Life history differences of Psilotreta locumtenens (Trichoptera: Odontoceridae) in two reaches of a mountain stream in Korea

The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens l...

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Published inEntomological research Vol. 44; no. 6; pp. 293 - 301
Main Authors Seo, Ye Ji, Kim, Dong Gun, Baek, Min Jeong, Bae, Yeon Jae
Format Journal Article
LanguageEnglish
Published Blackwell Publishing Ltd 01.11.2014
한국곤충학회
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Online AccessGet full text
ISSN1738-2297
1748-5967
1748-5967
DOI10.1111/1748-5967.12081

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Abstract The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens larvae were quantitatively sampled monthly from November 2008 to July 2010, and biweekly during the emergence period (late April to early July), using a Surber sampler (30 × 30 cm). Adults were quantitatively sampled with a sweep net. Larval density in the main stream (324.21 ± 38.59 m−2) was higher than that in the branch stream (60.48 ± 10.86 m−2). The larvae hatched in the early summer and overwintered as 5th and 3rd instars in the main and branch streams, respectively. The emergence peak at the main stream was approximately 2 weeks earlier. The sex ratio at both sites was approximately 0.3. The life history in both streams was univoltine. Secondary production in the main stream was much higher than in the branch stream, owing to high larval densities, and the P/B ratios at the two sites were similar. This study demonstrated remarkable differences in larval growth patterns and emergence peaks in P. locumtenens between the two stream reaches due to differences in accumulated degree days (230.30 DD) and other phenological cues such as daily mean threshold water temperature (9°C) during the ascending phase, despite their relatively small mean annual water temperature difference of 0.58°C.
AbstractList The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens larvae were quantitatively sampled monthly from November 2008 to July 2010, and biweekly during the emergence period (late April to early July), using a Surber sampler (30 × 30 cm). Adults were quantitatively sampled with a sweep net. Larval density in the main stream (324.21 ± 38.59 m−2) was higher than that in the branch stream (60.48 ± 10.86 m−2). The larvae hatched in the early summer and overwintered as 5th and 3rd instars in the main and branch streams, respectively. The emergence peak at the main stream was approximately 2 weeks earlier. The sex ratio at both sites was approximately 0.3. The life history in both streams was univoltine. Secondary production in the main stream was much higher than in the branch stream, owing to high larval densities, and the P/B ratios at the two sites were similar. This study demonstrated remarkable differences in larval growth patterns and emergence peaks in P. locumtenens between the two stream reaches due to differences in accumulated degree days (230.30 DD) and other phenological cues such as daily mean threshold water temperature (9°C) during the ascending phase, despite their relatively small mean annual water temperature difference of 0.58°C. KCI Citation Count: 0
The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens larvae were quantitatively sampled monthly from November 2008 to July 2010, and biweekly during the emergence period (late April to early July), using a Surber sampler (30 × 30 cm). Adults were quantitatively sampled with a sweep net. Larval density in the main stream (324.21 ± 38.59 m⁻²) was higher than that in the branch stream (60.48 ± 10.86 m⁻²). The larvae hatched in the early summer and overwintered as 5th and 3rd instars in the main and branch streams, respectively. The emergence peak at the main stream was approximately 2 weeks earlier. The sex ratio at both sites was approximately 0.3. The life history in both streams was univoltine. Secondary production in the main stream was much higher than in the branch stream, owing to high larval densities, and the P/B ratios at the two sites were similar. This study demonstrated remarkable differences in larval growth patterns and emergence peaks in P. locumtenens between the two stream reaches due to differences in accumulated degree days (230.30 DD) and other phenological cues such as daily mean threshold water temperature (9°C) during the ascending phase, despite their relatively small mean annual water temperature difference of 0.58°C.
The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens larvae were quantitatively sampled monthly from November 2008 to July 2010, and biweekly during the emergence period (late April to early July), using a Surber sampler (30 × 30 cm). Adults were quantitatively sampled with a sweep net. Larval density in the main stream (324.21 ± 38.59 m−2) was higher than that in the branch stream (60.48 ± 10.86 m−2). The larvae hatched in the early summer and overwintered as 5th and 3rd instars in the main and branch streams, respectively. The emergence peak at the main stream was approximately 2 weeks earlier. The sex ratio at both sites was approximately 0.3. The life history in both streams was univoltine. Secondary production in the main stream was much higher than in the branch stream, owing to high larval densities, and the P/B ratios at the two sites were similar. This study demonstrated remarkable differences in larval growth patterns and emergence peaks in P. locumtenens between the two stream reaches due to differences in accumulated degree days (230.30 DD) and other phenological cues such as daily mean threshold water temperature (9°C) during the ascending phase, despite their relatively small mean annual water temperature difference of 0.58°C.
