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转基因番茄(Lycopersicon esculentum)与类番茄茄(Solanum lycopersicoides)体细胞杂种中的染色体数目变异

Chromosome number variation in somatic hybrids between transgenic tomato (Lycopersicon esculentum) and Solanum lycopersicoides.

作者信息

Kulawiec Mariola, Tagashira Norikazu, Plader Wojciech, Bartoszewski Grzegorz, Kuć Dominik, Sniezko Renata, Malepszy Stefan

机构信息

Cell Biology Department, Maria Curie-Skłodowska University, Lublin, Poland.

出版信息

J Appl Genet. 2003;44(4):431-47.

Abstract

Leaf mesophyll protoplasts of Lycopersicon esculentum were fused with suspension-culture-derived protoplasts of Solanum lycopersicoides by a PEG treatment. Both species have the same chromosome number (2n = 2x = 24). The hybrid calli were selected using the full selection method - kanamycin resistance and culture conditions critical for L. esculentum protoplast divisions. The genomic in situ hybridization analyses indicated a hypo- and hypertetraploid character of the hybrid plant with a majority of S. lycopersicoides chromosomes and a variation in chromosome number from 46 to 53. The hybrids contained a transgene derived from L. esculentum, as shown by Southern blot hybridization and PCR analyses. Their mitochondria were derived from the wild species, S. lycopersicoides. More than 60 regenerated plants were transferred into the greenhouse. They grew very slowly and were not able to flower for almost one year. The main morphological characters of the hybrids included a single shoot and small, dark-green leaves with strongly wrinkled blades. The reasons for nuclear genome asymmetry between hybrids and the possibilities of using them in a genetic and breeding programme are discussed in this paper.

摘要

通过聚乙二醇(PEG)处理,将番茄(Lycopersicon esculentum)的叶片叶肉原生质体与类番茄茄(Solanum lycopersicoides)悬浮培养来源的原生质体进行融合。这两个物种具有相同的染色体数目(2n = 2x = 24)。利用完全选择法——卡那霉素抗性以及对番茄原生质体分裂至关重要的培养条件,筛选出杂种愈伤组织。基因组原位杂交分析表明,杂种植物具有亚四倍体和超四倍体特征,其中多数为类番茄茄的染色体,染色体数目在46到53之间变化。如Southern杂交和PCR分析所示,杂种含有来自番茄的转基因。它们的线粒体来源于野生种类番茄茄。60多株再生植株被转移到温室中。它们生长非常缓慢,近一年都无法开花。杂种的主要形态特征包括单茎以及叶片小、深绿色且叶片强烈皱缩。本文讨论了杂种中核基因组不对称的原因以及在遗传和育种计划中利用它们的可能性。

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