Gu J, Dempsey S, Newton K J
Division of Biological Sciences, University of Missouri, Columbia 65211.
Plant J. 1994 Dec;6(6):787-94. doi: 10.1046/j.1365-313x.1994.6060787.x.
The maize NCS6 mitochondrial mutation is a partial deletion of the cytochrome oxidase subunit 2 gene (cox2) that survives heteroplasmically in the plant. Mutant mitochondria segregate from normal mitochondria during somatic development giving rise to defective sectors on the plants, including areas of kernel abortion on the ears. Embryos from NCS6 kernels can be rescued by tissue culture. Slowly growing Type II callus derived from one of these embryos has been shown by PCR analysis to be homoplasmic for the mutation, carrying only the defective mitochondrial cox2 gene. Most of the rescued embryos were heteroplasmic for normal and mutant genes and heteroplasmy was maintained in the callus cultures. However, when suspension cultures were initiated from heteroplasmic calli, normal cells were shown to have a selective advantage. When the homoplasmic cox2 mutant callus cultures were placed on regeneration medium, plantlets did not regenerate. Heteroplasmic calli were capable of regeneration under the same conditions. These studies suggest that the functioning of mitochondrial cytochrome oxidase is not essential for growth as callus, but is required for the differentiation and development of plants.
玉米NCS6线粒体突变是细胞色素氧化酶亚基2基因(cox2)的部分缺失,该突变以异质性状态存在于植株中。在体细胞发育过程中,突变型线粒体与正常线粒体分离,导致植株上出现缺陷区域,包括穗上的籽粒败育区。NCS6籽粒的胚可以通过组织培养拯救。PCR分析表明,从其中一个胚获得的生长缓慢的II型愈伤组织对于该突变是同质性的,只携带缺陷型线粒体cox2基因。大多数拯救的胚对于正常基因和突变基因是异质性的,并且在愈伤组织培养中维持了异质性。然而,当从异质性愈伤组织开始进行悬浮培养时,正常细胞显示出选择性优势。当将同质性cox2突变体愈伤组织培养物置于再生培养基上时,不能再生出植株。在相同条件下,异质性愈伤组织能够再生。这些研究表明,线粒体细胞色素氧化酶的功能对于愈伤组织的生长不是必需的,但对于植株的分化和发育是必需的。