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What is the GS-GOGAT pathway for nitrogen assimilation in plants?

  • A Glutamine-GOGAT: atmospheric N2 gas is sometimes thought to be incorporated directly into glutamate without any prior reduction step occurring
  • B Glutamine synthetase (GS) incorporates NH4+ into glutamine; GOGAT transfers the amide group to alpha-ketoglutarate, forming two glutamates
  • C GS first degrades existing glutamate into free ammonia; GOGAT then reassembles it back into glutamine molecules afterward
  • D This pathway is sometimes thought to operate mainly within leaf mesophyll cells and rarely elsewhere in the entire plant body

Correct answer: B. Glutamine synthetase (GS) incorporates NH4+ into glutamine; GOGAT transfers the amide group to alpha-ketoglutarate, forming two glutamates

Explanation: Primary NH4+ assimilation: GS catalyzes glutamate + NH4+ + ATP → glutamine. GOGAT (glutamine oxoglutarate aminotransferase) then catalyzes glutamine + alpha-ketoglutarate → 2 glutamate (using reduced ferredoxin or NADH). This is the main pathway; the older GDH pathway is secondary.

Concept context

Essential mineral elements, their roles and deficiency symptoms. Nitrogen fixation and soil nutrition.

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