Development and characterization of an oat TILLING-population and identification of mutations in lignin and β-glucan biosynthesis genes
暂无分享,去创建一个
Marcus Bräutigam | Aakash Chawade | Vivekanand Vivekanand | Olof Olsson | O. Olsson | A. Chawade | V. Vivekanand | Per Sikora | Mikael Larsson | Montedar All Nakash | Tingsu Chen | M. Bräutigam | Tingsu Chen | Per Sikora | Mikael Larsson
[1] J. M. Leggett. Classification and Speciation in Avena , 2015 .
[2] S. Henikoff,et al. Spectrum of chemically induced mutations from a large-scale reverse-genetic screen in Arabidopsis. , 2003, Genetics.
[3] R. Zhong,et al. Dual Methylation Pathways in Lignin Biosynthesis , 1998, Plant Cell.
[4] B. Olsson,et al. Generation and analysis of 9792 EST sequences from cold acclimated oat, Avena sativa , 2005, BMC Plant Biology.
[5] D. Jacobs,et al. Oat products and lipid lowering. A meta-analysis. , 1992, JAMA.
[6] Stephen Y. Lin,et al. Methods in Lignin Chemistry , 1992, Springer Series in Wood Science.
[7] S. Salvi,et al. TILLMore, a resource for the discovery of chemically induced mutants in barley. , 2008, Plant biotechnology journal.
[8] Nathan M. Springer,et al. Discovery of induced point mutations in maize genes by TILLING , 2004, BMC Plant Biology.
[9] Steven Henikoff,et al. Large-scale discovery of induced point mutations with high-throughput TILLING. , 2003, Genome research.
[10] Martin Parniske,et al. A TILLING Reverse Genetics Tool and a Web-Accessible Collection of Mutants of the Legume Lotus japonicus 1 , 2003, Plant Physiology.
[11] S. Henikoff,et al. High-throughput screening for induced point mutations. , 2001, Plant physiology.
[12] Monika S. Doblin,et al. A barley cellulose synthase-like CSLH gene mediates (1,3;1,4)-β-d-glucan synthesis in transgenic Arabidopsis , 2009, Proceedings of the National Academy of Sciences.
[13] H. Iwamura,et al. Three genomes differentially contribute to the biosynthesis of benzoxazinones in hexaploid wheat. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[14] Paul D. Shaw,et al. A structured mutant population for forward and reverse genetics in Barley (Hordeum vulgare L.). , 2004, The Plant journal : for cell and molecular biology.
[15] H. Satoh,et al. MNU-induced mutant pools and high performance TILLING enable finding of any gene mutation in rice , 2008, Molecular Genetics and Genomics.
[16] S. G. Reynolds,et al. Fodder oats: a world overview , 2004 .
[17] Steven Henikoff,et al. Discovery of chemically induced mutations in rice by TILLING , 2007, BMC Plant Biology.
[18] J. Czerkawski. The determination of lignin , 1967, British Journal of Nutrition.
[19] S. Henikoff,et al. Predicting the effects of coding non-synonymous variants on protein function using the SIFT algorithm , 2009, Nature Protocols.
[20] J. Doyle,et al. Isolation of plant DNA from fresh tissue , 1990 .
[21] R. Dixon,et al. Downregulation of Caffeic Acid 3-O-Methyltransferase and Caffeoyl CoA 3-O-Methyltransferase in Transgenic Alfalfa: Impacts on Lignin Structure and Implications for the Biosynthesis of G and S Lignin , 2001, Plant Cell.
[22] S. Tabata,et al. TILLING Mutants of Lotus japonicus Reveal That Nitrogen Assimilation and Fixation Can Occur in the Absence of Nodule-Enhanced Sucrose Synthase[C][W] , 2007, Plant Physiology.
[23] B. Rosner,et al. Cholesterol-lowering effects of dietary fiber: a meta-analysis. , 1999, The American journal of clinical nutrition.
[24] Hansang Jung,et al. Relationships of fibre, lignin, and phenolics to in vitro fibre digestibility in three perennial grasses , 2006 .
[25] Ivo Glynne Gut,et al. Genotyping single nucleotide polymorphisms by MALDI mass spectrometry in clinical applications. , 2005, Clinical biochemistry.
