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kw.\*:("Peribacteroid membrane")

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Results 1 to 16 of 16

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Passive potassium transport by symbiosomes from broad bean root nodulesANDREEV, Igor; KRYLOVA, Valeria; DUBROVO, Pavel et al.Plant science (Limerick). 2005, Vol 168, Num 4, pp 1005-1010, issn 0168-9452, 6 p.Article

Developmentally regulated membrane glycoproteins sharing antigenicity with rhamnogalacturonan II are not detected in nodulated boron deficient Pisum sativumREDONDO-NIETO, Miguel; PULIDO, Luis; REGUERA, Maria et al.Plant, cell and environment (Print). 2007, Vol 30, Num 11, pp 1436-1443, issn 0140-7791, 8 p.Article

Metabolic and structural rearrangement during dark-induced autophagy in soybean (Glycine max L.) nodules: an electron microscopy and 31P and 13C nuclear magnetic resonance studyVAUCLARE, Pierre; BLIGNY, Richard; GOUT, Elisabeth et al.Planta. 2010, Vol 231, Num 6, pp 1495-1504, issn 0032-0935, 10 p.Article

Soybean (Glycine max. L.) and bacteroid glyoxylate cycle activities during nodular senescenceFARGEIX, Christophe; GINDRO, Katia; WIDMER, Francois et al.Journal of plant physiology. 2004, Vol 161, Num 2, pp 183-190, issn 0176-1617, 8 p.Article

NH4+ currents across the peribacteroid membrane of soybean. macroscopic and microscopic properties, inhibition by Mg2+-, and temperature dependence indicate a subpicosiemens channel finely regulated by divalent cationsOBERMEYER, Gerhard; TYERMAN, Stephen D.Plant physiology (Bethesda). 2005, Vol 139, Num 2, pp 1015-1029, issn 0032-0889, 15 p.Article

The properties of ATPases from the peribacteroid membranes of lupine root nodulesDUBROVO, P. N; KRYLOVA, V. V; LIVANOVA, G. I et al.Fiziologiâ rastenij. 1992, Vol 39, Num 3, pp 503-513, issn 0015-3303Article

Ca2+-dependent protein kinase activity in the peribacteroid membrane from soybean root nodulesBASSARAB, S; WERNER, D.Journal of plant physiology. 1987, Vol 130, Num 2-3, pp 233-241, issn 0176-1617Article

Root nodule development : origin, function and regulation of modulin genesVERMA, D. P. S; HU, C.-A; ZHANG, M et al.Physiologia Plantarum (København. 1948). 1992, Vol 85, Num 2, pp 253-265, issn 0031-9317Conference Paper

Rhizobium colonization induced changes in membrane-bound and soluble hydroxyproline-rich glycoprotein composition in peaOLSSON, Pal Axel; KJELLBOM, Per; ROSENDAHL, Lis et al.Physiologia Plantarum (København. 1948). 2002, Vol 114, Num 4, pp 652-660, issn 0031-9317Article

Calcium stores in symbiosomes from yellow lupin root nodulesANDREEVA, I. N; ANDREEV, I. M; DUBROVO, P. N et al.Journal of plant physiology. 1999, Vol 155, Num 3, pp 357-363, issn 0176-1617Article

Localization of H+-ATPases in soybean root nodulesFEDOROVA, E; THOMSON, R; WHITEHEAD, L. F et al.Planta. 1999, Vol 209, Num 1, pp 25-32, issn 0032-0935Article

Transport properties of symbiosomes isolated from siratro nodulesLI-JUN OUYANG; DAY, D. A.Plant physiology and biochemistry (Paris). 1992, Vol 30, Num 6, pp 613-623, issn 0981-9428Article

Alterations induced by glyphosate on lupin photosynthetic apparatus and nodule ultrastructure and some oxygen diffusion related proteinsDE MARIA, Nuria; DE FELIPE, Maria R; FEMANDEZ-PASCUAL, Mercedes et al.Plant physiology and biochemistry (Paris). 2005, Vol 43, Num 10-11, pp 985-996, issn 0981-9428, 12 p.Article

Calcium uptake by symbiosomes and the peribacteroid membrane vesicles isolated from yellow lupin root nodulesANDREEV, I. M; DUBROVO, P. N; KRYLOVA, V. V et al.Journal of plant physiology. 1998, Vol 153, Num 5-6, pp 610-614, issn 0176-1617Article

Characterization of ATP-hydrolyzing and ATP-driven proton-translocating activities associated with the peribacteroid membrane from root nodules of Lupinus luteus LANDREEV, I; DUBROVO, P; KRYLOVA, V et al.Journal of plant physiology. 1997, Vol 151, Num 5, pp 563-569, issn 0176-1617Article

Proteome analysis. novel proteins identified at the peribacteroid membrane from Lotus japonicus root nodules : LegumeWIENKOOP, Stefanie; SAALBACH, Gerhard.Plant physiology (Bethesda). 2003, Vol 131, Num 3, pp 1080-1090, issn 0032-0889, 11 p.Article

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