The life history traits of the caddisfly, Psilotreta locumtenensBotosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges (main and branch streams) of the Gapyeong Stream, a typical mountain stream located in the central Korean Peninsula. Psilotreta locumtenens larvae were quantitatively sampled monthly from November 2008 to July 2010, and biweekly during the emergence period (late April to early July), using a Surber sampler (30 30 cm). Adults were quantitatively sampled with a sweep net. Larval density in the main stream (324.21 plus or minus 38.59 m-2) was higher than that in the branch stream (60.48 plus or minus 10.86 m-2). The larvae hatched in the early summer and overwintered as 5th and 3rd instars in the main and branch streams, respectively. The emergence peak at the main stream was approximately 2 weeks earlier. The sex ratio at both sites was approximately 0.3. The life history in both streams was univoltine. Secondary production in the main stream was much higher than in the branch stream, owing to high larval densities, and the P/B ratios at the two sites were similar. This study demonstrated remarkable differences in larval growth patterns and emergence peaks in P. locumtenens between the two stream reaches due to differences in accumulated degree days (230.30 DD) and other phenological cues such as daily mean threshold water temperature (9 degree C) during the ascending phase, despite their relatively small mean annual water temperature difference of 0.58 degree C.
Author Seo, Ye Ji
Baek, Min Jeong
Kim, Dong Gun
Bae, Yeon Jae
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References Bae YJ, Won DH, Hoang DH, Jin YH, Hwang JM (2003) Community composition and functional feeding groups of aquatic insects according to stream order from the Gapyeong Creek in Gyeonggi-do, Korea. Korean Journal of Limnology 36: 21-28.
Majecki J, Grzybkowska M, Reddy R (1997) Density, production and life cycle of Brachycentrus subnubilus Curtis (Trichoptera: Brachycentridae) in a lowland river, central Poland. Hydrobiologia 354: 51-56.
Wiggins GB (1998) Larvae of the North American Caddisfly Genera (Trichoptera). University of Toronto Press, Toronto.
Elliott JM (1981) A quantitative study of the life cycle of the net-spinning caddis Philopotamus montanus (Trichoptera: Philopotamidae) in a lake district stream. Journal of Animal Ecology 50: 867-883.
Parker CR, Wiggins GB (1987) Revision of the caddisfly genus Psilotreta (Trichoptera: Odontoceridae). Life Sciences Contributions Royal Ontario Museum 144: 1-55.
Georgian T, Wallace JB (1983) Seasonal production dynamics in a guild of periphyton-grazing insects in a southern Appalachian stream. Ecology 64: 1236-1248.
SPSS Inc (2003) SPSS[Reinsert] 12.0 Command Syntax Reference. IBM, Chicago, IL.
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Sanchez RM, Hendricks AC (1997) Life history and secondary production of Cheumatopsyche spp. in a small Appalachian stream with two different land uses on its watershed. Hydrobiologia 354: 127-139.
Ward JV (1992) Aquatic Insect Ecology. John Wiley, New York.
Roeding CE, Smock LA (1989) Ecology of macroinvertbrate shredders in a low-gradient sandy-bottomed stream. Journal of the North American Benthological Society 8: 149-161.
Poepperl R (2000) The filter feeders Hydropsyche angustipennis and H. pellucidula (Trichoptera: Hydropsychidae) in a Northern German lowland stream: microdistribution, larval development, emergence pattern, and secondary production. Limnologica 30: 65-72.
Jin HS, Ward GM (2007) Life history and secondary production of Glossosoma nigrior Banks (Trichoptera: Glossosomatidae) in two Alabama streams with different geology. Hydrobiologia 575: 245-258.
Dudgeon D (1997) Life history, secondary production and microdistribution of hydropsychid caddisflies (Trichoptera) in a tropical forest stream. Journal of Zoological Society of London 243: 191-210.
Li F, Cai Q, Liu J (2009) Temperature-dependent growth and life cycle of Nemoura sichuanensis (Plecoptera: Nemouridae) in a China mountain stream. International Review of Hydrobiology 94: 595-608.
Park SJ, Bae YJ (1999) New records of the Lepidostomatidae and Odontoceridae (Insecta: Trichoptera) from Korea. Korean Journal of Limnology 32: 303-307.
Moor FC, Ivanov VD (2008) Global diversity of caddisflies (Trichoptera: Insecta) in freshwater. Hydrobiologia 595: 393-407.
Ward JV, Stanford JA (1982) Thermal responses in the evolutionary ecology of aquatic insects. Annual Review of Entomology 27: 97-117.
Willis LD, Hendricks AC (1992) Life history, growth, survivorship, and production of Hydropsyche slossonae in Mill Creek, Virginia. Journal of the North American Benthological Society 11: 290-303.
