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贡蕉胚性细胞悬浮系的建立和植株再生
引用本文:魏岳荣, 黄学林, 李佳, 黄霞, 李哲, 李筱菊,.贡蕉胚性细胞悬浮系的建立和植株再生[J].生物工程学报,2005,21(1):58-65.
作者姓名:魏岳荣  黄学林  李佳  黄霞  李哲  李筱菊  
作者单位:1. 中山大学生命科学院教育部基因工程重点实验室,广州,510275;广东省农业科学院果树研究所,广州,510640
2. 中山大学生命科学院教育部基因工程重点实验室,广州,510275
基金项目:广东省自然科学基金 (No.70 112 6,No.0 3 1995 )资助~~。
摘    要:鲜食蕉品种的高度不育性和多倍性制约了用传统育种方法培育生产实践中所需的新品种 ,建立稳定的胚性细胞悬浮系是香蕉生物技术育种的前提。以目前国内尚未建立该体系的鲜食蕉品种贡蕉 (AA)未成熟雄花序的第 1~ 15位花梳为外植体 ,对胚性细胞悬浮系的建立和植株再生体系进行了优化。结果表明 ,5~ 6个月的培养后可获得分生小球体和浅黄色、松散易碎的胚性愈伤组织。 9μmol/L 2,4 D对外植体愈伤组织的诱导效果最好 ,诱导率为 40.96 % ,胚性愈伤组织诱导率可达7.45 % ,其中5.79%的胚性愈伤组织来源于第 6~12号位置的花梳。胚性愈伤组织悬浮培养后 ,通过 3个月的筛选和继代培养 ,可得到均质的胚性细胞悬浮系。该培养体系合适继代周期为 15d ,继代时合适的起始接种量为每 30mL培养基加 2mLPCVECS。培养 6个月的胚性细胞在体细胞胚诱导培养基中培养15d后可见到白色半透明体细胞胚的发生 ,体细胞胚诱导率为 2 80× 103个 mLPCV。成熟体细胞胚的萌发率为 17 2 8% ,其中发育成正常的再生植株的百分率为 14 16 %。

关 键 词:香蕉    雄花序    胚性细胞悬浮系    体细胞胚    植株再生  
文章编号:1000-3061(2005)01-0058-08
修稿时间:2004年6月7日

Establishment of Embryogenic Cell Suspension Culture and Plant Regeneration of Edible Banana Musa acuminata cv. Mas (AA)
WEI Yue Rong ,HUANG Xue Lin ,LI Jia ,HUANG Xia ,LI Zhe and LI Xiao Ju The Key Laboratory of Gene Engineering of Ministry of Education,School of Life Sciences,Zhongshan.Establishment of Embryogenic Cell Suspension Culture and Plant Regeneration of Edible Banana Musa acuminata cv. Mas (AA)[J].Chinese Journal of Biotechnology,2005,21(1):58-65.
Authors:WEI Yue Rong    HUANG Xue Lin  LI Jia  HUANG Xia  LI Zhe and LI Xiao Ju The Key Laboratory of Gene Engineering of Ministry of Education  School of Life Sciences  Zhongshan
Institution:Sun Yat sen
Abstract:Conventional breeding for dual resistance of disease and pest of Musa cultivars remains a difficult endeavor, as the plant is polyploidic and high in sterility. Biotechnological techniques, eg., genetic engineering, in vitro mutation breeding, or protoplast fusion, may overcome the difficulties and improve the germplasm. Establishment of a stable embryogenic cell suspension (ECS) is a prerequisite for any of the biotechnological breeding methods. In this study an embryogenic cell suspension was established from immature male flower of Musa acuminata cv. Mas (AA), a popular commercial variety of banana in the South-East Asian region. After culture for 5-6 months on callus induction media, which consisted of MS salts, different concentrations of 2,4-dichlorophenoxyacetic acid (2,4-D), 4.1 micromol/L biotin, 5.7 micromol/L indoleacetic acid (IAA), 5.4 micromol/L naphthaleneacetic acid (NAA), other vitamins, 87 mmol/L sucrose, and solidified with 7 g/L agarose, meristematic globules and yellow, friable embryogenic cultures were induced from the explants of 1-15th row young floral hands of immature male flowers. Of the four treatments of 2,4-D, 9 micromol/L was the most effective on the callus induction, it transformed 40.96% and 7.45% of the cultivated male floral hands into callus and embryogenic callus respectively. The explants to produce highest frequency of the embryogenic calli were floral hands of 6 to 12th rows, which generated 5.79% of the embryogenic calli. Suspension cultures were initiated from these embryogenic calli in liquid medium supplemented with 4.5 micromol/L 2, 4-D. After sieving selection of the cultures using a stainless steel metallic strainer with pore sizes of 154 microm at 15 day intervals for 3 months, homogeneous and yellow embryogenic cell suspensions, composed of single cells and small cell aggregates, were established. Based upon the growth quantity and growth rate of ECS, it was determined that the appropriate inoculum was 2.0 mL PCV ECS/30 mL medium in 100 mL flask, and the appropriate subculture cycle was 15 days. Planting of 6 months old ECS on semi-solid medium of somatic embryo induction and development (MSD) resulted in approximately 280 x 10(3) somatic embryos/mL PCV ECS. MSD contained SH macronutrients, micro-nutrients, Fe-EDTA and MS vitamins supplemented with 4.5 micromol/L biotin, 680 micromol/L glutamine, 2 mmol/L proline, 100 mg/L malt extract, 1.1 micromol/L NAA, 0.2 micromol/L zeatin, 0.5 micromol/L kinetin, 0.7 micromol/L N6-(2-isopentenyl) adenine, 29 mmol/L lactose, 130 mmol/L sucrose and solidified with 2g/L gelrite. After 3 months of maturity on MSD, 17.28% of the somatic embryos were germinated on germination media (MG), consisted of MS salt, Morel and Wetmore vitamins, 0.2 micromol/L 6-BA, 1.1 micromol/L IAA, 87 micromol/L sucrose and solidified with 2 g/L gelrite; and 14.16% of the somatic embryos could develop into normal plantlets on rooting media contained the same composition as that of MG but without auxin and cytokinin.
Keywords:banana  male inflorescences  embryogenic cell suspension  somatic embryo  plant regeneration
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