Relative Growth Relationship between Different Body Parts of the Bivalve Gari virescens and its Shell Length — Allometric Formulas for Shell Length Size Reconstruction

Gari virescens (Psammobiidae) is a near-threatened bivalve species that inhabits tidal flats in Japan. Recently, it has been frequently detected in the gut contents of tidal flat fishes. The purpose of this study is to establish regression formulas for reconstructing the shell length (SL) of predate...

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Published inVenus (Journal of the Malacological Society of Japan) Vol. 82; no. 1-4; pp. 121 - 131
Main Author Shigeta, Toshihiro
Format Journal Article
LanguageJapanese
Published The Malacological Society of Japan 31.05.2024
日本貝類学会
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ISSN1348-2955
2189-7697
DOI10.18941/venus.82.1-4_121

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Abstract Gari virescens (Psammobiidae) is a near-threatened bivalve species that inhabits tidal flats in Japan. Recently, it has been frequently detected in the gut contents of tidal flat fishes. The purpose of this study is to establish regression formulas for reconstructing the shell length (SL) of predated specimens. Therefore, we clarified the relative growth relationship between body parts of the bivalve and its SL using specimens from the western Seto Inland Sea of Japan. The allometric regression formula for estimating SL (mm) from shell height (SH, mm) was SL = 1.53 × SH1.0657 (r = 0.998, n = 66, P < 0.01), and the formula for estimating SL (mm) from foot length (FL, mm) was SL = 1.82 × FL1.0478 (r = 0.969, n = 39, P < 0.01). In addition, we established several other regression formulas for estimating SL. As a case study of applying these formulas, we reconstructed the SL of specimens predated by the fish Acanthopagrus schlegelii. These allometric formulas enable the reconstruction of SL from body parts and shells broken during predation.
AbstractList Gari virescens (Psammobiidae) is a near-threatened bivalve species that inhabits tidal flats in Japan. Recently, it has been frequently detected in the gut contents of tidal flat fishes. The purpose of this study is to establish regression formulas for reconstructing the shell length (SL) of predated specimens. Therefore, we clarified the relative growth relationship between body parts of the bivalve and its SL using specimens from the western Seto Inland Sea of Japan. The allometric regression formula for estimating SL (mm) from shell height (SH, mm) was SL = 1.53 × SH1.0657 (r = 0.998, n = 66, P < 0.01), and the formula for estimating SL (mm) from foot length (FL, mm) was SL = 1.82 × FL1.0478 (r = 0.969, n = 39, P < 0.01). In addition, we established several other regression formulas for estimating SL. As a case study of applying these formulas, we reconstructed the SL of specimens predated by the fish Acanthopagrus schlegelii. These allometric formulas enable the reconstruction of SL from body parts and shells broken during predation.
Author Shigeta, Toshihiro
Author_FL 重田 利拓
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Pinkas, L. 1971. Bluefin tuna food habits. State of California, The Resources Agency, Department of Fish and Game, Fish Bulletin 152: 47–63.
奥谷喬司(編著).2017.日本近海産貝類図鑑 第二版.1380 pp.東海大学出版部,神奈川・平塚
重田利拓.2012.干潟の餌環境の指標としてのアサリ資源の変動が瀬戸内海の魚類生産へ及ぼす影響に関する研究.瀬戸内海 63: 61–64
