| Literature DB >> 29472935 |
Thilo Rühle1, Bennet Reiter1, Dario Leister1.
Abstract
Measurements of chlorophyll fluorescence provide an elegant and non-invasive means of probing the dynamics of photosynthesis. Advances in video imaging of chlorophyll fluorescence have now made it possible to study photosynthesis at all levels from individual cells to entire crop populations. Since the technology delivers quantitative data, is easily scaled up and can be readily combined with other approaches, it has become a powerful phenotyping tool for the identification of factors relevant to photosynthesis. Here, we review genetic chlorophyll fluorescence-based screens of libraries of Arabidopsis and Chlamydomonas mutants, discuss its application to high-throughput phenotyping in quantitative genetics and highlight potential future developments.Entities:
Keywords: Arabidopsis; Chlamydomonas; chlorophyll fluorescence; chloroplast; forward genetic screen; photosynthesis; reverse genetic screen; screening
Year: 2018 PMID: 29472935 PMCID: PMC5810273 DOI: 10.3389/fpls.2018.00055
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Chronology of Chl fluorescence phenotyping based gene discovery studies.
| Phenotype/principle | Organism | Authors |
|---|---|---|
| Chlamydomonas | ||
| Maize | ||
| Maize | ||
| Maize | ||
| Arabidopsis | ||
| Arabidopsis | ||
| Low NPQ after high light treatment | Chlamydomonas | |
| Low NPQ after high light treatment | Arabidopsis | |
| Deficiency in state transition | Chlamydomonas | |
| Deficiency in state transition | Chlamydomonas | |
| Low NPQ after high light treatment | Arabidopsis | |
| Alterations in ΦII | Arabidopsis | |
| Lack of NDH complex activity | Arabidopsis | |
| Identification of mutants with unchanged ΦII after acclimation to high light | Arabidopsis | |
| Low NPQ after high light treatment | Arabidopsis | |
| Arabidopsis | ||
| Identification of photorespiration mutants by comparison of | Arabidopsis | |
| Identification of NDH complex mutants in a guilt-by-association approach | Arabidopsis | |
| Quantitative genetic analysis of thermal dissipation | Arabidopsis | |
| Identification of CEF mutants with a high qE | Arabidopsis | |
| Affected Chl fluorescence transients | Chlamydomonas | |
| Affected Chl fluorescence transients | Chlamydomonas | |
| Identification of hydrogenase-deficient mutants using ΦII measurements under anaerobiosis | Chlamydomonas | |
| Suppressor screen of mutants with a high NPQ in the absence of PsbS | Arabidopsis | |
| Identification of mutants with altered mitochondrial respiration using | Chlamydomonas | |
| Quantitative genetic analysis of variations in ΦII acclimation to irradiance changes in different natural Arabidopsis accessions | Arabidopsis | |
| High transient NPQ after a dark-light shift | Arabidopsis | |
| Identification of mutants with emergent photosynthetic phenotypes under dynamic environmental conditions | Arabidopsis | |
| Identification of mitochondrial complex I mutants in a ΦII-based screening of a mutagenized | Chlamydomonas | |
| Identification of mutants affected in the slowly reversible photoprotective form of NPQ termed qH | Arabidopsis |