0661
GmGLU1 and GmRR4 contribute to iron deficiency tolerance in soybean
Daniel R. Kohlhase; Jamie A. O’Rourke; Michelle A. Graham
Original research article
Lab study
Soybean
Iron
View source document
year
2024
Country
United States
Abstract

Iron deficiency chlorosis (IDC) is a form of abiotic stress that negatively impacts soybean yield. In a previous study, we demonstrated that the historical IDC quantitative trait locus (QTL) on soybean chromosome Gm03 was composed of four distinct linkage blocks, each containing candidate genes for IDC tolerance. Here, we take advantage of virus-induced gene silencing (VIGS) to validate the function of three high-priority candidate genes, each corresponding to a different linkage block in the Gm03 IDC QTL. We built three single-gene constructs to target GmGLU1 (GLUTAMATE SYNTHASE 1, Glyma.03G128300), GmRR4 (RESPONSE REGULATOR 4, Glyma.03G130000), and GmbHLH38 (beta Helix Loop Helix 38, Glyma.03G130400 and Glyma.03G130600). Given the polygenic nature of the iron stress tolerance trait, we also silenced the genes in combination. We built two constructs targeting GmRR4+GmGLU1 and GmbHLH38+GmGLU1. All constructs were tested on the iron-efficient soybean genotype Clark grown in iron-sufficient conditions. We observed significant decreases in soil plant analysis development (SPAD) measurements using the GmGLU1 construct and both double constructs, with potential additive effects in the GmRR4+GmGLU1 construct. Whole genome expression analyses (RNA-seq) revealed a wide range of affected processes including known iron stress responses, defense and hormone signaling, photosynthesis, and cell wall structure. These findings highlight the importance of GmGLU1 in soybean iron stress responses and provide evidence that IDC is truly a polygenic trait, with multiple genes within the QTL contributing to IDC tolerance. Finally, we conducted BLAST analyses to demonstrate that the Gm03 IDC QTL is syntenic across a broad range of plant species.

Keywords

Glycine max; soybean; virus-induced gene silencing; RR4; bHLH38; GLU1; iron deficiency; IDC; QTL

Outcomes reported
Physiological
Synthesis
Key insight
Silencing GmGLU1, especially in double-gene constructs, reduced SPAD readings and induced broad iron-stress-related transcriptomic responses in Clark soybean grown in iron-sufficient hydroponics.
Limitations
Controlled-environment VIGS and RNA-seq study without soil, yield, economic, or direct tissue iron-concentration outcomes.
Welland | Ontario | Canada‍
© 2024 VISTA Science & Technology. All right reserved.
Open Modal

Contact us

General Inquiries

For general inquiries, including partnership opportunities:
905 650 3857
info@vistast.com

Follow us

close modal