Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Seasonal influence on wing phenotypic plasticity in Mansonia indiana (Diptera: Culicidae) along the Thailand-Myanmar border

View through CrossRef
Abstract. Chaiphongpachara T, Sumruayphol S, Laojun S. 2025. Seasonal influence on wing phenotypic plasticity in Mansonia indiana (Diptera: Culicidae) along the Thailand-Myanmar border. Biodiversitas 26: 2253-2260. Mansonia indiana (Diptera: Culicidae) is a vector of the nematode Brugia malayi that causes lymphatic filariasis in Southeast Asia. Thus, this study aimed to investigate the seasonal wing phenotypic plasticity of M. indiana collected along the Thailand-Myanmar border, employing landmark-based geometric morphometrics. Sampling was conducted from September 2021 to August 2022, encompassing three distinct seasons: the cool season (November-February), the hot season (March-May), and the rainy season (June-October). The Centroid Size (CS) ranged from 2.89 to 4.14 mm, with the cool season population recording the highest average CS at 3.68 mm and the rainy season population the lowest at 3.44 mm. Significant differences (p<0.05) in CS were observed between the cool and rainy season populations, as well as between the cool and hot season populations. Shape analysis revealed significant differences (p<0.05) across population pairs, underscoring the pronounced impact of seasonal influences on wing shape. Wireframe graphs indicated that landmarks 1, 12, and 18 exhibited high variation, suggesting a seasonal influence on wing structures. The unweighted Pair Group Method with Arithmetic Mean tree analysis, based on Mahalanobis distances, indicated that the cool-season population exhibited the most distinct shape. These findings indicate that variations in wing morphology may represent adaptive responses by mosquitoes to the varied environmental pressures of each season. Additionally, wing morphology influences flight efficiency, which is essential for effective host attacks and plays a crucial role in the transmission of filariasis to humans.
Title: Seasonal influence on wing phenotypic plasticity in Mansonia indiana (Diptera: Culicidae) along the Thailand-Myanmar border
Description:
Abstract.
Chaiphongpachara T, Sumruayphol S, Laojun S.
2025.
Seasonal influence on wing phenotypic plasticity in Mansonia indiana (Diptera: Culicidae) along the Thailand-Myanmar border.
Biodiversitas 26: 2253-2260.
Mansonia indiana (Diptera: Culicidae) is a vector of the nematode Brugia malayi that causes lymphatic filariasis in Southeast Asia.
Thus, this study aimed to investigate the seasonal wing phenotypic plasticity of M.
indiana collected along the Thailand-Myanmar border, employing landmark-based geometric morphometrics.
Sampling was conducted from September 2021 to August 2022, encompassing three distinct seasons: the cool season (November-February), the hot season (March-May), and the rainy season (June-October).
The Centroid Size (CS) ranged from 2.
89 to 4.
14 mm, with the cool season population recording the highest average CS at 3.
68 mm and the rainy season population the lowest at 3.
44 mm.
Significant differences (p<0.
05) in CS were observed between the cool and rainy season populations, as well as between the cool and hot season populations.
Shape analysis revealed significant differences (p<0.
05) across population pairs, underscoring the pronounced impact of seasonal influences on wing shape.
Wireframe graphs indicated that landmarks 1, 12, and 18 exhibited high variation, suggesting a seasonal influence on wing structures.
The unweighted Pair Group Method with Arithmetic Mean tree analysis, based on Mahalanobis distances, indicated that the cool-season population exhibited the most distinct shape.
These findings indicate that variations in wing morphology may represent adaptive responses by mosquitoes to the varied environmental pressures of each season.
Additionally, wing morphology influences flight efficiency, which is essential for effective host attacks and plays a crucial role in the transmission of filariasis to humans.

Related Results

Teaching & Learning Guide for: Buddhism and Thai Art
Teaching & Learning Guide for: Buddhism and Thai Art
This guide accompanies the following article(s): Chirapravati, P, Buddhism and Thai Art, Religion Compass 3/4 (2009) : pp. 566–579, 10.1...
The Relationship between Foreign Aid and Democratization in Myanmar in respect to Civil Society
The Relationship between Foreign Aid and Democratization in Myanmar in respect to Civil Society
<p>Since 2010, Myanmar has been making a transition to a democratic country after 40 years under successive military regimes. The semi-civilian government led by President U ...
Earning vs Learning: Supporting Myanmar Migrant Education on the Thailand Myanmar Border
Earning vs Learning: Supporting Myanmar Migrant Education on the Thailand Myanmar Border
<p><b>This thesis examines a particular case study of a Migrant Learning Centre on the Thailand Myanmar Border. Previous research has identified a variety of access to ...
Forced Migration of Rohingya: An Untold Experience
Forced Migration of Rohingya: An Untold Experience
The mass exodus of Rohingya people from Myanmar in 2017, has been recognised as the fastest growing refugee influx in the world and these refugees are currently living in the most ...
LEGAL STATUS OF THE MYANMAR MIGRANT WORKERS IN THAILAND: THE EXPERIENCE OF WORKERS FROM MON AND KAREN STATES IN THAILAND
LEGAL STATUS OF THE MYANMAR MIGRANT WORKERS IN THAILAND: THE EXPERIENCE OF WORKERS FROM MON AND KAREN STATES IN THAILAND
Myanmar’s unfavorable business environment leads to difficulties for its citizens, especially in rural regions, to find a job with a stable income. To fulfill basic needs for their...
Phenotypic integration may constrain phenotypic plasticity in plants
Phenotypic integration may constrain phenotypic plasticity in plants
Phenotypic plasticity is essential for plant adaptation to changing environments but some factors limit its expression, causing plants to fail in producing the best phenotype for a...

Back to Top