International Journal of Molecular Sciences (Jun 2022)

Genome-Wide Identification of the <i>LHC</i> Gene Family in Kiwifruit and Regulatory Role of <i>AcLhcb3.1/3.2</i> for Chlorophyll a Content

  • Juan Luo,
  • Muhammad Abid,
  • Jing Tu,
  • Puxing Gao,
  • Zupeng Wang,
  • Hongwen Huang

DOI
https://doi.org/10.3390/ijms23126528
Journal volume & issue
Vol. 23, no. 12
p. 6528

Abstract

Read online

Light-harvesting chlorophyll a/b-binding (LHC) protein is a superfamily that plays a vital role in photosynthesis. However, the reported knowledge of LHCs in kiwifruit is inadequate and poorly understood. In this study, we identified 42 and 45 LHC genes in Actinidia chinensis (Ac) and A. eriantha (Ae) genomes. Phylogenetic analysis showed that the kiwifruit LHCs of both species were grouped into four subfamilies (Lhc, Lil, PsbS, and FCII). Expression profiles and qRT-PCR results revealed expression levels of LHC genes closely related to the light, temperature fluctuations, color changes during fruit ripening, and kiwifruit responses to Pseudomonas syringae pv. actinidiae (Psa). Subcellular localization analysis showed that AcLhcb1.5/3.1/3.2 were localized in the chloroplast while transient overexpression of AcLhcb3.1/3.2 in tobacco leaves confirmed a significantly increased content of chlorophyll a. Our findings provide evidence of the characters and evolution patterns of kiwifruit LHCs genes in kiwifruit and verify the AcLhcb3.1/3.2 genes controlling the chlorophyll a content.

Keywords