首页> 外文期刊>Indian Journal of Experimental Biology >Reversible male sterility in transgenic tobacco carrying a dominant-negative mutated glutamine synthetase gene under the control of microspore-specific promoter
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Reversible male sterility in transgenic tobacco carrying a dominant-negative mutated glutamine synthetase gene under the control of microspore-specific promoter

机译:小孢子特异性启动子控制下携带显性负突变谷氨酰胺合成酶基因的转基因烟草中的可逆雄性不育

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摘要

Metabolic engineering was used to disrupt glutamine metabolism in microspores in order to block pollen development. We used a dominant-negative mutant (DNM) approach of cytosolic glutamine synthetase (GS1) gene under the microspore-specific promoter NTM19 to block glutamine synthesis in developing pollen grains. We observed partial male sterility in primary transgenic plants by using light microscopy, FDA, DAPI and in vitro pollen germination test. Microspores started to die in the early unicellularmicrospore stage, pollen viability in all primary transgenic lines ranged from 40-50%. All primary transgenics produced seeds like control plants, hence the inserted gene did not affect the sporophyte and was inherited through the female germline. We regenerated plants by in vitro microspore embryogenesis from 4 individual lines, pollen viability of progeny ranged from 12 to 20%, but some of them also showed 100% male sterility. After foliage spray with glutamine, 100% male-sterile plants were producedviable pollen and seed set was also observed. These results suggested that mutated GS1 activity on microspores had a significant effect on normal pollen development. Back-cross progenies (T2) of DH 100% male-sterile plants showed normal seed set like primary transgenics and control plants.
机译:为了阻止花粉的发育,使用了代谢工程技术来破坏小孢子中的谷氨酰胺代谢。我们在小孢子特异性启动子NTM19下使用了胞质谷氨酰胺合成酶(GS1)基因的显性负突变(DNM)方法来阻止花粉粒中谷氨酰胺的合成。通过光学显微镜,FDA,DAPI和体外花粉萌发测试,我们观察到了原始转基因植物中的部分雄性不育。小孢子在单细胞小孢子早期就开始死亡,所有初级转基因品系中的花粉生存力在40%至50%之间。所有初级转基因都像对照植物一样产生种子,因此插入的基因不影响孢子体,而是通过雌性种系遗传的。我们通过体外小孢子胚胎发生从4个单独的系中再生了植物,后代的花粉生存力范围为12%至20%,但其中一些还显示了100%的雄性不育。用谷氨酰胺叶面喷洒后,可以生产出100%雄性不育的花粉并观察到结实。这些结果表明,突变的GS1在小孢子上的活性对正常花粉发育有显着影响。 DH 100%雄性不育植物的回交子代(T2)显示出正常的种子集,如初级转基因植物和对照植物。

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