Abstract:
Mangrove ecosystems in Northern Sri Lanka, particularly the Jaffna District, remain ecologically
significant, but their biophysicochemical conditions have not been adequately documented. The Mulli
mangrove ecosystem is a fragmented coastal habitat within the Thondaimanaru–Vadamarachchi
Lagoon system, influenced by restricted tidal exchange and increasing anthropogenic pressures. This
study used a stratified random sampling design across 150 ha during 2025, with ten plots (100m ×
100m) each divided into five subplots (10m × 10m), and a 0.5 ha area was used for detailed analysis.
Vegetation composition, diversity indices, leaf functional traits (Specific Leaf Area, SLA; Leaf Dry
Matter Content, LDMC), soil parameters (pH, electrical conductivity, EC, total nitrogen, TN; available
phosphorus, P; total organic carbon, TOC) and water parameters (pH, salinity, EC, turbidity, chemical
oxygen demand, COD; biochemical oxygen demand, BOD5) were assessed following standard
American Public Health Association protocols. A total of 1242 individuals of two true mangrove
species, namely Excoecaria agallocha and Lumnitzera racemosa, were recorded. E. agallocha was
dominant (88%), giving low diversity (Shannon–Wiener index H′=0.373; Simpson’s index 1-D = 0.218)
and low evenness (J=0.54). E. agallocha had higher SLA (101.9cm2 g-1), indicating a resourceacquisitive strategy, while L. racemosa showed lower SLA and LDMC, indicating stress tolerance.
Soils were alkaline (pH 8.3 – 9.1) with low to moderate EC (360–602µScm-1), TOC of 3.39–5.79%,
while C/N (20.97–88.1) and low available phosphorus levels (11.2–14.6 mg/kg) indicated slow
decomposition. Water quality showed low salinity (3–9ppt), near-neutral to slightly alkaline pH (7.15–
8.92),low turbidity (1.16–4.15NTU), and elevated COD (160–640mgL-1) and BOD5
(5.8–7.2mgL-1), indicating organic loading. Overall, restricted tidal flushing, low phosphorus
availability, and elevated organic loading were associated with ecological simplification, highlighting
the need for improved hydrological connectivity and pollution management for long-term sustainability.