Has photosynthetic capacity increased with 80 years of soybean breeding? An examination of historical soybean cultivars

Plant Cell Environ. 2016 May;39(5):1058-67. doi: 10.1111/pce.12675. Epub 2016 Feb 12.

Abstract

Crop biomass production is a function of the efficiencies with which sunlight can be intercepted by the canopy and then converted into biomass. Conversion efficiency has been identified as a target for improvement to enhance crop biomass and yield. Greater conversion efficiency in modern soybean [Glycine max (L.) Merr.] cultivars was documented in recent field trials, and this study explored the physiological basis for this observation. In replicated field trials conducted over three successive years, diurnal leaf gas exchange and photosynthetic CO2 response curves were measured in 24 soybean cultivars with year of release dates (YOR) from 1923 to 2007. Maximum photosynthetic capacity, mesophyll conductance and nighttime respiration have not changed consistently with cultivar release date. However, daily carbon gain was periodically greater in more recently released cultivars compared with older cultivars. Our analysis suggests that this difference in daily carbon gain primarily occurred when stomatal conductance and soil water content were high. There was also evidence for greater chlorophyll content and greater sink capacity late in the growing season in more recently released soybean varieties. Better understanding of the mechanisms that have improved conversion efficiency in the past may help identify new, promising targets for the future.

Keywords: Glycine max; conversion efficiency; photosynthesis; respiration; stomatal conductance.

MeSH terms

  • Carbon / metabolism
  • Cell Respiration
  • Chlorophyll / metabolism
  • Circadian Rhythm
  • Gases / metabolism
  • Glycine max / growth & development*
  • Glycine max / physiology*
  • Mesophyll Cells / metabolism
  • Photons
  • Photosynthesis*
  • Plant Breeding*
  • Ribulose-Bisphosphate Carboxylase / metabolism
  • Starch / metabolism

Substances

  • Gases
  • Chlorophyll
  • Carbon
  • Starch
  • Ribulose-Bisphosphate Carboxylase