Substoichiometric shifting in the plant mitochondrial genome is influenced by a gene homologous to MutS.
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Crystal structures of DNA-Whirly complexes and their role in Arabidopsis organelle genome repairThe origins and early evolution of DNA mismatch repair genes--multiple horizontal gene transfers and co-evolutionDistant sequences determine 5' end formation of cox3 transcripts in Arabidopsis thaliana ecotype C24Mechanism of homologous recombination and implications for aging-related deletions in mitochondrial DNAA family portrait: structural comparison of the Whirly proteins fromArabidopsis thalianaandSolanum tuberosumRecent acceleration of plastid sequence and structural evolution coincides with extreme mitochondrial divergence in the angiosperm genus Silene.Comparative analysis of mitochondrial genomes between the hau cytoplasmic male sterility (CMS) line and its iso-nuclear maintainer line in Brassica juncea to reveal the origin of the CMS-associated gene orf288Extensive structural variations between mitochondrial genomes of CMS and normal peppers (Capsicum annuum L.) revealed by complete nucleotide sequencing.Double-strand break repair processes drive evolution of the mitochondrial genome in Arabidopsis.Comparative analysis of mitochondrial genomes between a wheat K-type cytoplasmic male sterility (CMS) line and its maintainer line.Variable populations within variable populations: quantifying mitochondrial heteroplasmy in natural populations of the gynodioecious plant Silene vulgarisArabidopsis MSH1 mutation alters the epigenome and produces heritable changes in plant growthTransfection of plant mitochondria and in organello gene integration.MSH1-induced non-genetic variation provides a source of phenotypic diversity in Sorghum bicolor.RECG maintains plastid and mitochondrial genome stability by suppressing extensive recombination between short dispersed repeatsTransgenic induction of mitochondrial rearrangements for cytoplasmic male sterility in crop plants.Mitochondrial biogenesis and function in Arabidopsis.Interactions of mitochondrial and nuclear genes that affect male gametophyte development.The Mosaic Mutants of Cucumber: A Method to Produce Knock-Downs of Mitochondrial TranscriptsUtility of in vitro culture to the study of plant mitochondrial genome configuration and its dynamic features.MutS HOMOLOG1 silencing mediates ORF220 substoichiometric shifting and causes male sterility in Brassica juncea.The mitochondrial compartment.Variegation mutants and mechanisms of chloroplast biogenesis.The Whole Genome Assembly and Comparative Genomic Research of Thellungiella parvula (Extremophile Crucifer) Mitochondrion.Plastome Mutations and Recombination Events in Barley Chloroplast Mutator Seedlings.Plant mitochondrial genome evolution can be explained by DNA repair mechanismsDisruption of a mitochondrial MutS DNA repair enzyme homologue confers drug resistance in the parasite Toxoplasma gondii.Developmental and environmental variation in genomes.Plant mitochondria possess a short-patch base excision DNA repair pathway.Diversity of the Arabidopsis mitochondrial genome occurs via nuclear-controlled recombination activity.MutS HOMOLOG1 is a nucleoid protein that alters mitochondrial and plastid properties and plant response to high light.Transgenerational response to stress in plants and its application for breeding.Characterization and comparative sequence analysis of the DNA mismatch repair MSH2 and MSH7 genes from tomato.Elevation of Pollen Mitochondrial DNA Copy Number by WHIRLY2: Altered Respiration and Pollen Tube Growth in Arabidopsis.MutS HOMOLOG1-derived epigenetic breeding potential in tomato.Evaluation of reference genes for reverse transcription quantitative real-time PCR (RT-qPCR) studies in Silene vulgaris considering the method of cDNA preparation.The role of AtMSH2 in homologous recombination in Arabidopsis thaliana.MSH1 maintains organelle genome stability and genetically interacts with RECA and RECG in the moss Physcomitrella patens.A reevaluation of rice mitochondrial evolution based on the complete sequence of male-fertile and male-sterile mitochondrial genomes.Biparental inheritance of plastidial and mitochondrial DNA and hybrid variegation in Pelargonium.
