[转基因亚麻的发育与繁殖特点]。

Ontogenez Pub Date : 2014-11-01
V A Lemesh, T E Samatadze, E V Guzenko, E V Zhelezniakova, A V Amosova, A V Zelenin, O V Muravenko
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引用次数: 0

摘要

以亚麻品种Vasilek的下胚轴外植体为材料进行生物转化,获得了携带嵌合gfp-tua6基因遗传结构的初级转化子。利用有活力的转基因植株作为生产自交系的基础,确定了引进遗传结构的三代遗传。研究了转基因植株的物候生长期、株高、铃数和减数分裂等性状。以繁殖年限为基准对转化系进行比较,发现有一个系的种子产量显著下降。对该系I中期和I后期进行了减数分裂分析。减数分裂受损细胞比例在产量最低系的转基因植株中最高。因此,利用生物转化将遗传结构非特异性地整合到亚麻基因组中,在不同程度上损害了减数分裂,这是转基因亚麻重复性不平等的主要原因。生产稳定繁殖的转基因品系需要对减数分裂进行系统分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Features of development and reproduction of transgenic flax].

Primary transformants carrying a genetic construct with the chimeric gfp-tua6 gene were obtained using biolistic transformation of hypocotyl explants of flax variety Vasilek. Viable modified plants were used as a basis for the production of inbred lines with confirmed inheritance of introduced genetic construct in three generations. The characteristics of phenological growth stages, plant height, number of bolls and meiosis were studied for transgenic plants. A comparison of transformed lines based on reproduction years revealed a significant decrease of seed production in one line. Meiotic analysis of this line at metaphase I and anaphase I stages was conducted. The percentage of cells with impaired meiosis was highest in transgenic plants of the line with the lowest seed production. Thus, the nonspecific incorporation of genetic construct into the flax genome using biolistic transformation impairs meiosis to a different extent and it is the main reason for unequal reproducibility of transgenic flax. The production of stably reproducing transgenic lines requires systematic analysis of meiosis.

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