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首页> 外文期刊>Planta: An International Journal of Plant Biology >A two-step mutation process in the double WS1 homologs drives the evolution of burley tobacco, a special chlorophyll-deficient mutant with abnormal chloroplast development
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A two-step mutation process in the double WS1 homologs drives the evolution of burley tobacco, a special chlorophyll-deficient mutant with abnormal chloroplast development

机译:双WS1同源物中的两步突变过程推动了伯利烟草的演变,一种特殊的叶绿素缺陷突变体,具有异常的叶绿体发育

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Burley represents a special type of tobacco (Nicotiana tabacum L.) cultivar that is characterized by a white stem with a high degree of chlorophyll deficiency. Although important progress in the research of burley tobacco has been made, the molecular mechanisms underlying this character remain unclear. Here, on the basis of our previous genetic analyses and preliminary mapping results, we isolated the White Stem 1A (WS1A) and WS1B genes using a map-based cloning approach. WS1A and WS1B are functional homologs with completely identical biological functions and highly similar expression patterns that control the burley character in tobacco. WS1A and WS1B are derived from Nicotiana sylvestris and Nicotiana tomentosiformis, the diploid ancestors of Nicotiana tabacum, respectively. The two genes encode zinc metalloproteases of the M50 family that are highly homologous to the Ethylene-dependent Gravitropism-deficient and Yellow-green 1 (EGY1) protein of Arabidopsis and the Lutescent 2 (L2) protein of tomato. Transmission electron microscopic examinations indicated that WS1A and WS1B are involved in the development of chloroplasts by controlling the formation of thylakoid membranes, very similar to that observed for EGY1 and L2. The genotyping of historical tobacco varieties revealed that a two-step mutation process occurred in WS1A and WS1B during the evolution of burley tobacco. We also discussed the strategy for gene map-based cloning in polyploid plants with complex genomes. This study will facilitate the identification of agronomically important genes in tobacco and other polyploid crops and provide insights into crop improvement via molecular approaches.
机译:Burley代表了一种特殊类型的烟草(尼古利亚塔巴托姆L.)品种,其特征在于具有高叶绿素缺乏的白色茎。虽然已经进行了奶酪烟草研究的重要进展,但这种角色的分子机制仍然不清楚。在此,在我们之前的遗传分析和初步映射结果的基础上,我们使用基于地图的克隆方法分离白干1A(WS1A)和WS1B基因。 WS1A和WS1B是具有完全相同的生物学功能的功能同源物,以及控制烟草中的Burley字符的高度相似的表达模式。 WS1A和WS1B源自尼古拉斯·西尔维斯特和尼古罗尼亚州塔比特尼古洛伊纳塔巴州的二倍体祖先。两种基因编码M50家族的锌金属蛋白酶,其与拟南芥的乙烯依赖性祖先缺乏和黄绿1(EGY1)蛋白质和番茄的荧光2(L2)蛋白质高度同源。透射电子显微镜检查表明,通过控制囊体膜的形成,WS1A和WS1B参与叶绿体的发育,与egy1和L2观察到的那样。历史烟草品种的基因分型显示,在伯利烟草的演变期间,在WS1A和WS1B中发生了两步突变过程。我们还讨论了复杂基因组的基于基于基于基因图的克隆策略。本研究将促进烟草和其他多倍体作物中的农艺学重要基因的鉴定,并通过分子方法提供作物改善的见解。

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