[26] S. Fuerstenberg,et al. A reverse genetic, nontransgenic approach to wheat crop improvement by TILLING , 2005, Nature Biotechnology.
[27] E. O. Speer. A method of retaining phloroglucinol proof of lignin. , 1987, Stain technology.
[28] Ronald D. Hatfield,et al. Can Lignin Be Accurately Measured , 2005 .
[29] Peter Wenzl,et al. New DArT markers for oat provide enhanced map coverage and global germplasm characterization , 2009, BMC Genomics.
[30] Discovery and identification of sequence polymorphisms and mutations with MALDI-TOF MS. , 2007, Methods in molecular biology.
[31] D. Watson,et al. Analysis of Growth and Yield of Winter and Spring Wheats , 1963 .
[32] G. Crosbie,et al. The digestibility of grain of two cultivars of oats differing in lignin content , 1988 .
[33] Hansang Jung,et al. Forage Lignins and Their Effects on Fiber Digestibility , 1989 .
[34] M. A. Jonker,et al. Regulations relating to mycotoxins in food: perspectives in a global and European context. , 2007, Analytical and bioanalytical chemistry.
[35] K. Iiyama,et al. An improved acetyl bromide procedure for determining lignin in woods and wood pulps , 1988, Wood Science and Technology.
[36] S. Henikoff,et al. TILLING to detect induced mutations in soybean , 2008, BMC Plant Biology.
[37] S. Aubourg,et al. Characterization of Arabidopsis thaliana mismatch specific endonucleases: application to mutation discovery by TILLING in pea. , 2007, The Plant journal : for cell and molecular biology.
[38] M. Davidson,et al. The hypocholesterolemic effects of beta-glucan in oatmeal and oat bran. A dose-controlled study. , 1990, Journal of the American Medical Association (JAMA).
[39] Hans P. van Egmond,et al. Regulations relating to mycotoxins in food , 2007 .
[40] P. A. Thompson. Plant Phenolics , 1965, Nature.
[41] S. Henikoff,et al. Targeting induced local lesions IN genomes (TILLING) for plant functional genomics. , 2000, Plant physiology.
[42] H. Graham,et al. Analysis of Total and Insoluble Mixed-Linked (1->3), (1->4)-β-D-Glucans in Barley and Oats , 1987 .
[43] Neil J. Shirley,et al. Cellulose Synthase-Like CslF Genes Mediate the Synthesis of Cell Wall (1,3;1,4)-ß-d-Glucans , 2006, Science.
[44] Jeffrey B. Harborne,et al. Methods in plant biochemistry , 1989 .
[45] I. Leitch,et al. Nuclear DNA Amounts in Angiosperms , 1995 .
[46] P. Shewry,et al. Phytochemical and fiber components in oat varieties in the HEALTHGRAIN Diversity Screen. , 2008, Journal of agricultural and food chemistry.
[47] W. Neish,et al. Polyamines and glutathione in tissues of lactating rats (Rattus rattus) and in the Rd-3 adcites tumour. , 1968, Comparative biochemistry and physiology.
[48] G. Hoffmann. Genetic effects of dimethyl sulfate, diethyl sulfate, and related compounds. , 1980, Mutation research.
[49] Sebastian Böcker,et al. High-throughput MALDI-TOF discovery of genomic sequence polymorphisms. , 2003, Genome research.
[50] I. Björck,et al. Dietary supplementation with β-glucan enriched oat bran increases faecal concentration of carboxylic acids in healthy subjects , 2008, European Journal of Clinical Nutrition.
[51] M. Davidson,et al. The Hypocholesterolemic Effects of β-Glucan in Oatmeal and Oat Bran: A Dose-Controlled Study , 1991 .
[52] C. Dearolf,et al. Targeted recovery of mutations in Drosophila. , 2000, Genetics.
[53] R. Thompson,et al. Genotypic differences in chemical composition and ruminal degradability of oat hulls. , 2000 .
[54] S. Henikoff,et al. Single-nucleotide mutations for plant functional genomics. , 2003, Annual review of plant biology.
[55] I. Morrison. A semi-micro method for the determination of lignin and its use in predicting the digestibility of forage crops. , 1972, Journal of the science of food and agriculture.