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  4. Starch synthesis in Arabidopsis is achieved by spatial cotranscription of core starch metabolism genes
 
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Starch synthesis in Arabidopsis is achieved by spatial cotranscription of core starch metabolism genes

Journal
Plant Physiology
Journal Volume
151
Journal Issue
3
Pages
1582 - 1595
Date Issued
2009
Author(s)
HUANG-LUNG TSAI  
Lue, Wei-Ling
Lu, Kuan-Jen
Hsieh, Ming-Hsiun
Wang, Shue-Mei
Chen, Jychian
DOI
10.1104/pp.109.144196
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-70350651518&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/351775
Abstract
Starch synthesis and degradation require the participation of many enzymes, occur in both photosynthetic and nonphotosynthetic tissues, and are subject to environmental and developmental regulation. We examine the distribution of starch in vegetative tissues of Arabidopsis (Arabidopsis thaliana) and the expression of genes encoding core enzymes for starch synthesis. Starch is accumulated in plastids of epidermal, mesophyll, vascular, and root cap cells but not in root proper cells. We also identify cells that can synthesize starch heterotrophically in albino mutants. Starch synthesis in leaves is regulated by developmental stage and light. Expression of gene promoter-beta-glucuronidase fusion constructs in transgenic seedlings shows that starch synthesis genes are transcriptionally active in cells with starch synthesis and are inactive in root proper cells except the plastidial phosphoglucose isomerase. In addition, ADG2 (for ADPG PYROPHOSPHORYLASE2) is not required for starch synthesis in root cap cells. Expression profile analysis reveals that starch metabolism genes can be clustered into two sets based on their tissue-specific expression patterns. Starch distribution and expression pattern of core starch synthesis genes are common in Arabidopsis and rice (Oryza sativa), suggesting that the regulatory mechanism for starch metabolism genes may be conserved evolutionarily. We conclude that starch synthesis in Arabidopsis is achieved by spatial coexpression of core starch metabolism genes regulated by their promoter activities and is fine-tuned by cell-specific endogenous and environmental controls.
SDGs

[SDGs]SDG15

Type
journal article

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