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Ruthie Angelovici

Ruthie Angelovici

Assistant Professor, Biological Sciences

Phone: 573-882-3440
angelovicir@missouri.edu
371D Bond Life Sciences Center

News about Ruthie Angelovici

Genomic prediction informed by biological processes expands our understanding of the genetic architecture underlying free amino acid traits in dry arabidopsis seeds. Turner-Hissong SD, Bird KA, Lipka AE, King EG, Beissinger TM, Angelovici R. G3: Genes, Genomes, Genetics; 10(11):4227-4239.

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Deletion of maize RDM4 suggests a role in endosperm maturation as well as vegetative and stress-responsive growth. Jia S, Yobi A, Naldrett MJ, Alvarez S, Angelovici R, Zhang C, Holding DR. Journal of Experimental Botany; 71(19):5880-5895.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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HAPPI GWAS: Holistic analysis with pre- And post-integration GWAS. Slaten ML, Chan YO, Shrestha V, Lipka AE, Angelovici R. Bioinformatics; 36(17):4655-4657.

Featured in this article: Yen On Chan, Marianne Slaten, Ruthie Angelovici.

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Production and Selection of Quality Protein Popcorn Hybrids Using a Novel Ranking System and Combining Ability Estimates. Parsons L, Ren Y, Yobi A, Hurst P, Angelovici R, Rodriguez O, Holding DR. Frontiers in Plant Science; 11:698.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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MGWAS uncovers Gln-glucosinolate seed-specific interaction and its role in metabolic homeostasis. Slaten ML, Yobi A, Bagaza C, Chan YO, Shrestha V, Holden S, Katz E, Kanstrup C, Lipka AE, Kliebenstein DJ, Nour-Eldin HH, Angelovici R. Plant Physiology; 183(2):483-500.

Featured in this article: Marianne Slaten, Abou Yobi, Clement Bagaza, Yen On Chan, Ruthie Angelovici.

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The complex response of free and bound amino acids to water stress during the seed setting stage in Arabidopsis. Yobi A, Bagaza C, Batushansky A, Shrestha V, Emery ML, Holden S, Turner-Hissong S, Miller ND, Mawhinney TP, Angelovici R. Plant Journal; 102(4):838-855.

Featured in this article: Abou Yobi, Clement Bagaza, Ruthie Angelovici.

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Adaptive responses of amino acid metabolism to the combination of desiccation and low nitrogen availability in Sporobolus stapfianus. Yobi A, Batushansky A, Oliver MJ, Angelovici R. Planta; 249(5):1535-1549.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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Can metabolic tightening and expansion of co-expression network play a role in stress response and tolerance?. Fait A, Batushansky A, Shrestha V, Yobi A, Angelovici R. Plant Science; 293:110409.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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The renaissance of comparative biochemistry. Smith SD, Angelovici R, Heyduk K, Maeda HA, Moghe GD, Pires JC, Widhalm JR, Wisecaver JH. American Journal of Botany; 106(1):3-13.

Featured in this article: Ruthie Angelovici, J. Chris Pires.

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Generation and evaluation of modified opaque-2 popcorn suggests a route to quality protein popcorn. Ren Y, Yobi A, Marshall L, Angelovici R, Rodriguez O, Holding DR. Frontiers in Plant Science; 871:1803.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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A High-Throughput Absolute-Level Quantification of Protein-Bound Amino Acids in Seeds. Yobi A, Angelovici R. Current protocols in plant biology; 3(4):e20084.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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Editing of an alpha-kafirin gene family increases digestibility and protein quality in sorghum. Li A, Jia S, Yobi A, Ge Z, Sato SJ, Zhang C, Angelovici R, Clemente TE, Holding DR. Plant Physiology; 177(4):1425-1438.

Featured in this article: Abou Yobi, Ruthie Angelovici.

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Topological data analysis as a morphometric method: Using persistent homology to demarcate a leaf morphospace. Li M, An H, Angelovici R, Bagaza C, Batushansky A, Clark L, Coneva V, Donoghue MJ, Edwards E, Fajardo D, Fang H, Frank MH, Gallaher T, Gebken S, Hill T, Jansky S, Kaur B, Klahs PC, Klein LL, Kuraparthy V, Londo J, Migicovsky Z, Miller A, Mohn R, Myles S, Otoni WC, Pires JC, Rieffer E, Schmerler S, Spriggs E, Topp CN, Van Deynze A, Zhang K, Zhu L, Zink BM, Chitwood DH. Frontiers in Plant Science; 9:553.

Featured in this article: Hong An, Ruthie Angelovici, Clement Bagaza, J. Chris Pires.

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Network-guided GWAS improves identification of genes affecting free amino acids. Angelovici R, Batushansky A, Deason N, Gonzalez-Jorge S, Gore MA, Fait A, Dellapenna D. Plant Physiology; 173(1):872-886.

