Skip to main content
zenodoopen

Mineral Content and Concentration with Fruit Weight from Five Sonneratia Mangroves

<p><span>Mangrove ecosystems are critical coastal habitats, marked by intricate interactions between environmental factors and plant physiological processes. Managing mineral element concentrations is essential for mangrove plants to adapt to saline coastal wetlands. However, the patterns of mineral element changes during the development of non-viviparous propagules in mangroves are not well understood. To fill this knowledge gap, this study examines <em>Sonneratia</em> species co-existing in the same habitat, focusing on the variations in Ca, Cl, K, Mg, and Na content and concentration as the fruits develop. Our findings show that mineral element concentrations in <em>Sonneratia</em> fruits consistently have a statistically significant (p&lt;0.05) nonlinear negative relationship with fruit weight, with log-log linear model slopes ranging from -0.47 to -0.06. The total content of all mineral elements exhibits a statistically significant (p&lt;0.05) sublinear allometric relationship with fruit weight, with log-log linear model slopes between 0.53 and 0.94. These results indicate that as fruits increase in size, the element concentration decreases more slowly compared to the increase in fruit weight. This study provides deeper insights into the physiological adaptations of <em>Sonneratia</em> mangroves during fruit development. </span></p>

ShareScore

24/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
4
Access
16
Reuse readiness
0
Engagement
0