Related Experiment Video
Updated: Jul 12, 2026

Laboratory and Field Culture of Larvae of The Slipper Limpet, Crepidula fornicata
Published on: January 5, 2024
Vulnerability to low salinity but compensatory responses to low pH in an intertidal limpet
Hyojin Chang1, Hyein Seo1, Yubin Koo1
1Program in Biomedical Science and Engineering, Inha University, 100 Inha-ro, Michuhol-gu, Incheon, Republic of Korea; Department of Ocean Sciences, Inha University, 100 Inha-ro, Michuhol-gu, Incheon, Republic of Korea.
None:
Rising anthropogenic carbon dioxide emissions have driven ongoing ocean warming and associated climate changes. In the Yellow Sea, this warming is associated with enhanced monsoonal rainfall, which increases freshwater inputs and lowers coastal salinity. Increased freshwater input can weaken seawater buffering capacity, thereby leading to lower pH conditions in coastal environments. Here, we examined the effects of low pH and low salinity on the intertidal limpet Patelloida pygmaea. Adult limpets were exposed for 31 days to four experimental artificial seawater conditions combining two pH levels (8.0 and 7.5) and two salinity levels (30 and 21 psu). Survival and condition factor were not influenced by pH or salinity. However, low salinity reduced righting and emergence behavior. In addition, the Mg/Ca ratio in the M + 1 layer was lower at 21 psu than at 30 psu. Low pH resulted in a thicker M + 2 layer with higher Mg/Ca ratios despite shell dissolution, potentially helping to maintain shell integrity. While there was no change in heat shock protein (HSP70) expression, these shell modifications were accompanied by an upregulation of chitin synthase (CHS2) genes under low pH. These findings suggest that P. pygmaea is negatively influenced by low pH and low salinity, but also demonstrate compensatory mechanisms that enhance resistance to low pH.
More Related Videos
07:53Bioindication Testing of Stream Environment Suitability for Young Freshwater Pearl Mussels Using In Situ Exposure Methods
Published on: September 5, 2018
07:59A Strain Gauge Monitor (SGM) for Continuous Valve Gape Measurements in Bivalve Molluscs in Response to Laboratory Induced Diel-cycling Hypoxia and pH
Published on: August 1, 2018
Related Concept Videos
Responses to Salt Stress
Tonicity in Animals
Tonicity in Animals
Osmoregulation in Fishes
Marine Microbial Ecology
Responses to Drought and Flooding