Ol Chem 2004, 279:9091?096. Astolfi S, Zuchi S, Hubberten HM, Pinton R, Hoefgen R: Source of sulphur to S-deficient younger barley seedlings restores their capacity to manage with iron lack. J Exp Bot 2010, sixty one:799?06. von Wir , N, Klair S, Bansal S, Briat JF, Khodr H, Shioiri T, Leigh RA, Hider RC: Nicotianamine chelates both equally Fe(III) and Fe(II) implications for metal transportation in plants. Plant Physiol 1999, 119:1107?114. Kim SA, Punshon T, Lanzirotti A, Li A, Alonso JM, Ecker JR, Kaplan J, Guerinot ML: Localization of iron in Arabidopsis seed calls for the vacuolar membrane transporter VIT1. Science 2006, 314:1295?298. Lanquar V, Leli re F, Bolte S, Ham C, Alcon C, Neumann D, Vansuyt G, Curie C, Schr er A, Kr er U, Barbier-Brygoo H, Thomine S: Mobilization of vacuolar iron by AtNRAMP3 and AtNRAMP4 is essential for seed germination on low iron. EMBO Journal 2005, 24:4041?051. Kobayashi Y, Koyama H: QTL analysis of Al tolerance in recombinant inbred lines of Arabidopsis thaliana. Plant Cell Physiol 2002, 43:1526?533. Salt DE, Baxter PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/15501003 I, Lahner B: Ionomics along with the analyze in the plant ionome. Annu Rev Plant Biol 2008, fifty nine:709?33. Mitchell-Olds T, Pedersen D: The molecular basis of quantitative genetic variation in central and secondary metabolic rate in Arabidopsis. Genetics 1998, 149:739?forty seven. Zhang N, Gibon Y, Gur A, Chen C, Lepak N, H ne M, Zhang Z, Kroon D, Tschoep H, Stitt M, Buckler E: High-quality quantitative trait loci mapping of carbon and nitrogen metabolic rate enzyme functions and seedling28.29.30.31. 32.33. 34.35.36.37.38.39.forty.41.42.forty three.44. forty five.46.47.forty eight.biomass from the maize IBM mapping inhabitants. Plant Physiol 2010, 154(4):1753?765. Thoiron S, Pascal N, Briat JF: Affect of iron deficiency and iron re-supply during the early stages of vegetative progress in maize (Zea mays L.). Plant Cell Approximativement 1997, twenty:1051?060. Lung’aho MG, Mwaniki AM, Szalma SJ, Hart JJ, Rutzke MA, Kochian LV, Glahn RP, Hoekenga OA: Genetic and physiological analysis of iron biofortification in Maize Kernels. PLoS One 2011, 6:e20429. Xue D, Chen M, Zhang G: Mapping of QTLs related with cadmium tolerance and accumulation all through seedling stage in rice (Oryza sativa L.). Euphytica 2009, 165:587?ninety six. R held V: The chlorosis paradox: Fe inactivation as a secondary occasion in chlorotic leaves of grapevine. J Plant Nutr 2000, 23:1629?643. Duy D, St e R, Wanner G, Philippar K: The chloroplast permease PIC1 regulates plant development and enhancement by directing homeostasis and transport of iron. Plant Physiol 2011, 155:1709?722. Briat JF, Lobr ux S, Grignon N, Vansuyt G: Regulation of plant ferritin synthesis: How and why. Cell Mol Life Sci 1999, 56:one hundred fifty five?66. Zhang C, R held V, Marschner H: Retranslocation of iron from main leaves of bean plants grown below iron Atazanavir deficiency. J Plant Physiol 1995, 146:268?seventy two. Tognetti VB, Zurbriggen MD, Morandi EN, Fillat MF, Valle EM, Hajirezaei MR, Carrillo N: Increased plant tolerance to iron hunger by useful substitution of chloroplast ferredoxin that has a bacterial flavodoxin. Proc Natl Acad Sci United states 2007, 104:11495?1500. Hase T, Kimata Y, Yonekura K, Matsumura T, Sakakibara H: Molecular cloning and differential expression on the maize ferredoxin gene family. Plant Physiol 1991, 96:77?3. Terauchi AM, Lu SF, Zaffagnini M, Tappa S, Hirasawa M, Tripathy JN, Knaff DB, Farmer PJ, Lemaire SD, Hase T, Merchant SS: Pattern of expression and substrate specificity of chloroplast ferredoxins from Chlamydomonas reinhardtii. J Biol Chem 2009, 284:25867?fifty eight.
Ol Chem 2004, 279:9091?096. Astolfi S, Zuchi S, Hubberten HM, Pinton R, Hoefgen
December 13, 2022






