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Perturbation of tonoplast sucrose transport alters carbohydrate utilization for seasonal growth and defense metabolism in coppiced poplar.
Tuma, Trevor T; Nyamdari, Batbayar; Hsieh, Chen; Chen, Yen-Ho; Harding, Scott A; Tsai, Chung-Jui.
Afiliação
  • Tuma TT; Warnell School of Forestry and Natural Resources, 180 E. Green Street, University of Georgia, Athens, GA 30602, USA.
  • Nyamdari B; Warnell School of Forestry and Natural Resources, 180 E. Green Street, University of Georgia, Athens, GA 30602, USA.
  • Hsieh C; Institute of Bioinformatics, 120 E. Green Street, University of Georgia, Athens, GA 30602, USA.
  • Chen YH; Department of Plant Biology, 2502 Miller Plant Sciences, University of Georgia, Athens, GA 30602, USA.
  • Harding SA; Warnell School of Forestry and Natural Resources, 180 E. Green Street, University of Georgia, Athens, GA 30602, USA.
  • Tsai CJ; Department of Genetics, 120 E. Green Street, University of Georgia, Athens, GA 30602, USA.
Tree Physiol ; 44(7)2024 Jul 02.
Article em En | MEDLINE | ID: mdl-38857382
ABSTRACT
Nonstructural carbohydrate reserves of stems and roots underpin overall tree fitness and productivity under short-rotation management practices such as coppicing for bioenergy. While sucrose and starch comprise the predominant stem carbohydrate reserves of Populus, utilization for fitness and agricultural productivity is understood primarily in terms of starch turnover. The tonoplast sucrose transport protein SUT4 modulates sucrose export from source leaves to distant sinks during photoautotrophic growth, but the possibility of its involvement in remobilizing carbohydrates from storage organs during heterotrophic growth has not been explored. Here, we used PtaSUT4-knockout mutants of Populus tremula × P. alba (INRA 717-1B4) in winter (cool) and summer (warm) glasshouse coppicing experiments to assess SUT4 involvement in reserve utilization. Conditions preceding and supporting summer sprouting were considered favorable for growth, while those preceding and supporting cool temperature sprouting were suboptimal akin to conditions associated with coppicing as generally practiced. Epicormic bud emergence was delayed in sut4 mutants following lower temperature 'winter' but not summer coppicing. Winter xylem hexose increases were observed in control but not in sut4 stumps after coppicing. The magnitude of starch and sucrose reserve depletion was similar in control and sut4 stumps during the winter and did not explain the sprouting and xylem hexose differences. However, winter maintenance costs appeared higher in sut4 based partly on Krebs cycle intermediate levels. In control plants, bark accrual of abundant defense metabolites, including salicinoids and condensed tannins, was higher in summer than in winter, but this increase of summer defense allocations was attenuated in sut4 mutants. Temperature-sensitive trade-offs between growth and other priorities may therefore depend on SUT4 in Populus.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Estações do Ano / Sacarose / Populus / Metabolismo dos Carboidratos Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Proteínas de Plantas / Estações do Ano / Sacarose / Populus / Metabolismo dos Carboidratos Idioma: En Ano de publicação: 2024 Tipo de documento: Article