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首页> 外文期刊>African Journal of Biotechnology >Minimizing the hyperhydricity associated with in vitro growth and development of watermelon by modifying the culture conditions
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Minimizing the hyperhydricity associated with in vitro growth and development of watermelon by modifying the culture conditions

机译:通过改变培养条件使与西瓜的体外生长发育相关的过高水分降至最低

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Hyperhydricity or glassiness is considered as a frequent problem?associated with thein vitro?growth and development of watermelon (Citrulus lanatus, cv. Giza 1). Explants were cultured?on MS (Murashige and Skoog, 1962) medium containing 6-bensyladenine (BA), kinetin (Kin) or thidiazuron (N-phenyl N 1,2,4-chlorophenoxyacetic acid) (TDZ) each applied at 0, 0.25, 0.5, 1, 2 and 4 mg L-1). The highest number of regenerating shoots per explants MS medium containing 0.5 mg/l TDZ proved to be the most efficient in the induction of adventitious organogenesis, while BA applied at 2 mg L-1?was the most efficient in axillary shoot proliferation.? Increase in BA concentration (above 2 mg L-1) gave multiple shoots and led to more pronounced hyperhydricity, while the use of 1 mg L-1?facilitated single-shoot growth with relatively lower incidence of hyperhydricity. Substitution of agar (10 g L-1) with gelrite (4 g L-1) in the medium as well as improving vessel aeration reduced occurrence of hyperhydricity. Provision for aeration was relatively superior to other approaches, but it led to faster dehydration of medium and limited growth of cultures. Rooted shoots produced on half strength MS medium with aeration, and 0.5 mg L-1indole 3-butyric acid (IBA)?were transferred to pots and acclimatized in green-house with a survival rate of 80%.
机译:高水分或玻璃化被认为是一个常见的问题,与西瓜的体外生长和发育有关(Citrulus lanatus,cv。Giza 1)。外植体在MS(Murashige和Skoog,1962)培养基上培养,该培养基含有6-苄基腺嘌呤(BA),激动素(Kin)或噻二氮隆(N-苯基N 1,2,4-氯苯氧乙酸)(TDZ),每次施加0, 0.25、0.5、1、2和4 mg L-1)。每个外植体的再生芽的最高数量含有0.5 mg / l TDZ的MS培养基被证明是诱导不定器官发生最有效的方法,而BA以2 mg L-1?施用对腋生芽的增殖最有效。 BA浓度的增加(高于2 mg L-1)会产生多次芽并导致更明显的高水度,而使用1 mgL-1α则促进单次生长,而高水度的发生率相对较低。在培养基中用琼脂糖(4 g L-1)代替琼脂(10 g L-1)并改善血管通气,减少了高水合的发生。曝气的准备工作相对优于其他方法,但它导致了培养基的更快脱水和有限的培养物生长。在半强度MS培养基上通气生根,将0.5 mg L-1吲哚3-丁酸(IBA)转移到盆中并在温室中驯化,成活率为80%。

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