Moreira C D, Gmitter F G, Grosser J W, Huang S, Ortega V M, Chase C D
University of Florida, Horticultural Sciences Department, Institute of Food and Agricultural Sciences, Gainesville, FL 32611-0690, USA.
J Hered. 2002 May-Jun;93(3):174-8. doi: 10.1093/jhered/93.3.174.
Many land plants deviate from the maternal pattern of organelle inheritance. In this study, heterologous mitochondrial and chloroplast probes were used to investigate the inheritance of organelle genomes in the progeny of an intergeneric cross. The seed parent was LB 1-18 (a hybrid of Citrus reticulata Blanco cv. Clementine x C. paradisi Macf. cv. Duncan) and the pollen parent was the cross-compatible species Poncirus trifoliata (L.) Raf. All 26 progeny examined exhibited maternal inheritance of plastid petA and petD loci. However, 17 of the 26 progeny exhibited an apparent biparental inheritance of mitochondrial atpA, cob, coxII, and coxIII restriction fragment length polymorphisms (RFLPs) and maternal inheritance of mitochondrial rrn26 and coxI RFLPs. The remaining nine progeny inherited only maternal mitochondrial DNA (mtDNA) configurations. Investigations of plant mitochondrial genome inheritance are complicated by the multipartite structure of this genome, nuclear gene control over mitochondrial genome organization, and transfer of mitochondrial sequences to the nucleus. In this study, paternal mtDNA configurations were not detected in purified mtDNA of progeny plants, but were present in progeny DNA preparations enriched for nuclear genome sequences. MtDNA sequences in the nuclear genome therefore produced an inheritance pattern that mimics biparental inheritance of mtDNA.
许多陆地植物偏离了细胞器遗传的母系模式。在本研究中,使用异源线粒体和叶绿体探针来研究属间杂交后代中细胞器基因组的遗传情况。种子亲本是LB 1-18(一种由宽皮柑橘品种克莱门氏小柑橘×甜橙品种邓肯杂交而成的杂种),花粉亲本是具有杂交亲和性的物种枳(Poncirus trifoliata (L.) Raf.)。所有检测的26个后代都表现出质体petA和petD基因座的母系遗传。然而,26个后代中有17个表现出线粒体atpA、cob、coxII和coxIII限制性片段长度多态性(RFLP)明显的双亲遗传,以及线粒体rrn26和coxI RFLP的母系遗传。其余9个后代仅遗传了母系线粒体DNA(mtDNA)构型。植物线粒体基因组遗传的研究因该基因组的多部分结构、核基因对线粒体基因组组织的控制以及线粒体序列向细胞核的转移而变得复杂。在本研究中,在后代植物的纯化mtDNA中未检测到父系mtDNA构型,但在富含核基因组序列的后代DNA制备物中存在。因此,核基因组中的mtDNA序列产生了一种模仿mtDNA双亲遗传的遗传模式。