Starch-dependent sodium accumulation in the leaves of Vigna riukiuensis

J Plant Res. 2023 Sep;136(5):705-714. doi: 10.1007/s10265-023-01470-8. Epub 2023 May 26.

Abstract

This research provides insight into a unique salt tolerance mechanism of Vigna riukiuensis. V. riukiuensis is one of the salt-tolerant species identified from the genus Vigna. We have previously reported that V. riukiuensis accumulates a higher amount of sodium in the leaves, whereas V. nakashimae, a close relative of V. riukiuensis, suppresses sodium allocation to the leaves. We first suspected that V. riukiuensis would have developed vacuoles for sodium sequestration, but there were no differences compared to a salt-sensitive species V. angularis. However, many starch granules were observed in the chloroplasts of V. riukiuensis. In addition, forced degradation of leaf starch by shading treatment resulted in no radio-Na (22Na) accumulation in the leaves. We performed SEM-EDX to locate Na in leaf sections and detected Na in chloroplasts of V. riukiuensis, especially around the starch granules but not in the middle of. Our results could provide the second evidence of the Na-trapping system by starch granules, following the case of common reed that accumulates starch granule at the shoot base for binding Na.

Keywords: Autoradiography; Genus Vigna; Salt tolerance; Starch granules; Wild crop relatives.

MeSH terms

  • Chloroplasts / metabolism
  • Plant Leaves / metabolism
  • Sodium / metabolism
  • Starch / metabolism
  • Vigna* / metabolism

Substances

  • Sodium
  • Starch