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Low assimilation efficiency of photorespiratory ammonia in conifer leaves. | LitMetric

AI Article Synopsis

  • Glutamine synthetase (GS2), crucial for ammonia assimilation in angiosperms, is often absent in conifers, specifically within the Pinaceae family, such as Pinus.
  • Research showed that conifers (like Cryptomeria japonica) predominantly have GS1 isoforms, confirming the common absence of GS2 in these species.
  • The study found that conifers have higher leaf ammonium compensation points and NH leakiness, indicating lower efficiency in photorespiratory ammonia assimilation compared to angiosperms, suggesting that the development of GS2 in land plants enhances their ability to process ammonia effectively.

Article Abstract

Glutamine synthetase (GS) localized in the chloroplasts, GS2, is a key enzyme in the assimilation of ammonia (NH) produced from the photorespiration pathway in angiosperms, but it is absent from some coniferous species belonging to Pinaceae such as Pinus. We examined whether the absence of GS2 is common in conifers (Pinidae) and also addressed the question of whether assimilation efficiency of photorespiratory NH differs between conifers that may potentially lack GS2 and angiosperms. Search of the expressed sequence tag database of Cryptomeria japonica, a conifer in Cupressaceae, and immunoblotting analyses of leaf GS proteins of 13 species from all family members in Pinidae revealed that all tested conifers exhibited only GS1 isoforms. We compared leaf NH compensation point (γ) and the increments in leaf ammonium content per unit photorespiratory activity (NH leakiness), i.e. inverse measures of the assimilation efficiency, between conifers (C. japonica and Pinus densiflora) and angiosperms (Phaseolus vulgaris and two Populus species). Both γ and NH leakiness were higher in the two conifers than in the three angiosperms tested. Thus, we concluded that the absence of GS2 is common in conifers, and assimilation efficiency of photorespiratory NH is intrinsically lower in conifer leaves than in angiosperm leaves. These results imply that acquisition of GS2 in land plants is an adaptive mechanism for efficient NH assimilation under photorespiratory environments.

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Source
http://dx.doi.org/10.1007/s10265-018-1049-2DOI Listing

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