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Rapid starch degradation in the wood of olive trees under heat and drought is permitted by three stress-specific beta amylases.
Tsamir-Rimon, Mor; Ben-Dor, Shifra; Feldmesser, Ester; Oppenhimer-Shaanan, Yaara; David-Schwartz, Rakefet; Samach, Alon; Klein, Tamir.
Afiliación
  • Tsamir-Rimon M; Plant & Environmental Sciences Department, Weizmann Institute of Science, Rehovot, 76100, Israel.
  • Ben-Dor S; The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, 76100, Israel.
  • Feldmesser E; Life Science Core Facilities, Weizmann Institute of Science, Rehovot, 76100, Israel.
  • Oppenhimer-Shaanan Y; Life Science Core Facilities, Weizmann Institute of Science, Rehovot, 76100, Israel.
  • David-Schwartz R; Plant & Environmental Sciences Department, Weizmann Institute of Science, Rehovot, 76100, Israel.
  • Samach A; Institute of Plant Sciences, Agricultural Research Organization, Volcani Center, Rishon LeZion, 7505101, Israel.
  • Klein T; The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, 76100, Israel.
New Phytol ; 229(3): 1398-1414, 2021 02.
Article en En | MEDLINE | ID: mdl-32880972
Carbon reserve use is a major drought response in trees, enabling tree survival in conditions prohibiting photosynthesis. However, regulation of starch metabolism under drought at the whole-tree scale is still poorly understood. To this end, we combined measurements of nonstructural carbohydrates (NSCs), tree physiology and gene expression. The experiment was conducted outside on olive trees in pots under 90 d of seasonal spring to summer warming. Half of the trees were also subjected to limited water conditions for 28 d. Photosynthesis decreased in dehydrating trees from 19 to 0.5 µmol m-2  s-1 during the drought period. Starch degradation and mannitol production were a major drought response, with mannitol increasing to 71% and 41% out of total NSCs in shoots and roots, respectively. We identified the gene family members potentially relevant either to long-term or stress-induced carbon storage. Partitioning of expression patterns among ß amylase and starch synthase family members was observed, with three ß amylases possibly facilitating the rapid starch degradation under heat and drought. Our results suggest a group of stress-related, starch metabolism genes, correlated with NSC fluctuations during drought and recovery. The daily starch metabolism gene expression was different from the stress-mode starch metabolism pattern, where some genes are uniquely expressed during the stress-mode response.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Beta-Amilasa / Olea Idioma: En Revista: New Phytol Asunto de la revista: BOTANICA Año: 2021 Tipo del documento: Article País de afiliación: Israel

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Beta-Amilasa / Olea Idioma: En Revista: New Phytol Asunto de la revista: BOTANICA Año: 2021 Tipo del documento: Article País de afiliación: Israel