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首页> 外文期刊>Indian Journal of Experimental Biology >A microdroplet cell culture based high frequency somatic embryogenesis system for pigeonpea, Cajanus cajan (L.) Millsp.
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A microdroplet cell culture based high frequency somatic embryogenesis system for pigeonpea, Cajanus cajan (L.) Millsp.

机译:一种基于微滴细胞培养的木豆高频植物体胚发生系统,Cajanus cajan(L.)Millsp。

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摘要

A protocol for high frequency production of somatic embryos was worked out in pigeonpea, Cajanus cajan (L.) Millsp. The protocol involved sequential employment of embryogenic callus cultures, low density cell suspension cultures and a novel microdroplet cell culture system. The microdroplet cell cultures involved culture of a single cell in 10 mu 1 of Murashige and Skoog's medium supplemented with phytohormones, growth factors and phospholipid precursors. By employing the microdroplet cell cultures, single cells in isolation were grown into cell clones which developed somatic embryos. Further, 2,4-dichlorophenoxyacetic acid, kinetin, polyethylene glycol, putrescine, spermine, spermidine, choline chloride, ethanolamine and LiC1 were supplemented to the low density cell suspension cultures and microdroplet cell cultures to screen for their cell division and somatic embryogenesis activity. Incubation of callus or the inoculum employed for low density cell suspension cultures and microdroplet cell cultures with polyethylene glycol was found critical for induction of somatic embryogenesis. Somatic embryogenesis at a frequency of 1.19, 3.16 and 6.51 per 10(6) cells was achieved in the callus, low density cell suspension cultures and microdroplet cell cultures, respectively. Advantages of employing microdroplet cell cultures for high frequency production of somatic embryos and its application in genetic transformation protocols are discussed.
机译:在木豆Cajanus cajan(L.)Millsp中制定了高频产生体细胞胚的方案。该协议涉及顺序使用胚性愈伤组织培养物,低密度细胞悬浮培养物和新型微滴细胞培养系统。微滴细胞培养涉及在补充有植物激素,生长因子和磷脂前体的10μlMurashige和Skoog培养基中培养单个细胞。通过使用微滴细胞培养物,将分离的单个细胞生长为发育体细胞胚的细胞克隆。此外,向低密度细胞悬浮培养物和微滴细胞培养物中补充2,4-二氯苯氧基乙酸,激动素,聚乙二醇,腐胺,精胺,亚精胺,氯化胆碱,乙醇胺和LiCl,以筛选其细胞分裂和体细胞胚发生活性。发现用于聚乙二醇的低密度细胞悬浮培养和微滴细胞培养的愈伤组织或接种物的培养对于诱导体细胞胚发生至关重要。在愈伤组织,低密度细胞悬浮培养和微滴细胞培养中,分别以每10(6)个细胞1.19、3.16和6.51的频率发生体细胞胚发生。讨论了使用微滴细胞培养物进行体细胞胚高频率生产的优势及其在遗传转化方案中的应用。

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