首页> 外文期刊>Journal of food, agriculture & environment >Efficient plant regeneration of Begonia semperflorens and Begonia spp. from petioleand leaf explants
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Efficient plant regeneration of Begonia semperflorens and Begonia spp. from petioleand leaf explants

机译:四季海棠和秋海棠的高效植物再生。来自叶柄和叶外植体

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Efficient plant regeneration of intended genotypes is a prerequisite for the genetic modifications, mutation breeding and in vitro somaclones production. Petiole and leaf segments of two begonia genotypes, Begonia semperflorens cv. "Eureka" and Begonia spp. were used for in vim adventitious bud induction and plant regeneration. Begonia spp. is 6* selfing generation after crossing B. semperflorens and Begonia x hybrida cv. "Dragon Wings". Excised explants were placed on agar-solidified Murashige and Skoog (MS) media supplemented with 0.2 mg 11 naphthalene-acetic acid (NAA) + 0.5 mg 1' 6-benzylaminopurine (BA) (MS 1-treatment 1) or thidiazuron (TDZ) (MS2-treatment 2), or were soaked in liquid Vj ms medium supplemented with 9.0 mg t' BA (MSBA) or TDZ (MSTDZ) and then transferred to hormone-free MS medium (MSHF) (treatment 3 and4, respectively). Initial necrosis of explants was a considerable problem in this study. The highest percentage of necrosis occurred when explants, especially leaf explants, were exposed to a high concentration of B A or TDZ (treatments 3 and 4) and then transferred to MSHF medium. Explants that survived formed adventitious buds with different rates of efficiency depending on genotype and treatment. B. semperflorens cv. Eurekaformed, in average, adventitious buds on 47.3% and Begonia spp. on 13% of explants. The mean percentages of adventitious bud formation recorded in treatment 3 (55.0%) and 4 (53.7%) were significantly higher than in treatments 1 (32.1%) and 2 (16.8%). Petiole and leaf explants responded to bud induction with similar efficiency (31 % and 29.3%, respectively). The final regeneration efficiency expressed as a number of shoots per responding explant significantly differed only according to explant type. Petiole explants produced in average 5.3 and leaf explants only 1.7 shoots per responding explant. Efficient plant regeneration of Begonia spp. genotype indicates that homozygous parental lines of wax begonias could be amenable to efficient in vitro regeneration. Different treatments resulted with similar mean number of shoots per responding explant (2.9 - 4.1), but the treatments with BA could be recommended for plant regeneration as it induced normal shoots, while TDZ caused stunted growth.
机译:预期基因型的有效植物再生是遗传修饰,突变育种和体外体细胞克隆生产的前提。两种秋海棠基因型(秋海棠)的叶柄和叶节。 “尤里卡”和秋海棠属。用于不定芽诱导和植物再生。秋海棠B. semperflorens和Begonia x hybrida cv交配后有6 *自交代。 “龙之翼”。将切出的外植体置于琼脂固化的Murashige和Skoog(MS)培养基中,该培养基补充有0.2 mg 11萘乙酸(NAA)+ 0.5 mg 1'6-苄基氨基嘌呤(BA)(MS 1处理1)或噻二唑(TDZ) (MS2处理2),或浸泡在补充了9.0 mg t'BA(MSBA)或TDZ(MSTDZ)的液体Vj ms培养基中,然后转移到无激素的MS培养基(MSHF)中(分别为处理3和4)。外植体的最初坏死在该研究中是一个相当大的问题。当外植体(尤其是叶外植体)暴露于高浓度的BA或TDZ(处理3和4),然后转移到MSHF培养基中时,坏死率最高。存活下来的外植体形成不定芽,其效率取决于基因型和处理方式而不同。 B. semperflorens简历。尤里卡形不定芽平均占47.3%,秋海棠属。在13%的外植体上处理3(55.0%)和4(53.7%)中记录的不定芽形成的平均百分比显着高于处理1(32.1%)和2(16.8%)。叶柄和叶外植体对芽诱导的响应效率相似(分别为31%和29.3%)。最终的再生效率以每个响应外植体的芽数表示,仅根据外植体类型而有显着差异。每个响应的外植体平均产生5.3个叶柄外植体,而叶外植体仅产生1.7个芽。秋海棠的高效植物再生。基因型表明蜡秋海棠的纯合亲本系可能适合有效的体外再生。不同处理导致每个响应外植体具有相似的平均芽数(2.9-4.1),但是可以建议使用BA处理进行植物再生,因为它可以诱导正常的芽,而TDZ则导致发育迟缓。

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