小関祥子・富岡 宏・三浦知之.2014.一ッ葉入江に生息するフタハピンノの生活史について.日本ベントス学会誌 69: 40–50.
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中村幹雄.2018.シジミ学入門.220 pp.日本シジミ研究所,松江
重田利拓・薄 浩則.2012.魚類によるアサリ食害─野外標本に基づく食害魚種リスト─.水産技術 5: 1–19.
重田利拓・手塚尚明・中川倫寿・冨山 毅・坂井陽一・斉藤英俊・清水則雄.2014.瀬戸内海周防灘中津干潟における絶滅危惧種アオギスSillago parvisquamis(キス科)の最新の生息状況(2011–2013年).広島大学総合博物館研究報告 6: 31–39
木村聡一郎.2013.小祝地先における二枚貝類の分布.大分県農林水産研究センター研究報告(水産) 3: 13–20.
Meyer, J. J. & Byers, J. E. 2005. As good as dead? Sublethal predation facilitates lethal predation on an intertidal clam. Ecology Letters 8: 160–166.
環境省.2020.報道発表資料:環境省レッドリスト2020の公表について.http://www.env.go.jp/press/107905.html
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シュミットニールセン K.1995.スケーリング:動物設計論─動物の大きさは何で決まるのか─.下澤楯夫・大原昌宏・浦野 知(訳).xi+302 pp.コロナ社,東京
増殖場造成計画指針編集委員会.1997.増殖場造成計画指針─ヒラメ・アサリ編─(平成8年度版).316 pp.全国沿岸漁業振興開発協会,東京
重田利拓・冨山 毅.2021.クロダイ稚魚はアサリを直接殺さない:瀬戸内海広島湾のアサリ漁場干潟におけるクロダイ稚魚の食性.広島大学総合博物館研究報告 13: 21–31.
佐野光彦.2017.沿岸生態系とその保全.In: 宮下 直・瀧本 岳・鈴木 牧・佐野光彦(著) 生物多様性概論─自然のしくみと社会のとりくみ─.pp. 102–132.朝倉書店,東京
日本ベントス学会.2012.干潟の絶滅危惧動物図鑑─海岸ベントスのレッドデータブック.16+285 pp.東海大学出版会,神奈川・泰野
References_xml – reference: 久保伊津男・吉原友吉.1969.水産資源学 改訂版.500 pp.共立出版,東京.
– reference: Meyer, J. J. & Byers, J. E. 2005. As good as dead? Sublethal predation facilitates lethal predation on an intertidal clam. Ecology Letters 8: 160–166.
– reference: 佐野光彦.2017.沿岸生態系とその保全.In: 宮下 直・瀧本 岳・鈴木 牧・佐野光彦(著) 生物多様性概論─自然のしくみと社会のとりくみ─.pp. 102–132.朝倉書店,東京.
– reference: 重田利拓・手塚尚明・中川倫寿・冨山 毅・坂井陽一・斉藤英俊・清水則雄.2014.瀬戸内海周防灘中津干潟における絶滅危惧種アオギスSillago parvisquamis(キス科)の最新の生息状況(2011–2013年).広島大学総合博物館研究報告 6: 31–39.
– reference: 福田 宏・木村昭一.2012.オチバGari (Psammotaena) virescens(シオサザナミ科).In: 日本ベントス学会(編) 干潟の絶滅危惧動物図鑑─海岸ベントスのレッドデータブック.p. 134.東海大学出版会,神奈川・秦野.
– reference: シュミットニールセン K.1995.スケーリング:動物設計論─動物の大きさは何で決まるのか─.下澤楯夫・大原昌宏・浦野 知(訳).xi+302 pp.コロナ社,東京.
– reference: Pinkas, L. 1971. Bluefin tuna food habits. State of California, The Resources Agency, Department of Fish and Game, Fish Bulletin 152: 47–63.
– reference: 中村幹雄.2018.シジミ学入門.220 pp.日本シジミ研究所,松江.
– reference: 日本ベントス学会.2012.干潟の絶滅危惧動物図鑑─海岸ベントスのレッドデータブック.16+285 pp.東海大学出版会,神奈川・泰野.
– reference: 小関祥子・富岡 宏・三浦知之.2014.一ッ葉入江に生息するフタハピンノの生活史について.日本ベントス学会誌 69: 40–50.
– reference: 重田利拓・冨山 毅.2021.クロダイ稚魚はアサリを直接殺さない:瀬戸内海広島湾のアサリ漁場干潟におけるクロダイ稚魚の食性.広島大学総合博物館研究報告 13: 21–31.
– reference: 環境省.2020.報道発表資料:環境省レッドリスト2020の公表について.http://www.env.go.jp/press/107905.html
– reference: 重田利拓・薄 浩則.2012.魚類によるアサリ食害─野外標本に基づく食害魚種リスト─.水産技術 5: 1–19.
– reference: 木村聡一郎.2013.小祝地先における二枚貝類の分布.大分県農林水産研究センター研究報告(水産) 3: 13–20.
– reference: 奥谷喬司(編著).2017.日本近海産貝類図鑑 第二版.1380 pp.東海大学出版部,神奈川・平塚.
– reference: 重田利拓.2012.干潟の餌環境の指標としてのアサリ資源の変動が瀬戸内海の魚類生産へ及ぼす影響に関する研究.瀬戸内海 63: 61–64.
– reference: 加藤 真.2007.軟体動物門 二枚貝綱,第5章 注目種の分布状況.In: 第7回自然環境保全基礎調査 浅海域生態系調査(干潟調査)業務報告書.pp. 163–172.環境省自然環境局 生物多様性センター,山梨・富士吉田.
– reference: 増殖場造成計画指針編集委員会.1997.増殖場造成計画指針─ヒラメ・アサリ編─(平成8年度版).316 pp.全国沿岸漁業振興開発協会,東京.
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Snippet Gari virescens (Psammobiidae) is a near-threatened bivalve species that inhabits tidal flats in Japan. Recently, it has been frequently detected in the gut...
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StartPage 121
SubjectTerms allometry
Gari virescens
predation
red data
tidal flat
Title Relative Growth Relationship between Different Body Parts of the Bivalve Gari virescens and its Shell Length — Allometric Formulas for Shell Length Size Reconstruction
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