Physiology >24-epibrassinolide effects on in vitro callus tissue formation, growth, and regeneration in wheat varieties with contrasting drought resistance
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24-epibrassinolide effects on in vitro callus tissue formation, growth, and regeneration in wheat varieties with contrasting drought resistance

机译:对比抗旱性抗性的小麦品种中的24倍蛋白醇醚对小麦品种的体外愈伤组织形成,生长和再生作用

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Effects were investigated of kinetin replacement on 24-epibrassinolide (24-EB) in the in vitro cultured embryonic explants that were obtained from two varieties of spring soft wheat (Triticum aestivum L.)- Bashkirskaya 26 (drought resistant) and Salavat Yulaev (weakly resistant), differing in drought resistance, on the calli formation, its growth indices, contents of ABA and cytokinins, morphological and histological parameters, as well as their regenerative capacity. The resistant Bashkirskaya 26 variety, in contrast to the Salavat Yulaev variety, was characterized by a significantly higher frequency of calli formation in the culture of immature embryos on the 24-EB induction medium, higher increase in fresh and dry weights, and a large number of morphogenetic centers. On the medium containing kinetin, the Salavat Yulaev calli were characterized by an increased level of ABA throughout the experiment with a maximum of 15-25 days, whereas, in the Bashkirskaya 26 calli, the maximum ABA accumulation occurred on the seventh to 11th day of cultivation, after which a decrease in the hormone content was observed. It was found that calli of both varieties cultivated on the 24-EB medium against the background of absence in the ABA content changes were characterized by an increased content of endogenous cytokinins, especially significant in Bashkirskaya 26 calli. Calli of both varieties were characterized by a high regenerative capacity in all the studied variants of the regeneration medium. At the same time, the maximum capacity for regeneration and formation of regenerants with a single callus were revealed by replacing kinetin with 24-EB, especially pronounced in a resistant variety. The combination of the results obtained demonstrates the efficacy of 24-EB introducing instead of kinetin into the in vitro culture medium for explants of two varieties of spring soft wheat that differ in drought resistance, as evidenced by an increase in the frequency of callus formation from immature embryos, as well as the number of morphogenetic centers in the resulting calli.
机译:在体外培养的胚胎外植体中研究了运动蛋白替代的效果(24-EB),这些胚胎外胚胎(Triticum aestivum L.) - Bashkirskaya 26(干旱)和Salavat Yulaev(弱抗旱性抗性不同,对愈伤组织形成,其生长索引,ABA和细胞蛋白的内容,形态学和组织学参数,以及它们的再生能力。与Salavat Yulaev品种相比,抗性Bashkirskaya 26种类的特征在于24-EB诱导培养基的未成熟胚胎培养中的Calli形成频率明显较高,新鲜干重的增加,并且大量增加形态发生的中心。在含有Kinetin的培养基上,Salavat Yulaev Calli的特征在于整个实验中的ABA水平增加,最多15-25天,而在Bashkirskaya 26 Calli中,第七至第11天发生了最大的ABA积累培养,之后观察到激素含量的降低。结果发现,在24-EB培养基上培养的两种品种的愈伤组织在ABA含量变化中缺席的背景下,其特征是内源性细胞蛋白的含量增加,尤其是Bashkirskaya 26 Calli。两种品种的Calli的特征在于再生培养基的所有研究变体中的高再生能力。同时,通过用24-EB替代运动蛋白,特别是在抗性多样化的情况下,揭示了具有单个愈伤组织的最大再生能力和具有单个愈伤组织的再生容量。所获得的结果的组合证明了24-EB介绍而不是Kinetin进入体外培养基中的春季软麦的外培养介质,这些柔软小麦的抗旱性不同,如愈伤组织形成频率的增加所证明未成熟的胚胎,以及由此产生的Calli中的形态发生中心的数量。

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