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Gene Modifies Electrophoretic Properties of Malate Dehydrogenase in Norway Spruce (Picea abies (L.) Karst.)

机译:基因修饰挪威云杉(Picea abies(L.)Karst。)中苹果酸脱氢酶的电泳特性

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The mobility of two malate dehydrogenase (MDH) isozymes (encoded by Mdh-2 and Mdh-3) was found to be altered by a modifier gene designated Mm(2,3) in an electrophoretic analysis of megagametophytes of Picea abies. This modifier gene exists in two allelic variants. The dominant allele Mmd(2,3)-N gives rise to the common electrophoretic phenotype whereas the recessive allele Mmd(2,3)-n produces faster migrating forms of both MDH-2 and MDH-3. In diploid tissues, genotypes heterozygous at Mmd(2,3) cannot be differentiated from homozygotes carrying dominant alleles. Certain allozymes encoded by Mdh2 and Mdh3 have very similar relative migration rates under the given electrophoretic conditions. If diploid tissue is analyzed, the enzyme products cannot be traced back to specific alleles. Therefore, haploid megagametophytes have to be used to identify properly MDH genotypes. It is suggested to analyze at least 13 megagametophytes per tree to ensure a misclassification smaller than the 5% level. Linkage of Mmd(2,3) to Aat3, Lap1, -2, Mdh3, Pepca, 6Pgd2, -3, Pgi2, Pgm1, -2, and Skdh1 was tested, revealing independent segregation. One locus (Mdh1) presumably codes for the cytoplasmatic form of MDH.
机译:发现两个苹果酸脱氢酶(MDH)同工酶(由Mdh-2和Mdh-3编码)的迁移性被称为Mm(2,3)的修饰基因在云南云杉的配子体电泳分析中改变。该修饰基因存在两个等位基因变体。显性等位基因Mmd(2,3)-N引起常见的电泳表型,而隐性等位基因Mmd(2,3)-n产生更快的MDH-2和MDH-3迁移形式。在二倍体组织中,Mmd(2,3)杂合的基因型不能与携带优势等位基因的纯合子区分开。在给定的电泳条件下,由Mdh2和Mdh3编码的某些同工酶具有非常相似的相对迁移速率。如果分析二倍体组织,则酶产物不能追溯到特定的等位基因。因此,单倍体大配子体必须用于正确鉴定MDH基因型。建议每棵树至少分析13个大型配子体,以确保分类错误小于5%。测试了Mmd(2,3)与Aat3,Lap1,-2,Mdh3,Pepca,6Pgd2,-3,Pgi2,Pgm1,-2和Skdh1的链接,揭示了独立​​的隔离。一个基因座(Mdh1)可能编码MDH的细胞质形式。

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