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      Irradiance stress and plant spacing effect on growth, biomass and quality of wild marigold (Tagetes minutaL.) – an industrial crop in western Himalaya

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      Journal of Essential Oil Research
      Informa UK Limited

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          Photosynthetic acclimation of plants to growth irradiance: the relative importance of specific leaf area and nitrogen partitioning in maximizing carbon gain

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            Light signals and flowering.

            Physiological studies over a long period have shown that light acts to regulate flowering through the three main variables of quality, quantity, and duration. Intensive molecular genetic and genomic studies with the model plant Arabidopsis have given considerable insight into the mechanisms involved, particularly with regard to quality and photoperiod. For photoperiodism light, acting through phytochromes and cryptochromes, the main photomorphogenetic photoreceptors, acts to entrain and interact with a circadian rhythm of CONSTANS (CO) expression leading to transcription of the mobile floral integrator, FLOWERING LOCUS T (FT). The action of phytochromes and cryptochromes in photoperiodism is augmented by ZEITLUPE (ZTL) and FLAVIN-BINDING, KELCH REPEAT, F-BOX (FKF1) acting as accessory photoreceptors on entrainment and interaction, respectively. Light quality acts independently of the circadian system through Phytochromes B, D, and E to regulate FT. Light quantity effects, on the other hand, are still incompletely understood but are likely to be linked either directly or indirectly to patterns of assimilate partitioning and resource utilization within the plant.
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              Effects of reduced irradiance on leaf morphology, photosynthetic capacity, and fruit yield in olive (Olea europaea L.)

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                Author and article information

                Journal
                Journal of Essential Oil Research
                Journal of Essential Oil Research
                Informa UK Limited
                1041-2905
                2163-8152
                July 04 2014
                September 03 2014
                July 07 2014
                September 03 2014
                : 26
                : 5
                : 348-358
                Article
                10.1080/10412905.2014.935497
                08b183cf-618e-44f8-abec-42d5867b2028
                © 2014
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