Turner S R, Hellens R, Ireland R, Ellis N, Rawsthorne S
Cambridge Laboratory, AFRC Institute of Plant Science Research, John Innes Centre, Norwich, UK.
Mol Gen Genet. 1993 Jan;236(2-3):402-8. doi: 10.1007/BF00277140.
Restriction fragment length polymorphisms have been used to determine the chromosomal location of the genes encoding the glycine decarboxylase complex (GDC) and serine hydroxymethyltransferase (SHMT) of pea leaf mitochondria. The genes encoding the H subunit of GDC and the genes encoding SHMT both show linkage to the classical group I marker i. In addition, the genes for the P protein of GDC show linkage to the classic group I marker a. The genes for the L and T proteins of GDC are linked to one another and are probably situated on the satellite of chromosome 7. The mRNAs encoding the five polypeptides that make up GDC and SHMT are strongly induced when dark-grown etiolated pea seedlings are placed in the light. Similarly, when mature plants are placed in the dark for 48 h, the levels of both GDC protein and SHMT mRNAs decline dramatically and then are induced strongly when these plants are returned to the light. During both treatments a similar pattern of mRNA induction is observed, with the mRNA encoding the P protein of GDC being the most rapidly induced and the mRNA for the H protein the slowest. Whereas during the greening of etiolated seedlings the polypeptides of GDC and SHMT show patterns of accumulation similar to those of the corresponding mRNAs, very little change in the level of the polypeptides is seen when mature plants are placed in the dark and then re-exposed to the light.
限制性片段长度多态性已被用于确定豌豆叶片线粒体中编码甘氨酸脱羧酶复合体(GDC)和丝氨酸羟甲基转移酶(SHMT)的基因的染色体定位。编码GDC的H亚基的基因和编码SHMT的基因均显示与经典的I组标记i连锁。此外,GDC的P蛋白基因与经典的I组标记a连锁。GDC的L和T蛋白基因相互连锁,可能位于7号染色体的卫星上。当黑暗生长的黄化豌豆幼苗置于光照下时,编码构成GDC和SHMT的五种多肽的mRNA会被强烈诱导。同样,当成熟植株置于黑暗中48小时后,GDC蛋白和SHMT mRNA的水平都会急剧下降,而当这些植株重新置于光照下时,它们又会被强烈诱导。在这两种处理过程中,均观察到相似的mRNA诱导模式,其中编码GDC的P蛋白的mRNA诱导最快,而编码H蛋白的mRNA诱导最慢。在黄化幼苗变绿的过程中,GDC和SHMT的多肽积累模式与相应mRNA的积累模式相似,而当成熟植株置于黑暗中然后再暴露于光照下时,多肽水平几乎没有变化。