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从培养甜菜悬浮培养物中分离原生质体和再生愈伤组织。

Isolation of protoplasts and regeneration of callus from suspension cultures of cultivated beets.

机构信息

Department of Plant Biology, University of Birmingham, P.O. Box 363, B15 2TT, Birmingham, UK.

出版信息

Plant Cell Rep. 1985 Dec;4(6):348-50. doi: 10.1007/BF00269896.

Abstract

Conditions necessary for the isolation and culture of protoplasts from suspension cultures of sugar, fodder and garden beets were investigated. Good yields of protoplasts were obtained by treating cells with a mixture of cellulase, Macerozyme and Driselase enzymes. Nutritional requirements of beet protoplasts were found to be quite simple: protoplasts could be cultured in MS, B5 or PGo based media with 0.4 M glucose with the optimum result being produced on KM8p medium. Plating efficiency (P.E) was genotype-dependent with the sugar beet giving better P.E. than the fodder or garden beets used, and higher values being achieved with the use of desalted Driselase for isolation followed by culture on KMBp medium.

摘要

研究了从糖料、饲料和花园甜菜悬浮培养物中分离和培养原生质体的必要条件。通过用纤维素酶、Macerozyme 和 Driselase 酶混合物处理细胞,获得了良好的原生质体产量。发现甜菜原生质体的营养需求相当简单:可以在 MS、B5 或 PGo 基础培养基中用 0.4 M 葡萄糖培养原生质体,在 KM8p 培养基上得到最佳结果。平板效率 (PE) 与基因型有关,糖甜菜的 PE 优于使用的饲料或花园甜菜,并且使用脱盐 Driselase 进行分离,然后在 KMBp 培养基上培养,可获得更高的值。

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