Manipulation of light quality is an effective tool to regulate photosynthetic capacity and fruit antioxidant properties of Solanum lycopersicum L. cv. 'Microtom' in a controlled environment
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Vitale, Ermenegilda
[1
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Velikova, Violeta
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Bulgarian Acad Sci, Inst Plant Physiol & Genet, Sofia, BulgariaUniv Naples Federico II, Dept Biol, Naples, Italy
Velikova, Violeta
[2
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Tsonev, Tsonko
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Bulgarian Acad Sci, Inst Biophys & Biomed Engn, Sofia, BulgariaUniv Naples Federico II, Dept Biol, Naples, Italy
Tsonev, Tsonko
[3
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Costanzo, Giulia
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Univ Naples Federico II, Dept Biol, Naples, ItalyUniv Naples Federico II, Dept Biol, Naples, Italy
Costanzo, Giulia
[1
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Paradiso, Roberta
[4
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Arena, Carmen
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Univ Naples Federico II, Dept Biol, Naples, Italy
Ctr Studies Bioinspired Agroenvironm Technol, BAT Ctr, Portici, ItalyUniv Naples Federico II, Dept Biol, Naples, Italy
Arena, Carmen
[1
,5
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[1] Univ Naples Federico II, Dept Biol, Naples, Italy
Light quality plays an essential role in setting plant structural and functional traits, including antioxidant compounds. This paper aimed to assess how manipulating the light spectrum during growth may regulate the photosynthetic activity and fruit bioactive compound synthesis in Solanum lycopersicum L. cv. 'Microtom' to improve plant physiological performance and fruit nutritional value. Plants were cultivated under three light quality regimes: red-green-blue LEDs (RGB), red-blue LEDs (RB) and white fluorescent lamps (FL), from sowing to fruit ripening. Leaf functional traits, photosynthetic efficiency, Rubisco and D1 protein expression, and antioxidant production in fruits were analyzed. Compared to FL, RGB and RB regimes reduced height and increased leaf number and specific leaf area, enhancing plant dwarf growth. The RGB regime improved photosynthesis and stomatal conductance despite lower biomass, favoring Rubisco synthesis and carboxylation rate than RB and FL regimes. The RB light produced plants with fewer flowers and fruits with a lower ascorbic acid amount but the highest polyphenol content, antioxidant capacity and SOD and CAT activities. Our data indicate that the high percentage of the green wavelength in the RGB regime promoted photosynthesis and reduced plant reproductive capacity compared to FL and RB. Conversely, the RB regime was the best in favoring the production of health-promoting compounds in tomato berries.
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Acharya Narendra Dev Coll, Dept Bot, New Delhi 110019, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Yasheshwar
Kaula, Babeeta C.
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Univ Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Kaula, Babeeta C.
Siddiqui, Zahid Hameed
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Univ Tabuk, Fac Sci, Dept Biol, Genom & Biotechnol Unit, Tabuk 71491, Saudi ArabiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Siddiqui, Zahid Hameed
Al Messelmani, Moaed
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Univ Sheffield, Grantham Ctr, Sch Biosci, Western Bank, Alfred Denny Bldg, Firth Court, Sheffield, South Yorkshire, EnglandUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Al Messelmani, Moaed
Sahoo, Ranjan Kumar
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Centurion Univ Technol & Management, Dept Biotechnol, R Sitapur, Orissa, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Sahoo, Ranjan Kumar
Ansari, Mohammad Wahid
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Univ Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Ansari, Mohammad Wahid
Pongiya, UmaDevi
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Dhanalakshmi Srinivasan Coll Arts & Sci Women, Perambalur, Tamil Nadu, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Pongiya, UmaDevi
Rakwal, Randeep
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Univ Tsukuba, Inst Hlth & Sport Sci, Ibaraki, JapanUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India
Rakwal, Randeep
Tuteja, Narendra
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Int Ctr Genet Engn & Biotechnol, New Delhi, IndiaUniv Delhi, Zakir Husain Delhi Coll, Dept Bot, New Delhi, India