首页> 美国卫生研究院文献>Journal of Genetic Engineering Biotechnology >Effects of altered expression of LEAFY COTYLEDON1 and FUSCA3 on microspore-derived embryogenesis of Brassica napus L.
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Effects of altered expression of LEAFY COTYLEDON1 and FUSCA3 on microspore-derived embryogenesis of Brassica napus L.

机译:LEAFY COTYLEDON1和FUSCA3表达改变对甘蓝型油菜小孢子衍生胚胎发生的影响。

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摘要

Brassica napus (Bn) microspore-derived embryogenesis has become a model system to study basic aspects of plant development. Recognized transcription factors governing embryogenesis include: FUSCA3 (FUS3), a member of the plant-specific B3-domain family, and LEAFY COTYLEDON1 (LEC1), a member of the HAP3 subunit of the CCAAT binding factor family. The effects of altered expression of both genes were investigated during microspore-derived embryogenesis in established B. napus lines over-expressing or down-regulating BnLEC1, as well as in tilling lines where BnFUS3 was mutated. While over-expression of BnLEC1 decreases the yield of microspore-derived embryos (MDEs) without affecting their ability to regenerate plants, suppression of BnLEC1 or BnFUS3 reduced both embryo number and regeneration frequency. Embryos produced by these lines showed structural abnormalities accompanied by alterations in the expression of several embryogenesis-marker genes. Oil accumulation was also altered in the transgenic MDEs. Total oil content was increased in MDEs over-expressing BnLEC1 and decreased in those suppressing BnLEC1 or BnFUS3. Mutation of BnFUS3 also resulted in a small but significant increase in linoleic (C18:2) acid. Together this study demonstrates the crucial role of BnLEC1 and BnFUS3 during in vitro embryogenesis.
机译:甘蓝型油菜(Bn)小孢子来源的胚发生已成为研究植物发育基本方面的模型系统。控制胚胎发生的公认转录因子包括:FUSCA3(FUS3),植物特异性B3结构域家族的成员,以及LEAFY COTYLEDON1(LEC1),CCAAT结合因子家族的HAP3亚基的成员。在建立的过表达或下调BnLEC1的油菜品系中以及在BnFUS3突变的耕作品系中,在小孢子来源的胚胎发生过程中研究了两个基因表达的改变。虽然BnLEC1的过表达降低了小孢子来源的胚(MDE)的产量,却不影响其再生植物的能力,但BnLEC1或BnFUS3的抑制降低了胚数和再生频率。这些系产生的胚胎显示出结构异常,并伴随着几种胚胎发生标记基因表达的改变。转基因MDE中的油积累也发生了变化。总油含量在过表达BnLEC1的MDE中增加,而在抑制BnLEC1或BnFUS3的MDE中降低。 BnFUS3的突变还导致亚油酸(C18:2)的酸有少量但显着的增加。这项研究共同证明了 BnLEC1 BnFUS3 体外胚胎发生中的关键作用。

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