Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant
The chlorinal-1(ch1-1) mutant of Arabidopsis thaliana lacks the light-harvesting complexes in photo-system II (LHCII) due to deficiency of ability to synthesize chlorophyll (Chl) b. To investigate if a lack of LHCII affects plant growth and water loss, the Chl content, Chl fluorescence, glutathione (G...
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my-unisza-ir.50932022-09-13T04:40:30Z http://eprints.unisza.edu.my/5093/ Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant Md. Sarwar, Jahan Mohammad Moneruzzaman, Khandaker Mohd Nozulaidi, Nordin Q Science (General) QH301 Biology The chlorinal-1(ch1-1) mutant of Arabidopsis thaliana lacks the light-harvesting complexes in photo-system II (LHCII) due to deficiency of ability to synthesize chlorophyll (Chl) b. To investigate if a lack of LHCII affects plant growth and water loss, the Chl content, Chl fluorescence, glutathione (GSH) content, plant growth, water loss and stomatal aperture were measured using wild-type (WT) and ch1-1mutant plants. The leaves ofch1-1mutants accumulated significantly lower Chl content, Chl fluorescence and GSH content than WT plants. Plant growth and the leaf area of ch1-1plants were also lower when compared to WT plants. The ch1-1plant showed delayed flowering and higher a number of rosette leaves compared to the WT plants. The treatment of N-acetyl-cysteine increased Chl content and Chl fluorescence in leaves of both plants. Stomatal aperture was significantly lower in guard cells of the ch1-1mutant than that of WT plants. Dark treatment increased stomatal closure which was corrected followed by the light treatment. Abscisic acid (ABA)-induced stomatal aperture was significantly lower in ch1-1mutant than WT plants. Water loss through stomatal opening in ch1-1plants was significantly lower than WT plants regardless of ABA treatment. This study suggests that a lack of LHCII might control plant growth and water loss in ch1-1 mutant of Arabidopsis thaliana. 2014-04 Article PeerReviewed image en http://eprints.unisza.edu.my/5093/1/FH02-FBIM-14-02269.jpg image en http://eprints.unisza.edu.my/5093/2/FH02-FBIM-14-02270.jpg image en http://eprints.unisza.edu.my/5093/3/FH02-FPBSM-14-00745.jpg Md. Sarwar, Jahan and Mohammad Moneruzzaman, Khandaker and Mohd Nozulaidi, Nordin (2014) Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant. Acta Physiologiae Plantarum, 36 (7). ISSN 01375881 |
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Q Science (General) QH301 Biology Md. Sarwar, Jahan Mohammad Moneruzzaman, Khandaker Mohd Nozulaidi, Nordin Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
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The chlorinal-1(ch1-1) mutant of Arabidopsis thaliana lacks the light-harvesting complexes in photo-system II (LHCII) due to deficiency of ability to synthesize chlorophyll (Chl) b. To investigate if a lack of LHCII affects plant growth and water loss, the Chl content, Chl fluorescence, glutathione (GSH) content, plant growth, water loss and stomatal aperture were measured using wild-type (WT) and ch1-1mutant plants. The leaves ofch1-1mutants accumulated significantly lower Chl content, Chl fluorescence and GSH content than WT plants. Plant growth and the leaf area of ch1-1plants were also lower when compared to WT plants. The ch1-1plant showed delayed flowering and higher a number of rosette leaves compared to the WT plants. The treatment of N-acetyl-cysteine increased Chl content and Chl fluorescence in leaves of both plants. Stomatal aperture was significantly lower in guard cells of the ch1-1mutant than that of WT plants. Dark treatment increased stomatal closure which was corrected followed by the light treatment. Abscisic acid (ABA)-induced stomatal aperture was significantly lower in ch1-1mutant than WT plants. Water loss through stomatal opening in ch1-1plants was significantly lower than WT plants regardless of ABA treatment. This study suggests that a lack of LHCII might control plant growth and water loss in ch1-1 mutant of Arabidopsis thaliana. |
format |
Article |
author |
Md. Sarwar, Jahan Mohammad Moneruzzaman, Khandaker Mohd Nozulaidi, Nordin |
author_facet |
Md. Sarwar, Jahan Mohammad Moneruzzaman, Khandaker Mohd Nozulaidi, Nordin |
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Md. Sarwar, Jahan |
title |
Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
title_short |
Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
title_full |
Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
title_fullStr |
Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
title_full_unstemmed |
Control of plant growth and water loss by a lack of light-harvesting complexes in photosystem II in Arabidopsis thaliana ch1-1 mutant |
title_sort |
control of plant growth and water loss by a lack of light-harvesting complexes in photosystem ii in arabidopsis thaliana ch1-1 mutant |
publishDate |
2014 |
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http://eprints.unisza.edu.my/5093/1/FH02-FBIM-14-02269.jpg http://eprints.unisza.edu.my/5093/2/FH02-FBIM-14-02270.jpg http://eprints.unisza.edu.my/5093/3/FH02-FPBSM-14-00745.jpg http://eprints.unisza.edu.my/5093/ |
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