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- mitochondrial heterosis 线粒体杂种优势
- The knowledge about higher plant mitochondrial ribosomes is scanty. 关于高等植物线粒体核蛋白体的知识也少的可怜。
- How could this help families at risk of mitochondrial disease? 这一研究对患有线粒体疾病的家庭有何帮助?
- Heterosis and segregation on agronomic and yield traits in Brassica napus L. 甘蓝型油菜主要农艺和产量性状的杂种优势及其分离世代的分析。
- Studies on relations of RAPD markers and heterosis in Brassica napus L. 恢复系和保持系RAPD分子标记与甘蓝型油菜杂种优势关系的研究。
- This serine biosynthesis has been demonstrated in mitochondrial preparation. 在线粒体制备中,证明有丝氨酸生物合成。
- There were some transgressive progenies in hybrids which exhibited heterosis. 杂种后代存在超亲子代,表现一定的杂种优势。
- It has been used to developed several crossbreed with obvious heterosis. 它用于配了几个杂种优势明显的杂交新组合。
- Chapter 1: Recent progress on squamate mitochondrial genome was reviewed. 第一章:对爬行动物线粒体基因组的研究进展进行了综述。
- Mitochondrial dysfunction is one of the most profound features of cancer cells. 肿瘤细胞的线粒体功能障碍是其重要的特征之一。
- Kenaf is one of the most important fibre crops, with obvious heterosis. 摘要红麻是一种重要的纤维作物,杂种优势显著。
- ATP is produced by a complex in the mitochondrial membrane called ATP synthase. 三磷酸腺苷是由一个复杂的线粒体膜称为ATP合酶。
- Mitochondrial fission and fusion are highly regulated by a number of proteins. 线粒体的分裂和融合是由多种蛋白质精确调控完成的。
- Only 13 of the mitochondrion's component proteins are encoded by its own DNA. 只有13种线粒体的组成蛋白质是由线粒体自己的DNA编码的。
- This gives us a wonderful opportunity: rather than fixing mitochondrial mutations, we can obviate them. 这给了我们绝好的机会:我们可以排除它们而无需修复线粒体突变。
- A new way may be found to excavate more visible heterosis and to study apomixes in rice. 利用离子束注入技术对同源四倍体水稻进行遗传改良;有可能为进一步利用水稻强大的杂种优势效应和深入研究水稻无融合生殖现象寻找到新的突破口.
- These help a mitochondrial enzyme called carnitine acetyltransferase to do its job. 这两种分子有助于被称作肉碱乙酰转移酶的线粒体酶发挥作用。
- Heredity, Reproductive and Adaptive Heterosis and Variability of Intraspecies Hybrids of G. Hirsutum L. 陆地棉种内杂种的遗传、繁殖和适应性优势及变异性。
- The combining ability and heterosis analysis of main economic properties in Apis mellifera L. 主要经济性状的配合力与杂种优势分析。
- Studies on Heterosis and Segregation in Quality Characters in Progeny for Cytoplasmic Male Sterile in Brassica napus L. 油菜杂种后代硫苷和蛋白质含量的表现及其杂种优势分析。