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ZEAXANTHIN EPOXIDASE activity potentiates carotenoid degradation in maturing seed. Gonzalez-Jorge S, Mehrshahi P, Magallanes-Lundback M, Lipka AE, Angelovici R, Gore MA, DellaPenna, D. Plant Physiology; 171(3):1837-1851.

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Genome-wide analysis of branched-chain amino acid levels in Arabidopsis Seeds. Angelovici R, Lipka AE, Deason N, Gonzalez-Jorge S, Lin H, Cepela J, Buell R, Gore MA, DellaPenna, D. Plant Cell; 25(12):4827-4843.

Featured in this article: Ruthie Angelovici.

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Carotenoid cleavage dioxygenase4 is a negative regulator of β-carotene content in arabidopsis seeds. Gonzalez-Jorge S, Ha S-H, Magallanes-Lundback M, Gilliland LU, Zhou A, Lipka AE, Nguyen Y-N, Angelovici R, Lin H, Cepela J, Little H, Buell CR, Gore MA, DellaPenna, D. Plant Cell; 25(12):4812-4826.

Featured in this article: Ruthie Angelovici.

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Alteration of the interconversion of pyruvate and malate in the plastid or cytosol of ripening tomato fruit invokes diverse consequences on sugar but similar effects on cellular organic acid, metabolism, and transitory starch accumulation. Osorio S, Vallarino JG, Szecowka M, Ufaz S, Tzin V, Angelovici R, Galili G, Fernie AR. Plant Physiology; 161(2):628-643.

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Deciphering energy-associated gene networks operating in the response of Arabidopsis plants to stress and nutritional cues. Avin-Wittenberg T, Tzin V, Angelovici R, Less H, Galili G. Plant Journal; 70(6):954-966.

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Targeted enhancement of glutamate-to-γ-aminobutyrate conversion in Arabidopsis seeds affects carbon-nitrogen balance and storage reserves in a development-dependent manner. Fait A, Nesi AN, Angelovici R, Lehmann M, Pham PA, Song L, Haslam RP, Napier JA, Galili G, Fernie AR. Plant Physiology; 157(3)1026-1042.

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A friend in need is a friend: Indeed understanding stress-associated transcriptional networks of plant metabolism using cliques of coordinately expressed genes. Avin-Wittenberg T, Tzin V, Less H, Angelovici R, Galili G. Plant Signaling and Behavior; 6(9):1294-1296.

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Coordinated gene networks regulating Arabidopsis plant metabolism in response to various stresses and nutritional cues. Less H, Angelovici R, Tzin V, Galili G. Plant Cell; 23(4):1264-1271.

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A seed high-lysine trait is negatively associated with the TCA cycle and slows down Arabidopsis seed germination. Angelovici R, Fait A, Fernie AR, Galili G. New Phytologist; 189(1):148-159.

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Principal transcriptional regulation and genome-wide system interactions of the Asp-family and aromatic amino acid networks of amino acid metabolism in plants. Less, H., Angelovici, R., Tzin, V., Galili, G. Amino Acids; 39(4):1023-1028.

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Seed desiccation: a bridge between maturation and germination. Angelovici R, Galili G, Fernie AR, Fait A. Trends in Plant Science; 15(4):211-218.

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Deciphering transcriptional and metabolic networks associated with lysine metabolism during arabidopsis seed developmen. Angelovici R, Fait A, Zhu X, Szymanski J, Feldmesser E, Fernie AR, Galili G. Plant Physiology; 151(4):2058-2072.

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Arabidopsis seed development and germination is associated with temporally distinct metabolic switches. Fait A, Angelovici R, Less H, Ohad I, Urbanczyk-Wochniak E, Fernie AR, Galili G. Plant Physiology; 142(3):839-854.

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Lysine catabolism, an effective versatile regulator of lysine level in plants. Stepansky A, Less H, Angelovici R, Aharon R, Zhu X, Galili G. Amino Acids; 30(2):121-125.

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Erratum: Detection of protein-protein interactions in plants using bimolecular fluorescence complementation (The Plant Journal (November 2004) 40:3 (419-427)). Bracha-Drori K, Shichrur K, Katz A, Oliva M, Angelovici R, Yalovsky S, Ohad N. Plant Journal; 42(5):781.

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Detection of protein-protein interactions in plants using bimolecular fluorescence complementation. Bracha-Drori K, Shichrur K, Katz A, Oliva M, Angelovici R, Yalovsky S, Ohad N. Plant Journal; 40(3):419-427.

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Dissection of the Functional Surface of an Anti-insect Excitatory Toxin Illuminates a Putative “Hot Spot” Common to All Scorpion β-Toxins Affecting Na+ Channels. Cohen L, Karbat I, Gilles N, Froy O, Corzo G, Angelovici R, Gordon D, Gurevitz M. Journal of Biological Chemistry; 279(9):8206-8211.

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