Krueger CC, Waters TF (1983) Annual production of macroinvertbrates in three streams of different water quality. Ecology 64: 840-850.
Robinson CT, Minshall GW (1998) Macroinvertbrate communities, secondary production, and life history patterns in two adjacent streams in Idaho, USA. Archive für Hydrobiologie 142: 257-281.
Merritt RW, Cummins KW, Berg MB (2008) An Introduction to the Aquatic Insects of North America, 4th edn. Kendall/Hunt, Dubuque, IA.
Mario SR, Hendricks AC (1997) Life history and secondary production of Cheumatopsyche spp. in a small Appalachian stream with two different land uses on its watershed. Hydrobiologia 354: 127-139.
Elliott JM (1982) A quantitative study of the life cycle of the case-building caddisfly Odontocerum albicorne (Trichoptera: Odontoceridae) in a lake district stream. Freshwater Biology 12: 241-255.
Tsuruishi T (2006) Life cycle of Himalopsyche japonica (Morton) (Trichoptera: Rhyacophilidae) in two high mountain streams in Nagano, central Japan. Hydrobiologia 563: 493-499.
Lee SJ, Hwang JM, Bae YJ (2008) Life history of a lowland burrowing mayfly, Ephemera orientalis (Ephemeroptera: Ephemeridae) in a Korean stream. Hydrobiologia 596: 279-288.
Miller SM, Wooster D, Li J (2012) Developmental, growth, and population biomass responses of a river-dwelling caddisfly (Brachycentrus occidentalis) to irrigation water withdrawals. Hydrobiologia 679: 187-203.
Hwang JM, Yoon TJ, Lee SJ, Bae YJ (2009) Life history and secondary production of Ephemera orientalis (Ephemeroptera: Ehpemeridae) from the Han River in Seoul, Korea. Aquatic Insects 31: 333-341.
Hoang DH, Bae YJ (2006) Aquatic insect diversity in a tropical Vietnamese stream in comparison with that in a temperate Korean stream. Limnology 7: 45-55.
Hur JM, Jin YH, Park SJ, Won DH, Bae YJ (2000) Emergence patterns of Hydropsyche kozhantschikovi (Trichoptera: Hydropsychidae). Korean Journal of Limnology 33: 267-273.
Logan JA, Bentz BJ, Vandygriff JC, Turner DL (1998) General program for determining instar distributions from head capsule widths: example analysis of mountain pine beetle (Coleoptera: Scolytidae) data. Environmental Entomology 27: 555-563.
1982; 12
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2009; 31
2009; 94
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2000; 30
1983; 64
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1981; 50
2008; 596
2008; 595
2012; 679
2006; 563
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References_xml – reference: Logan JA, Bentz BJ, Vandygriff JC, Turner DL (1998) General program for determining instar distributions from head capsule widths: example analysis of mountain pine beetle (Coleoptera: Scolytidae) data. Environmental Entomology 27: 555-563.
– reference: Merritt RW, Cummins KW, Berg MB (2008) An Introduction to the Aquatic Insects of North America, 4th edn. Kendall/Hunt, Dubuque, IA.
– reference: Ward JV (1992) Aquatic Insect Ecology. John Wiley, New York.
– reference: Majecki J, Grzybkowska M, Reddy R (1997) Density, production and life cycle of Brachycentrus subnubilus Curtis (Trichoptera: Brachycentridae) in a lowland river, central Poland. Hydrobiologia 354: 51-56.
– reference: Mario SR, Hendricks AC (1997) Life history and secondary production of Cheumatopsyche spp. in a small Appalachian stream with two different land uses on its watershed. Hydrobiologia 354: 127-139.
– reference: Willis LD, Hendricks AC (1992) Life history, growth, survivorship, and production of Hydropsyche slossonae in Mill Creek, Virginia. Journal of the North American Benthological Society 11: 290-303.
– reference: Miller SM, Wooster D, Li J (2012) Developmental, growth, and population biomass responses of a river-dwelling caddisfly (Brachycentrus occidentalis) to irrigation water withdrawals. Hydrobiologia 679: 187-203.
– reference: Bae YJ, Won DH, Hoang DH, Jin YH, Hwang JM (2003) Community composition and functional feeding groups of aquatic insects according to stream order from the Gapyeong Creek in Gyeonggi-do, Korea. Korean Journal of Limnology 36: 21-28.
– reference: Jin HS, Ward GM (2007) Life history and secondary production of Glossosoma nigrior Banks (Trichoptera: Glossosomatidae) in two Alabama streams with different geology. Hydrobiologia 575: 245-258.
– reference: Lee SJ, Hwang JM, Bae YJ (2008) Life history of a lowland burrowing mayfly, Ephemera orientalis (Ephemeroptera: Ephemeridae) in a Korean stream. Hydrobiologia 596: 279-288.
