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kw.\*:("Ferric-chelate reductase")

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Iron uptake mechanisms in plants : Functions of the FRO family of ferric reductasesJEONG, Jeeyon; CONNOLLY, Erin L.Plant science (Limerick). 2009, Vol 176, Num 6, pp 709-714, issn 0168-9452, 6 p.Article

Ferric-reductase activities in whole cells and cell fractions in Vibrio (Listonella) anguillarumMAZOY, R; LEMOS, M. L.Microbiology (Reading). 1996, Vol 142, pp 3187-3193, issn 1350-0872, 11Article

Inhibition of iron deficiency stress response in cucumber by rare earth elementsJOHNSON, G. V; BARTON, L. L.Plant physiology and biochemistry (Paris). 2007, Vol 45, Num 5, pp 302-308, issn 0981-9428, 7 p.Conference Paper

Two MATE proteins play a role in iron efficiency in soybeanROGERS, Elizabeth E; XIAOLEI WU; STACEY, Gary et al.Journal of plant physiology. 2009, Vol 166, Num 13, pp 1453-1459, issn 0176-1617, 7 p.Article

Expression profiling of the Arabidopsis ferric chelate reductase (FRO) gene family reveals differential regulation by iron and copperMUKHERJEE, Indrani; CAMPBELL, Nathan H; ASH, Joshua S et al.Planta. 2006, Vol 223, Num 6, pp 1178-1190, issn 0032-0935, 13 p.Article

Dynamics of metabolic responses to iron deficiency in sugar beet rootsZAHARIEVA, T. B; GOGORCENA, Y; ABADIA, J et al.Plant science (Limerick). 2004, Vol 166, Num 4, pp 1045-1050, issn 0168-9452, 6 p.Article

Reduction of 2,3-bis(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazolium-5-carboxanilide inner salt (XTT) is dependent on CaFRE10 ferric reductase for Candida albicans grown in unbuffered mediaKNIGHT, Simon A. B; DANCIS, Andrew.Microbiology (Reading). 2006, Vol 152, pp 2301-2308, issn 1350-0872, 8 p., 8Article

A new technique for screening iron-efficient genotypes in peach rootstocks: Elicitation of root ferric chelate reductase by manipulation of external iron concentrationsGOGORCENA, Yolanda; ABADIA, Javier; ABADIA, Anunciacion et al.Journal of plant nutrition. 2004, Vol 27, Num 10, pp 1701-1715, issn 0190-4167, 15 p.Article

Contribution à l'étude du mécanisme d'acquisition du fer chez Listeria monocytogenes : rôle des catéchols et des catécholamines = Iron acquisition mechanism in Listeria monocytogenes : role of catechol and catecholaminesCoulanges, Valerie; Vidon, Dominique.1997, 24 p.Thesis

Characterization of NADH-dependent Fe3+-chelate reductases of maize rootsBAGNARESI, P; PUPILLO, P.Journal of experimental botany. 1995, Vol 46, Num 291, pp 1497-1503, issn 0022-0957Article

Role of molybdate and other transition metals in the accumulation of protochelin by Azotobacter vinelandiiCORNISH, A. S; PAGE, W. J.Applied and environmental microbiology (Print). 2000, Vol 66, Num 4, pp 1580-1586, issn 0099-2240Article

Reduction of ferric chelate caused by various wood-rot fungiHIRAI, H; KONDO, R; SAKAI, K et al.Journal of wood science. 1999, Vol 45, Num 3, pp 262-265Article

Iron assimilation in Chlamydomonas reinhardtii involves ferric reduction and is similar to Strategy I higher plantsECKHARDT, U; BUCKHOUT, T. J.Journal of experimental botany. 1998, Vol 49, Num 324, pp 1219-1226, issn 0022-0957Article

Recent developments in molecular physiological approach to enhance iron acquisition for sustained crop productivity in low iron status calcareous soilsMORI, Satoshi; NISHIZAWA, N. K; SINGH, Kalyan et al.Recent research developments in molecular biology (Vol. 2 (2004)). Recent research developments in molecular biology. 2004, pp 67-80, isbn 81-7736-210-0, 14 p.Book Chapter

Utilization of iron-catecholamine complexes involving ferric reductase activity in Listeria monocytogenesCOULANGES, V; ANDRE, P; ZIEGLER, O et al.Infection and immunity. 1997, Vol 65, Num 7, pp 2778-2785, issn 0019-9567Article

Inhibition of Azotobacter salinestris growth by zinc under iron-limited conditionsPAGE, W. J; MANCHAK, J; YOHEMAS, M et al.Canadian journal of microbiology. 1996, Vol 42, Num 7, pp 655-661, issn 0008-4166Article

Allocation of Fe and ferric chelate reductase activities in mesophyll cells of barley and sorghum under Fe-deficient conditionsMIKAMI, Yuichiro; SAITO, Akihiro; MIWA, Eitaro et al.Plant physiology and biochemistry (Paris). 2011, Vol 49, Num 5, pp 513-519, issn 0981-9428, 7 p.Conference Paper

Effects of cadmium and lead on ferric chelate reductase activities in sugar beet rootsCHANG, Yi-Chieh; ZOUARI, Mohamed; GOGORCEN, Yolanda et al.Plant physiology and biochemistry (Paris). 2003, Vol 41, Num 11-12, pp 999-1005, issn 0981-9428, 7 p.Article

Effects of photoacclimation on plasma membrane ferricyanide reductase from the rhodophyta Gracilaria tenuistipitataMELGAREJO, Esther; CARNICAS, Estrella; NIELL, Francisco Xavier et al.Plant science (Limerick). 2002, Vol 162, Num 5, pp 753-759, issn 0168-9452Article

Ferric reduction by iron-limited Chlamydomonas cells interacts with both photosynthesis and respirationWEGER, H. G; ESPIE, G. S.Planta. 2000, Vol 210, Num 5, pp 775-781, issn 0032-0935Article

Induction of in vivo root ferric chelate reductase activity in fruit tree rootstockGOGORCENA, Y; ABADIA, J; ABADIA, A et al.Journal of plant nutrition. 2000, Vol 23, Num 1, pp 9-21, issn 0190-4167Article

Effects of heavy metals on both induction and function of root Fe(III) reductase in Fe-deficient cucumber (Cucumis sativus L.) plantsALCANTARA, E; ROMERA, F. J; CANETE, M et al.Journal of experimental botany. 1994, Vol 45, Num 281, pp 1893-1898, issn 0022-0957Article

Efficacy of a bacterial siderophore, pyoverdine, to supply iron to Solanum lycopersicum plantsNAGATA, Takeshi; OOBO, Takuro; AOZASA, Osamu et al.Journal of bioscience and bioengineering. 2013, Vol 115, Num 6, pp 686-690, issn 1389-1723, 5 p.Article

Development and recovery of iron deficiency by iron resupply to roots or leaves of strawberry plantsPESTANA, Maribela; CORREIA, Pedro José; SAAVEDRA, Teresa et al.Plant physiology and biochemistry (Paris). 2012, Vol 53, pp 1-5, issn 0981-9428, 5 p.Article

Arthrobacter agilis UMCV2 induces iron acquisition in Medicago truncatula (strategy I plant) in vitro via dimethylhexadecylamine emissionDEL CARMEN OROZCO-MOSQUEDA, Ma; VELÁZQUEZ-BECERRA, Crisanto; MACÍAS-RODRÍGUEZ, Lourdes I et al.Plant and soil. 2013, Vol 362, Num 1-2, pp 51-66, issn 0032-079X, 16 p.Article

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