The blue and brown modules exhibited highly significant positive correlations with MDA content, electrolyte leakage rate, osmoregulatory substance content, Gs, Tr, and Ci.
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Comparative physiological and co-expression network analysis reveals potential hub genes and adaptive mechanisms responsive to NaCl stress in peanut (Arachis hypogaea L.).
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To avoid damage to photosynthetic organs, ΦPSII, qP, ETR, and Rfd also showed a decreasing trend; to mitigate the damage caused by excess light energy, NPQ increased significantly to dissipate the excess light energy in the form of heat energy [ 44 ]. ΦPSII, qP, and ETR gradually recovered, while NPQ also increased significantly during 6 h to 24 h of NaCl stress.