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首页> 外文期刊>The Plant Cell >Altered Transcription and Neofunctionalization of Duplicated Genes Rescue the Harmful Effects of a Chimeric Gene in Brassica napus
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Altered Transcription and Neofunctionalization of Duplicated Genes Rescue the Harmful Effects of a Chimeric Gene in Brassica napus

机译:改变的转录和重复基因的新官能化拯救了胆结构在甘蓝型油菜中的嵌合基因的有害影响

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摘要

Chimeric genes contribute to the evolution of diverse functions in plants and animals. However, new chimeric genes also increase the risk of developmental defects. Here, we show that the chimeric gene Brassica napus male sterile 4 (Bnams4(b)) is responsible for genic male sterility in the widely used canola line 7365A (Bnams3 ms3ms4(b)ms4(b)). Bnams4b originated via exon shuffling; similar to 4.6 million years ago. It causes defects in the normal functions of plastids and induces aborted anther formation and/or albino leaves and buds. Evidence of the age of the mutation, its tissue expression pattern, and its sublocalization indicated that it coevolved with BnaC9. Tic40 (BnaMs3). In Arabidopsis thaliana, Bnams4(b) results in complete male sterility that can be rescued by BnaC9. Tic40, suggesting that BnaC9. Tic40 might restore fertility through effects on protein level. Another suppressor gene, Bnams4(a), rescues sterility by reducing the level of transcription of Bnams4b. Our results suggest that Brassica plants have coevolved altered transcription patterns and neofunctionalization of duplicated genes that can block developmental defects resulting from detrimental chimeric genes.
机译:嵌合基因有助于植物和动物各种功能的演变。然而,新的嵌合基因也增加了发育缺陷的风险。在这里,我们表明,嵌合基因芸苔Napus雄性无菌4(Bnams4(B))负责在广泛使用的Catola线7365A(Bnams3 MS3MS4(B)MS4(B))中的基因雄性不育。 Bnams4b源于外显子洗牌;类似于460万年前。它导致体积正常功能中的缺陷,并诱导中止的花药形成和/或白化叶片和芽。突变年龄的证据,其组织表达模式及其子卟啉化表明它与BNAC9共源。 TIC40(Bnams3)。在Arabidopsis Thaliana中,Bnams4(B)导致完全雄性不育,可以通过BNAC9救出。 TIC40,建议BNAC9。 TIC40可能会通过对蛋白质水平的影响来恢复生育能力。另一个抑制基因,Bnams4(a),通过降低Bnams4b的转录水平来拯救无菌。我们的研究结果表明,芸苔植物的转录模式和重复基因的新官能化,可阻断有害的嵌合基因导致产生的发育缺陷。

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    《The Plant Cell》 |2016年第9期|共19页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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