P2860
Q24602012-D7736544-81E8-40B1-A3C4-991D803F5A18Q24681035-65BE24A4-FF1B-4F5F-9864-BDDBFD7714E3Q24814318-0596B5FD-D832-4BB8-B6D6-3BE466841026Q27012566-6FF6FC6A-82B9-4D33-A95D-A397BBFBB962Q27680529-D34CDE39-21B6-4DC2-8CEC-D6F778427745Q30427500-9B4B89C4-538F-4690-940F-F6992239CD6BQ33669114-BF86F840-0CC5-495F-A9AE-6DFE81639DD3Q33941509-19692164-8FFF-4CEA-A450-5E29E96FDF52Q34032704-0E7B2749-A950-40C4-9E48-E14E19548A55Q34818105-141D4BFA-8156-476B-8251-A2FFABDFD323Q35083076-BCF037C1-B198-47A9-8A77-C0507F4EE773Q35153571-D1BAD82B-3B46-4253-A447-AEC4CAA501D7Q35224425-337FC76B-3400-4896-9192-177E98934F59Q35368418-34D7D92B-2504-4979-8078-E28AE9E2F980Q35577068-05335063-3C48-456D-8988-6F21FF67A749Q35613722-CE796F05-37C9-4307-ACC2-0C0D32DE53B5Q35625774-A5130B45-DD86-4B8C-997E-AEE561A6A9BBQ35766627-EDEA7F20-92B0-4DC4-9F88-C9192AECA85CQ35774021-5CFDE71B-364A-4225-9E7A-DDBD7B28AD46Q36095628-700A5FE3-D7DD-48C9-ACE7-1FEA5728930EQ36380139-2437A2DF-396F-46F6-9C02-15BB281EB904Q36429891-7847CFDE-4E60-44B6-882B-FFF929195B31Q36722479-29BA9060-6B06-4F95-90B5-623576146344Q36829164-EAEC8258-0547-4476-B8DC-D57C4AECE0ABQ36947340-3FC351F0-E8AD-4A75-8636-534C8ABD8E17Q36974627-467137C4-C881-48BE-B481-5136F33E15E9Q37265469-DEDEB8D6-4093-4464-8311-0A2ED98840E2Q37367876-DE3B4DBE-213B-45B4-AE19-A2CB05147622Q37385864-0BE402F2-B43A-4A6F-B62A-B7A1991571C1Q37454561-6E952D2E-7A5A-44B4-B34E-C7CCCAAAB0EDQ38331723-2C7FE9B1-79EA-4788-8738-0714C966FC3FQ38761365-D126EAC2-DC78-4628-859B-C0CFD982ED59Q39954212-9DF16201-19B1-4C5F-B029-17FB1C41D755Q40714271-C8F63257-EFAF-4F0F-81D3-03B019A85B63Q41306890-7C8E0A7C-CAC4-4AA4-91BF-30A690F2EDDCQ41443824-C52640AB-C0E8-40EF-8C41-E9B42BB7BCA8Q42011370-16729F69-8787-4297-8560-341D05584F2FQ42508468-3CD37654-9F87-43A5-B953-8CB91FC1338EQ42626871-AC2F3BF2-8E8B-4F8E-A50B-20AC36BA77E0Q42636988-97A30CEF-D526-4D70-BB15-52B967B892DA
P2860
Substoichiometric shifting in the plant mitochondrial genome is influenced by a gene homologous to MutS.
description
2003 nî lūn-bûn
@nan
2003 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2003年の論文
@ja
2003年論文
@yue
2003年論文
@zh-hant
2003年論文
@zh-hk
2003年論文
@zh-mo
2003年論文
@zh-tw
2003年论文
@wuu
name
Substoichiometric shifting in ...... by a gene homologous to MutS.
@ast
Substoichiometric shifting in ...... by a gene homologous to MutS.
@en
type
label
Substoichiometric shifting in ...... by a gene homologous to MutS.
@ast
Substoichiometric shifting in ...... by a gene homologous to MutS.
@en
prefLabel
Substoichiometric shifting in ...... by a gene homologous to MutS.
@ast
Substoichiometric shifting in ...... by a gene homologous to MutS.
@en
P2093
P2860
P356
P1476
Substoichiometric shifting in ...... by a gene homologous to MutS.
@en
P2093
Alan C Christensen
Annakaisa Elo
Gilbert Meyer-Gauen
Ricardo V Abdelnoor
Sally A Mackenzie
P2860
P304
P356
10.1073/PNAS.1037651100
P407
P577
2003-05-01T00:00:00Z