中国农业科学

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最新录用sua-CMS烟草不育系COXⅡ的功能分析

望锦1,2,刘艳芳1,刘文文3,王雅琦1,2,宋时洋1,2,张幸子1,2,李凤霞1
  

  1. 1中国农业科学院烟草研究所,山东青岛266100;2中国农业科学院研究生院,北京100081;3中国科学院青岛生物能源与过程研究所,山东青岛266100
  • 出版日期:2023-06-12 发布日期:2023-06-12

COX functional analysis in tobacco sua-CMS line

WANG Jin1,2, LIU YanFang1, LIU WenWen3, WANG YaQi1,2, SONG ShiYang1,2, ZHANG XingZi1,2, LI FengXia1*    

  1. 1tobbcco Research Institute of Chinese Academy of Agricultural Sciences, Qingdao 266100, Shandong; 2Chinese Academy of Agricultural Sciences, Beijing 100081; 3Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266100, Shandong
  • Published:2023-06-12 Online:2023-06-12

摘要: 【目的】细胞质雄性不育由细胞质基因组(主要是线粒体基因组)控制,在杂交种的育种和生产中起重要作用。长期以来,我国烟草种植以不育系和杂交种为主,其面积占烟草总种植面积的80%以上,不育类型均为sua-CMS,但该不育类型的控制基因、不育机制尚不清楚。COXⅡ细胞色素氧化酶(COX)的第二亚基,由线粒体基因组编码。在sua-CMS烟草不育系中,COX末端发生多个碱基变异,导致C端编码蛋白Thr257Ser取代。研究sua-CMS烟草COX功能,为阐明sua-CMS烟草不育分子机制奠定基础。【方法】以4sua-CMS不育系和可育对照为材料,RNA印迹杂交和qRT-PCR方法分析COXsua-CMS不育系和可育对照之间的转录本、基因表达差异,western杂交、COX酶活性试验分析COX蛋白表达和COX酶活性,并测定ATP含量;将可育烟草的COXsua-CMS不育系中过表达,研究COX过表达对COX表达量、COX酶活性、ATP含量以及烟草雄蕊发育的影响。【结果】通过对COX多序列比对发现CThr257在物种间高度保守,表达分析显示不育系中COX转录本显著低于可育对照,进一步地COX在不育系烟草中的表达量只有对照的0.3%0.4%COX蛋白表达量和COX酶活性均显著低于可育对照ATP含量可育对照的52%。将可育烟草COX在不育系烟草中过表达转基因植株COX在花芽中的表达量最高提高171COX酶活性提高70%ATP含量提高90%,但转基因植株在花药中的COX表达量、COX酶活性和ATP含量等各项指标低于可育对照。转基因植株的花药形态发生了明显的改变,并出现了花药壁的分化,但花药内无胞母细胞分化,最终也无花粉粒产生。【结论】sua-CMS烟草不育系COX变异影响COX功能,是其花药能量缺陷的重要原因,也是影响花药发育的一个重要因素。


关键词: 烟草, sua-CMS, COXⅡ, 功能鉴定

Abstract: ObjectiveCytoplasmic male sterility (CMS) is controlled by the cytoplasmic genome, mainly the mitochondrial genome, which plays an important role in breeding and production of hybrids. Sterile lines and hybrids are the main types of tobacco cultivation in China, accounting for more than 80% of the total tobacco cultivation area. The sterile type of tobacco in China is sua-CMS, which is also the only sterile type of tobacco production, but the control gene and sterility mechanism of sua-CMS are not clear. COXⅡ is the second subunit of cytochrome oxidase (COX), encoded by the mitochondrial genome. Nucleotide base variants occur at the terminal of the COX in sua-CMS lines, which resulted in the replacement of the C-terminal of COXⅡ Thr257 by Ser. The function analysis of COX in sua-CMS tobacco provides a foundation for the elucidation of the molecular mechanism of sterility in tobacco.MethodIn this study, four sets of sua-CMS lines and fertile controls were used as materials, and RNA blot hybridization and qRT-PCR methods were used to analyze the transcript and gene expression of COX between sua-CMS lines and fertile controls, and western hybridization and COX enzyme activity experiments analyzed COX protein expression and COX enzyme activity, and ATP content were measured. The COX of fertile tobacco was overexpressed in sua-CMS line, and the effects of COX overexpression on COX expression, COX enzyme activity, ATP content and stamens development of tobacco were studied.ResultCOX multi-sequence alignment showed that Thr257 at C-terminal was highly conserved between species. Expression analysis showed that the COX transcript in sua-CMS line was significantly lower than that of the fertile control, and quantitative expression of four sets of sua-CMS lines and fertile controls showed that the expression amount of COX in sua-CMS lines was only 0.3%-0.4% of the fertile controls, the COX protein abundances and enzyme activity were significantly lower than that of the fertile control, and the ATP content of sua-CMS line was 52% of that of the fertile control. When COX was overexpressed in sua-CMS line, the expression levels of COX in transgenic plants increased by up to 171 times, the COX enzyme activity increased by 70%, the ATP content increased by 90%. However, all indicators including COX expression levels, COX enzyme activity and ATP content in transgenic plants were lower than those of fertile tobacco. We also observed significant changes in anther morphology in transgenic plants, and the differentiation of the anther wall appeared, but there was no pollen grains in the anthers.ConclusionThis study shows that the mutant COX of sua-CMS line affects COX function, which is a main reason of anther energy deficiency, and it is also an important factor affecting the development of anthers.


Key words: tobacco, cytoplasmic male sterility, COXⅡ, ATP level