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R Franceschi

Showing results (11-20 of 91) with videos related to

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Planta|November 23, 2013
The paraveinal mesophyll of soybean leaves in relation to assimilate transfer and compartmentation : II. Structural, metabolic and compartmental changes during reproductive growthV R Franceschi, R T Giaquinta
Plant Physiology|August 10, 2004
Methyl jasmonate-induced ethylene production is responsible for conifer phloem defense responses and reprogramming of stem cambial zone for traumatic resin duct formationJ W Hudgins, Vincent R Franceschi
American Journal of Botany|June 14, 2011
Application of methyl jasmonate on Picea abies (Pinaceae) stems induces defense-related responses in phloem and xylemVincent R Franceschi, Trygve Krekling, Erik Christiansen
Tree Physiology|March 19, 2003
Methyl jasmonate induces changes mimicking anatomical defenses in diverse members of the PinaceaeJ W Hudgins, Erik Christiansen, Vincent R Franceschi
Cell|March 26, 1993
Segregation of storage protein mRNAs on the rough endoplasmic reticulum membranes of rice endosperm cellsX Li, V R Franceschi, T W Okita
The New Phytologist|April 20, 2021
Distribution of calcium oxalate crystals in the secondary phloem of conifers: a constitutive defense mechanism?J W Hudgins, Trygve Krekling, Vincent R Franceschi
Tumour Biology : the Journal of the International Society for Oncodevelopmental Biology and Medicine|January 1, 1995
CA 15-3 value and neoplastic disease predictivity in the follow-up for breast cancerM Busetto, L Vianello, R Franceschi, et al.
Plant Physiology|December 1, 1979
Effects of pronase on isolated chloroplastsL Fish, V R Franceschi, C R Stocking
Tree Physiology|January 6, 2004
Induction of anatomically based defense responses in stems of diverse conifers by methyl jasmonate: a phylogenetic perspectiveJ W Hudgins, Erik Christiansen, Vincent R Franceschi
Plant Physiology|June 1, 1993
Mannose-6-Phosphate Reductase, a Key Enzyme in Photoassimilate Partitioning, Is Abundant and Located in the Cytosol of Photosynthetically Active Cells of Celery (Apium graveolens L.) Source LeavesJ. D. Everard, V. R. Franceschi, W. H. Loescher
Pageof 10

Showing results (11-20 of 91) with videos related to

Sort By:
Pageof 10
Planta|November 23, 2013
The paraveinal mesophyll of soybean leaves in relation to assimilate transfer and compartmentation : II. Structural, metabolic and compartmental changes during reproductive growthV R Franceschi, R T Giaquinta
Plant Physiology|August 10, 2004
Methyl jasmonate-induced ethylene production is responsible for conifer phloem defense responses and reprogramming of stem cambial zone for traumatic resin duct formationJ W Hudgins, Vincent R Franceschi
American Journal of Botany|June 14, 2011
Application of methyl jasmonate on Picea abies (Pinaceae) stems induces defense-related responses in phloem and xylemVincent R Franceschi, Trygve Krekling, Erik Christiansen
Tree Physiology|March 19, 2003
Methyl jasmonate induces changes mimicking anatomical defenses in diverse members of the PinaceaeJ W Hudgins, Erik Christiansen, Vincent R Franceschi
Cell|March 26, 1993
Segregation of storage protein mRNAs on the rough endoplasmic reticulum membranes of rice endosperm cellsX Li, V R Franceschi, T W Okita
The New Phytologist|April 20, 2021
Distribution of calcium oxalate crystals in the secondary phloem of conifers: a constitutive defense mechanism?J W Hudgins, Trygve Krekling, Vincent R Franceschi
Tumour Biology : the Journal of the International Society for Oncodevelopmental Biology and Medicine|January 1, 1995
CA 15-3 value and neoplastic disease predictivity in the follow-up for breast cancerM Busetto, L Vianello, R Franceschi, et al.
Plant Physiology|December 1, 1979
Effects of pronase on isolated chloroplastsL Fish, V R Franceschi, C R Stocking
Tree Physiology|January 6, 2004
Induction of anatomically based defense responses in stems of diverse conifers by methyl jasmonate: a phylogenetic perspectiveJ W Hudgins, Erik Christiansen, Vincent R Franceschi
Plant Physiology|June 1, 1993
Mannose-6-Phosphate Reductase, a Key Enzyme in Photoassimilate Partitioning, Is Abundant and Located in the Cytosol of Photosynthetically Active Cells of Celery (Apium graveolens L.) Source LeavesJ. D. Everard, V. R. Franceschi, W. H. Loescher
Pageof 10