Back

Physiological Characterization under the Influence of Drought Stress and Salicylic Acid in Valeriana wallichii DC

Ansari, S.; Patni, B.; Jangpangi, D.; Joshi, H. C.; Bhatt, M. K.; Purohit, V.

2026-01-09 plant biology
10.64898/2026.01.09.698547 bioRxiv
Show abstract

Valeriana wallichii DC, a high-altitude medicinal plant, is highly sensitive to drought stress, which adversely impacts its physiological functions and root biomass. This study aimed to evaluate salicylic acids role in mitigating drought stress by assessing physiological and biochemical responses in V. wallichii. Plants were treated with foliar applications of SA at concentrations of 0.25, 0.50, 0.75, and 1.0 mM during vegetative and flowering stages. Physiological parameters such as photosynthetic rate, stomatal conductance, water use efficiency (WUE), intrinsic WUE (iWUE), carboxylation efficiency, and biochemical traits including chlorophyll and carotenoid content were measured, alongside fresh and dry root biomass.Drought stress significantly reduced photosynthetic performance (Pn) (3.95 mol CO2m{square}2s{square}1 at 25% FC), stomatal conductance, relative water content, and root yield. SA application notably improved these traits. At 25% FC, 1.0 mM SA enhanced WUE (28.78), iWUE (642.37 mol/mol), and fresh root weight (8.41 g). Under moderate drought (50% FC), 0.50 mM SA improved net photosynthesis (12.5 mol CO2 m{square}2s{square}1), dry root weight (2.31 g), and chlorophyll content. SA treatments also stabilized membrane integrity and maintained higher chlorophyll fluorescence efficiency (Fv/Fm).These findings demonstrate that foliar application of SA enhances drought tolerance in V. wallichii by improving photosynthetic efficiency, water relations, and root biomass. The study supports the strategic use of SA to improve the resilience and productivity of medicinal plants under drought stress conditions. Highlights of the studyO_LIDrought lowers growth and yield by reducing photosynthesis and water use. C_LIO_LISalicylic acid reduces drought effects and improves plant performance. C_LIO_LIAt severe drought, 1- 0.50 mM SA raised WUE, conductance, and root yield. C_LIO_LIUnder mild drought, 0.75- 0.50 mM SA improved gas exchange and yield. C_LIO_LISA doses 0.25-1 mM differ in effectiveness across drought stress stages. C_LI

Matching journals

The top 5 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.