작성자 | Millard | 작성일 | 2022-09-17 22:55 |
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제목 | Uchi R, Ferreira RB, Bailey-Serres J: Genome-wide assessment of transc… | ||
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본문 Uchi R, Ferreira RB, Bailey-Serres J: Genome-wide analysis of transcript abundance and translation PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/2902681 in Arabidopsis seedlings subjected to oxygen deprivation. Ann Bot 2005, 96:647-660. 69. Drew MC, Cobb BG, Johnson JR, Andrews D, Morgan PW, Jordan W, He CJ: Metabolic acclimation of root ideas to oxygen deficiency. Ann Bot 1994, 74:281-286. 70. Ricard B, Coue?I, Raymond P, Saglio PH, Saint-Ges V, Pradet A: Plant fat burning capacity underneath hypoxia and anoxia. Plant Physiol Biochem 1994, 32:1-10. seventy one. Superior AG, Crosby WL: Anaerobic Induction of Alanine Aminotransferase in Barley Root Tissue. Plant Physiol 1989, ninety:1305-1309. 72. Muench DG, Superior AG: Hypoxically inducible barley alanine aminotransferase: cDNA cloning and expression assessment. Plant Mol Biol 1994, 24:417-427. seventy three. Muench DG, Wu Y, Coughlan SJ, Okita TW: Proof to get a CytoskeletonAssociated Binding Web-site Associated in Prolamine mRNA Localization to the Protein Bodies in Rice Endosperm Tissue. Plant Physiol 1998, 116:559-569. seventy four. De Sousa CAF, Sodek L: Alanine metabolic process and alanine aminotransferase action in soybean (Glycine max) all through hypoxia of the root process and subsequent return to normoxia. Approximativement Exp Bot 2003, fifty:1-8. seventy five. Loreti E, Poggi A, Novi G, Alpi A, Perata P: A Genome-Wide Examination from the Consequences of Sucrose on Gene Expression in Arabidopsis Seedlings below Anoxia. Plant Physiol 2005, 137:1130-1138. 76. Miyashita Y, Great AG: Contribution of the GABA shunt to hypoxiainduced alanine accumulation in roots of Arabidopsis thaliana. Plant Cell Physiol 2008, 49:92-102. seventy seven. Miflin BJ, Lea PJ: The pathway of nitrogen assimilation in plants. Phytochemistry 1976, fifteen:873-885. 78. Streeter JG, Thompson JF: Anaerobic accumulation of gammaaminobutyric acid and alanine in radish leaves (Raphanus sativus L.). Plant Physiol 1972, forty nine:572-578. 79. Bown AW, Shelp BJ: The metabolic rate and capabilities of g-aminobutyric acid. Plant Physiol 1997, one hundred fifteen:1-5. eighty. Quimio CA, Torrizo LB, Setter TL, Ellis M, Grover A, Abrigo EM, Oliva NP, Ella ES, Carpena AL, Ito O, Peacock WJ, Dennis ES, Datta SK: Enhancement of submergence tolerance in transgenic rice overproducing pyruvate decarboxylase. J Plant Physiol 2000, 156:516-521.eighty one. Rahman M, Grover A, Peacock WJ, Dennis ES, Ellis MH: Consequences of manipulation of pyruvate decarboxylase and liquor dehydrogenase ranges to the submaergence tolerance of rice. Aust J Plant Physiol 2001, 28:1231-1241. 82. Ismond KP, Dolferus R, De Pauw M, Dennis ES, Excellent AG: Increased small oxygen survival in Arabidopsis by way of improved metabolic flux in the fermentative pathway. Plant Physiol 2003, 132:1292-1302. eighty three. Ellis MH, Millar AA, Llewellyn DJ, Peacock WJ, Dennis ES: Transgenic cotton (Gossypium hirsutum) over-expressing liquor dehydrogenase reveals improved ethanol fermentation but no enhance in tolerance to oxygen deficiency. Aust J Plant Physiol 2000, 27:1041-1050. eighty four. Fu H, Dooner HK: Intraspecific violation of genetic colinearity and its implications in maize. Proc Natl Acad Sci 2002, 99:9573-9578. 85. Tune R, Messing J: Gene expression of the gene household in maize based on noncollinear haplotypes. Proc Natl Acad Sci 2003, one hundred:9055-9060. 86. Brunner S, Fengler K, Morgante M, Tingey S, Rafalski A: Evolution of DNA sequence nonhomologies between maize inbreds. Plant Mobile 2005, 17:343-360.doi:10.1186/1471-2229-10-189 Cite this short article as: Zou et al.: Identification of transcriptome induced in roots of maize seedlings on the late phase of waterlogging. BMC Plant Biology 2010 ten:189.Post.
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