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Inhibition of plastid PPase and NTT leads to major changes in starch and tuber formation in potato

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Hydrolysis of soluble plastidial inorganic pyrophosphate, as well as energy import of ATP to the starch-accumulating amyloplast, is essential for starch synthesis and tuber formation in potato. Click to show full abstract

Hydrolysis of soluble plastidial inorganic pyrophosphate, as well as energy import of ATP to the starch-accumulating amyloplast, is essential for starch synthesis and tuber formation in potato.

Keywords: formation potato; inhibition plastid; plastid ppase; tuber formation

Journal Title: Journal of Experimental Botany
Year Published: 2018

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