– reference: Krueger CC, Waters TF (1983) Annual production of macroinvertbrates in three streams of different water quality. Ecology 64: 840-850.
– reference: Tsuruishi T (2006) Life cycle of Himalopsyche japonica (Morton) (Trichoptera: Rhyacophilidae) in two high mountain streams in Nagano, central Japan. Hydrobiologia 563: 493-499.
– reference: Moor FC, Ivanov VD (2008) Global diversity of caddisflies (Trichoptera: Insecta) in freshwater. Hydrobiologia 595: 393-407.
– reference: Poepperl R (2000) The filter feeders Hydropsyche angustipennis and H. pellucidula (Trichoptera: Hydropsychidae) in a Northern German lowland stream: microdistribution, larval development, emergence pattern, and secondary production. Limnologica 30: 65-72.
– reference: Georgian T, Wallace JB (1983) Seasonal production dynamics in a guild of periphyton-grazing insects in a southern Appalachian stream. Ecology 64: 1236-1248.
– reference: Parker CR, Wiggins GB (1987) Revision of the caddisfly genus Psilotreta (Trichoptera: Odontoceridae). Life Sciences Contributions Royal Ontario Museum 144: 1-55.
– reference: Robinson CT, Minshall GW (1998) Macroinvertbrate communities, secondary production, and life history patterns in two adjacent streams in Idaho, USA. Archive für Hydrobiologie 142: 257-281.
– reference: Park SJ, Bae YJ (1999) New records of the Lepidostomatidae and Odontoceridae (Insecta: Trichoptera) from Korea. Korean Journal of Limnology 32: 303-307.
– reference: Sanchez RM, Hendricks AC (1997) Life history and secondary production of Cheumatopsyche spp. in a small Appalachian stream with two different land uses on its watershed. Hydrobiologia 354: 127-139.
– reference: Roeding CE, Smock LA (1989) Ecology of macroinvertbrate shredders in a low-gradient sandy-bottomed stream. Journal of the North American Benthological Society 8: 149-161.
– reference: Ward JV, Stanford JA (1982) Thermal responses in the evolutionary ecology of aquatic insects. Annual Review of Entomology 27: 97-117.
– reference: Elliott JM (1982) A quantitative study of the life cycle of the case-building caddisfly Odontocerum albicorne (Trichoptera: Odontoceridae) in a lake district stream. Freshwater Biology 12: 241-255.
– reference: Hwang JM, Yoon TJ, Lee SJ, Bae YJ (2009) Life history and secondary production of Ephemera orientalis (Ephemeroptera: Ehpemeridae) from the Han River in Seoul, Korea. Aquatic Insects 31: 333-341.
– reference: Wiggins GB (1998) Larvae of the North American Caddisfly Genera (Trichoptera). University of Toronto Press, Toronto.
– reference: Hoang DH, Bae YJ (2006) Aquatic insect diversity in a tropical Vietnamese stream in comparison with that in a temperate Korean stream. Limnology 7: 45-55.
– reference: SPSS Inc (2003) SPSS[Reinsert] 12.0 Command Syntax Reference. IBM, Chicago, IL.
– reference: Hur JM, Jin YH, Park SJ, Won DH, Bae YJ (2000) Emergence patterns of Hydropsyche kozhantschikovi (Trichoptera: Hydropsychidae). Korean Journal of Limnology 33: 267-273.
– reference: Li F, Cai Q, Liu J (2009) Temperature-dependent growth and life cycle of Nemoura sichuanensis (Plecoptera: Nemouridae) in a China mountain stream. International Review of Hydrobiology 94: 595-608.
– reference: Dudgeon D (1997) Life history, secondary production and microdistribution of hydropsychid caddisflies (Trichoptera) in a tropical forest stream. Journal of Zoological Society of London 243: 191-210.
– reference: Elliott JM (1981) A quantitative study of the life cycle of the net-spinning caddis Philopotamus montanus (Trichoptera: Philopotamidae) in a lake district stream. Journal of Animal Ecology 50: 867-883.
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Snippet The life history traits of the caddisfly, Psilotreta locumtenens Botosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges...
The life history traits of the caddisfly, Psilotreta locumtenensBotosaneanu (Odontoceridae), were studied in two stream reaches with different thermal ranges...
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SubjectTerms adults
caddisfly
degree days
emergence
heat sums
instars
Korean Peninsula
larvae
larval development
Odontoceridae
phenology
Psilotreta
Psilotreta locumtenens
secondary production
secondary productivity
sex ratio
streams
summer
sweep nets
Trichoptera
univoltine habit
water temperature
생물학
Title Life history differences of Psilotreta locumtenens (Trichoptera: Odontoceridae) in two reaches of a mountain stream in Korea
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