Exposure of Catasetum fimbriatum aerial roots to light coordinates carbon partitioning between source and sink organs in an auxin dependent manner

Copyright © 2018 Elsevier Masson SAS. All rights reserved.

Bibliographische Detailangaben
Veröffentlicht in:Plant physiology and biochemistry : PPB. - 1991. - 135(2019) vom: 01. Feb., Seite 341-347
1. Verfasser: Oliveira, Paulo Marcelo Rayner (VerfasserIn)
Weitere Verfasser: Rodrigues, Maria Aurineide, Gonçalves, Ana Zangirolame, Kerbauy, Gilberto Barbante
Format: Online-Aufsatz
Sprache:English
Veröffentlicht: 2019
Zugriff auf das übergeordnete Werk:Plant physiology and biochemistry : PPB
Schlagworte:Journal Article Auxin Carbon partitioning Carbon sources Catasetum Light Orchid Roots Indoleacetic Acids Fructose mehr... 30237-26-4 indoleacetic acid 6U1S09C61L Carbon 7440-44-0 Sucrase EC 3.2.1.48 Glucose IY9XDZ35W2
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100 1 |a Oliveira, Paulo Marcelo Rayner  |e verfasserin  |4 aut 
245 1 0 |a Exposure of Catasetum fimbriatum aerial roots to light coordinates carbon partitioning between source and sink organs in an auxin dependent manner 
264 1 |c 2019 
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500 |a Citation Status MEDLINE 
520 |a Copyright © 2018 Elsevier Masson SAS. All rights reserved. 
520 |a Light energy is essential for carbon metabolism in plants, as well as controlling the transport of metabolites between the organs. While terrestrial plants have a distinct structural and functional separation between the light exposed aerial parts and the non-exposed roots, epiphytic plants, such as orchids, have shoots and roots simultaneously fully exposed to light. The roots of orchids differ mainly from non-orchidaceous plants in their ability to photosynthesize. Since the roots of Catasetum fimbriatum can synthesize auxin which is acropetally transported to the shoot region, we decided to investigate whether: (1) light treatment of C. fimbriatum roots raises the auxin levels in the plant; and (2) distinct auxin concentrations can change the source-sink relationships, altering the amounts of sugars and organic acids in leaves, pseudobulbs and roots. Among the organs studied, the roots accumulated the highest concentrations of indole-3-acetic-acid (IAA); and when roots were exposed to light, IAA accumulated in the leaves. However, when polar auxin transport (PAT) was blocked with N-(1-Naphthyl)phthalamic acid (NPA) treatment, a significant accumulation of sugars and organic acids occurred in the pseudobulbs and leaves, respectively, suggesting that auxin flux from roots to shoots was involved in carbon partitioning of the aerial organs. Considering that C. fimbriatum plants lose all their leaves seasonally, it is possible the roots are a substituting influence on the growth and development of this orchid during its leafless period 
650 4 |a Journal Article 
650 4 |a Auxin 
650 4 |a Carbon partitioning 
650 4 |a Carbon sources 
650 4 |a Catasetum 
650 4 |a Light 
650 4 |a Orchid 
650 4 |a Roots 
650 7 |a Indoleacetic Acids  |2 NLM 
650 7 |a Fructose  |2 NLM 
650 7 |a 30237-26-4  |2 NLM 
650 7 |a indoleacetic acid  |2 NLM 
650 7 |a 6U1S09C61L  |2 NLM 
650 7 |a Carbon  |2 NLM 
650 7 |a 7440-44-0  |2 NLM 
650 7 |a Sucrase  |2 NLM 
650 7 |a EC 3.2.1.48  |2 NLM 
650 7 |a Glucose  |2 NLM 
650 7 |a IY9XDZ35W2  |2 NLM 
700 1 |a Rodrigues, Maria Aurineide  |e verfasserin  |4 aut 
700 1 |a Gonçalves, Ana Zangirolame  |e verfasserin  |4 aut 
700 1 |a Kerbauy, Gilberto Barbante  |e verfasserin  |4 aut 
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773 1 8 |g volume:135  |g year:2019  |g day:01  |g month:02  |g pages:341-347 
856 4 0 |u http://dx.doi.org/10.1016/j.plaphy.2018.12.022  |3 Volltext 
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