蔗糖和赤霉素对肯尼亚当地马铃薯(Solanum tuberosum L.)品种体外生长和存活的影响

Felista Mutheu Makau, M. Mwangi, Maurice Edward Oyoo, A. M. Kibe, J. Oggema
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引用次数: 2

摘要

组织培养技术在发达国家已成为生产无病虫害马铃薯(Solanum tuberosum L.)的有效技术。然而,这些技术还没有在肯尼亚当地生产的马铃薯品种中标准化。发展中国家还可以利用这些创新技术,通过从植株或微型块茎中产生的根尖扦插,快速繁殖当地流行的种子材料。为此,通过离体试验确定蔗糖和赤霉素对本地马铃薯品种“尚宜”、“尤尼卡”和“万季库”生长和存活的最适浓度。外植体在添加蔗糖浓度为20、30和40 mg -1的Murashige和Skoog (MS)培养基中培养,赤霉素浓度为0.2、0.5和1.0 mg -1。本研究采用完全随机设计(CRD)。添加蔗糖40 mg -1和赤霉素0.5 mg -1的MS培养基显著增加了植株的茎长,万吉库植株的茎长最长,达到10.3cm。同样的处理也使植株存活率最高,达到90%。推荐在添加0.5 mg -1赤霉素酸和40 mg -1蔗糖的Murashige和Skoog培养基中培养万吉库、unita和shangi根茎插条,因为它对离体克隆生长有最好的促进作用。
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Effects of Sucrose and Gibberellic Acid on Growth and Survival of Local Potato (Solanum tuberosum L.) Varieties in vitro in Kenya
Tissue culture techniques’ have become useful technologies for producing disease & pest free seed potato (Solanum tuberosum L.) in the developed world. However, these techniques have yet to be standardized for locally produced potato varieties in Kenya.  Developing countries can also use these innovations for rapid multiplication of popular local seed material through rooted apical cuttings generated from either plantlets or micro tubers.  In vitro experiments were therefore conducted to determine the optimum concentration of sucrose and gibberellic acid for growth and survival of local potato varieties, namely, Shangi, Unica and Wanjiku.  The explants were cultured in Murashige and Skoog (MS) media supplemented with sucrose at a concentration of 20, 30 and 40 gL-1, while gibberellic acid was applied at a concentration of 0.2, 0.5 and 1.0 mgL-1. The study was laid out in a completely randomized design (CRD).  MS Medium with sucrose 40 gL-1and gibberellic acid 0.5 mgL-1 significantly enhanced shoot length, with the longest shoot  (10.3cm) being recorded for Wanjiku.  The same treatment also gave the highest plant survival of 90%. Murashige and Skoog media, added with 0.5 mgL-1 gibberellic acid along with 40 gL-1 sucrose is recommended for generating wanjiku, unica and shangi apical rooted cuttings because it gave the best improvement of in-vitro clonal growth.
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