Page last updated: 2024-08-23

protochlorophyllide and protochlorophyll

protochlorophyllide has been researched along with protochlorophyll in 11 studies

Research

Studies (11)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's4 (36.36)29.6817
2010's6 (54.55)24.3611
2020's1 (9.09)2.80

Authors

AuthorsStudies
Böddi, B; Skribanek, A1
Ignatov, NV; Litvin, FF1
Belyaeva, OB; Litvin, FF1
Böddi, B; Kruk, J; Myśliwa-Kurdziel, B; Solymosi, K; Strzałka, K1
Böddi, B; Kósa, A; Solymosi, K; Vitányi, B1
Kruk, J; Mysliwa-Kurdziel, B; Strzałka, K1
Böddi, B; Kakuszi, A1
Böddi, B; Erdei, AL; Kósa, A; Kovács-Smirová, L1
Böddi, B; Kakuszi, A; Solymosi, K1
Böddi, B; Erdei, AL; Kósa, A1
Dai, G; Deng, L; Gu, D; Liang, M; Lie, Z; Liu, X; Lu, L; Peng, T; Yang, Y; Zheng, F1

Reviews

1 review(s) available for protochlorophyllide and protochlorophyll

ArticleYear
Photoactive pigment-enzyme complexes of chlorophyll precursor in plant leaves.
    Biochemistry. Biokhimiia, 2007, Volume: 72, Issue:13

    Topics: Chlorophyll; Escherichia coli; Flavins; Models, Chemical; Molecular Conformation; Oxidoreductases Acting on CH-CH Group Donors; Pigmentation; Plant Leaves; Plant Proteins; Plants; Protein Conformation; Protein Structure, Secondary; Protochlorophyllide; Substrate Specificity; Temperature

2007

Other Studies

10 other study(ies) available for protochlorophyllide and protochlorophyll

ArticleYear
Light- and cold-stress effects on the greening process in epicotyls and young stems of red oak (Quercus rubra) seedlings.
    Tree physiology, 2001, Volume: 21, Issue:8

    Topics: Chlorophyll; Cold Temperature; Light; Plant Stems; Protochlorophyllide; Quercus; Spectrometry, Fluorescence; Trees

2001
Biosynthesis of chlorophyll from protochlorophyll(ide) in green plant leaves.
    Biochemistry. Biokhimiia, 2002, Volume: 67, Issue:8

    Topics: Chlorophyll; Hibiscus; Hordeum; Phaseolus; Pisum sativum; Plant Leaves; Protochlorophyllide; Spectrometry, Fluorescence; Temperature; Time Factors; Zea mays

2002
Solvent effects on fluorescence properties of protochlorophyll and its derivatives with various porphyrin side chains.
    European biophysics journal : EBJ, 2008, Volume: 37, Issue:7

    Topics: Chlorophyll; Diterpenes; Fluorescence; Organic Chemicals; Phytol; Porphyrins; Protochlorophyllide; Solvents; Temperature; Time Factors; Vinyl Compounds; Viscosity

2008
Etioplasts with protochlorophyll and protochlorophyllide forms in the under-soil epicotyl segments of pea (Pisum sativum) seedlings grown under natural light conditions.
    Physiologia plantarum, 2013, Volume: 148, Issue:2

    Topics: Chlorophyll; Chloroplasts; Darkness; Hydroponics; Light; Microscopy, Electron; Pisum sativum; Plant Shoots; Protochlorophyllide; Seedlings; Soil; Spectrometry, Fluorescence

2013
Protochlorophyllide and protochlorophyll in model membranes - an influence of hydrophobic side chain moiety.
    Biochimica et biophysica acta, 2013, Volume: 1828, Issue:3

    Topics: Biophysics; Chlorophyll; Cucurbita; Glycolipids; Hydrophobic and Hydrophilic Interactions; Lipid Bilayers; Lipids; Liposomes; Models, Chemical; Phospholipids; Protochlorophyllide; Solvents; Spectrometry, Fluorescence; Spectrophotometry; Triticum

2013
Light piping activates chlorophyll biosynthesis in the under-soil hypocotyl section of bean seedlings.
    Journal of photochemistry and photobiology. B, Biology, 2014, Volume: 140

    Topics: Chlorophyll; Hypocotyl; Light; Microscopy, Fluorescence; Phaseolus; Plant Proteins; Protochlorophyllide; Seedlings; Spectrometry, Fluorescence; Time Factors

2014
Wavelength-dependent photooxidation and photoreduction of protochlorophyllide and protochlorophyll in the innermost leaves of cabbage (Brassica oleracea var. capitata L.).
    Photosynthesis research, 2016, Volume: 128, Issue:1

    Topics: Brassica; Chlorophyll; Fluorescence; Light; Oxidation-Reduction; Oxygen; Photochemical Processes; Plant Leaves; Protochlorophyllide; Sunlight

2016
Transformation of plastids in soil-shaded lowermost hypocotyl segments of bean (Phaseolus vulgaris) during a 60-day cultivation period.
    Physiologia plantarum, 2017, Volume: 159, Issue:4

    Topics: Chlorophyll; Hypocotyl; Image Processing, Computer-Assisted; Phaseolus; Plastids; Protochlorophyllide; Soil; Spectrometry, Fluorescence; Transformation, Genetic

2017
Distinct UV-A or UV-B irradiation induces protochlorophyllide photoreduction and bleaching in dark-grown pea (Pisum sativum L.) epicotyls.
    Photosynthesis research, 2019, Volume: 140, Issue:1

    Topics: Chlorophyll; Chlorophyllides; Darkness; Fluorescence; Microscopy, Fluorescence; Oxidation-Reduction; Photochemical Processes; Photosynthesis; Pisum sativum; Plant Leaves; Protochlorophyllide; Ultraviolet Rays

2019
Regulation of chlorophyll biosynthesis by light-dependent acetylation of NADPH:protochlorophyll oxidoreductase A in Arabidopsis.
    Plant science : an international journal of experimental plant biology, 2023, Volume: 330

    Topics: Acetylation; Arabidopsis; Arabidopsis Proteins; Chlorophyll; Light; NADP; Oxidoreductases; Oxidoreductases Acting on CH-CH Group Donors; Protochlorophyllide

2023