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首页> 外文期刊>Plant Biotechnology Journal >Combination of reversible male sterility and doubled haploid production by targeted inactivation of cytoplasmic glutamine synthetase in developing anthers and pollen
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Combination of reversible male sterility and doubled haploid production by targeted inactivation of cytoplasmic glutamine synthetase in developing anthers and pollen

机译:通过发育中的花药和花粉的细胞质谷氨酰胺合成酶的靶向失活,可逆的雄性不育和单倍体产量翻倍相结合

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Reversible male sterility and doubled haploid plant production are two valuable technologies in F 1 ?¢????hybrid breeding. F 1 ?¢????hybrids combine uniformity with high yield and improved agronomic traits, and provide self?¢????acting intellectual property protection. We have developed an F 1 ?¢????hybrid seed technology based on the metabolic engineering of glutamine in developing tobacco anthers and pollen. Cytosolic glutamine synthetase (GS1) was inactivated in tobacco by introducing mutated tobacco GS genes fused to the tapetum?¢????specific TA29 and microspore?¢????specific NTM19 promoters. Pollen in primary transformants aborted close to the first pollen mitosis, resulting in male sterility. A non?¢????segregating population of homozygous doubled haploid male?¢????sterile plants was generated through microspore embryogenesis. Fertility restoration was achieved by spraying plants with glutamine, or by pollination with pollen matured in vitro in glutamine?¢????containing medium. The combination of reversible male sterility with doubled haploid production results in an innovative environmentally friendly breeding technology. Tapetum?¢????mediated sporophytic male sterility is of use in foliage crops, whereas microspore?¢????specific gametophytic male sterility can be applied to any field crop. Both types of sterility preclude the release of transgenic pollen into the environment.
机译:可逆的雄性不育和单倍体植物产量翻倍是F 1杂交育种中的两项有价值的技术。 F 1杂种结合了均匀性,高产和改良的农艺性状,并提供了自我代理的知识产权保护。我们基于谷氨酰胺的代谢工程开发了一种F 1混合种子技术,用于开发烟草花药和花粉。通过引入与绒毡层特异性TA29和小孢子特异性NTM19启动子融合的突变烟草GS基因,使烟草中的胞质谷氨酰胺合成酶(GS1)失活。初级转化体中的花粉在第一个花粉有丝分裂附近终止,导致雄性不育。通过小孢子胚胎发生产生了纯合的双倍单倍体雄性不育植物的非分离群体。通过向植物喷洒谷氨酰胺,或通过在含谷氨酰胺的培养基中体外成熟的花粉授粉来实现恢复肥力。可逆的雄性不育与单倍体产量翻倍相结合,形成了一种创新的环保育种技术。 Tapetum介导的孢子性雄性不育可用于观叶作物,而小孢子特异性配子体雄性不育可应用于任何大田作物。两种类型的无菌都排除了将转基因花粉释放到环境中。

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