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Plastid-to-nucleus communication under hypoxia involves group VII ethylene response factors in Arabidopsis thaliana
https://www.profitableratecpm.com/f4ffsdxe?key=39b1ebce72f3758345b2155c98e6709c
Proceedings of the National Academy of Sciences, Volume 123, Issue 3, January 2026. <br/>SignificanceDue to climate change, number and intensity of flooding events are increasing, restricting oxygen availability for plant growth and performance. Here, we show a role of plastid-localized STEAROYL-ACYL CARRIER PROTEIN ∆9-DESATURASE 6 (SAD6) to …



