Literature DB >> 28426140

Stomatal kinetics and photosynthetic gas exchange along a continuum of isohydric to anisohydric regulation of plant water status.

Frederick C Meinzer1, Duncan D Smith2, David R Woodruff1, Danielle E Marias3, Katherine A McCulloh3, Ava R Howard4, Alicia L Magedman3.   

Abstract

Species' differences in the stringency of stomatal control of plant water potential represent a continuum of isohydric to anisohydric behaviours. However, little is known about how quasi-steady-state stomatal regulation of water potential may relate to dynamic behaviour of stomata and photosynthetic gas exchange in species operating at different positions along this continuum. Here, we evaluated kinetics of light-induced stomatal opening, activation of photosynthesis and features of quasi-steady-state photosynthetic gas exchange in 10 woody species selected to represent different degrees of anisohydry. Based on a previously developed proxy for the degree of anisohydry, species' leaf water potentials at turgor loss, we found consistent trends in photosynthetic gas exchange traits across a spectrum of isohydry to anisohydry. More anisohydric species had faster kinetics of stomatal opening and activation of photosynthesis, and these kinetics were closely coordinated within species. Quasi-steady-state stomatal conductance and measures of photosynthetic capacity and performance were also greater in more anisohydric species. Intrinsic water-use efficiency estimated from leaf gas exchange and stable carbon isotope ratios was lowest in the most anisohydric species. In comparisons between gas exchange traits, species rankings were highly consistent, leading to species-independent scaling relationships over the range of isohydry to anisohydry observed.
© 2017 John Wiley & Sons Ltd.

Entities:  

Keywords:  anisohydry; intrinsic water-use efficiency; photosynthesis; turgor

Mesh:

Substances:

Year:  2017        PMID: 28426140     DOI: 10.1111/pce.12970

Source DB:  PubMed          Journal:  Plant Cell Environ        ISSN: 0140-7791            Impact factor:   7.228


  9 in total

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4.  Increase rate of light-induced stomatal conductance is related to stomatal size in the genus Oryza.

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6.  Anisohydric sugar beet rapidly responds to light to optimize leaf water use efficiency utilizing numerous small stomata.

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Review 8.  Strategies of tree species to adapt to drought from leaf stomatal regulation and stem embolism resistance to root properties.

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9.  Hydroscapes: A Useful Metric for Distinguishing Iso-/Anisohydric Behavior in Almond Cultivars.

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  9 in total

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