光呼吸
氮同化
硝酸盐
同化(音韵学)
光合作用
植物生理学
氮气
鲁比斯科
环境化学
植物
化学
生物
生态学
语言学
哲学
有机化学
标识
DOI:10.1007/s11120-014-0056-y
摘要
C3 carbon fixation has a bad reputation, primarily because it is associated with photorespiration, a biochemical pathway thought to waste a substantial amount of the carbohydrate produced in a plant. This review presents evidence collected over nearly a century that (1) Rubisco when associated with Mn2+ generates additional reductant during photorespiration, (2) this reductant participates in the assimilation of nitrate into protein, and (3) this nitrate assimilation facilitates the use of a nitrogen source that other organisms tend to avoid. This phenomenon explains the continued dominance of C3 plants during the past 23 million years of low CO2 atmospheres as well as the decline in plant protein concentrations as atmospheric CO2 rises.
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