Coptodon ejagham

Coptodon ejagham (Dunz & Schliewen, 2010)

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分類 / 名前 共通名の | 類義語 | Catalog of Fishes(部類, ) | ITIS | CoL | WoRMS | Cloffa

> Cichliformes (Cichlids, convict blennies) > Cichlidae (Cichlids) > Pseudocrenilabrinae
Etymology: ejagham: The species name ejagham refers both to Lake Ejagham as well as to the Ejagham people, whose major sacred site is Lake Ejagham; a noun in apposition (Ref. 85854).

環境:環境 / 気候帯 / 深さの範囲 / 分布範囲 生態学

; 新鮮な水 底生の漂泳性. Tropical

分布 領土 | 国連食糧農業機関の区域 | エコシステム | 事件 | 目的のマップ | 導入 | Faunafri

Africa: Lake Ejagham in Cameroon (Ref. 85854).

サイズ / 重さ / 年齢

成熟: Lm ?  range ? - ? cm
Max length : 20.0 cm SL オス/雌雄の選別がない; (Ref. 85854)

簡単な記述 検索表 | 形態学 | 形態計測学

背面の脊椎 (合計) : 15 - 16; 背鰭 (合計) : 10 - 12; 肛門の骨: 3; 臀鰭: 8 - 10. Diagnosis: Coptodon ejagham differs from Tilapia species, except Coelotilapia joka and Congolapia bilineata, and all members of the genus Coptodon in tricuspid, rarely quadricuspid, pharyngeal teeth in the posterior two rows of lower pharyngeal jaw (Ref. 85854). It differs from Coelotilapia joka in more gill rakers on first ceratobranchial, 9-10 vs. 6-8; from Congolapia bilineata in not having a densely scaled caudal fin; it differs from Coptodon walteri, C. rendalli, C. congica and C. dageti in lower body depth, 33.8-40.6% of standard length vs. 41.4-51.3%; from C. cameronensis in lesser number of dorsal rays, 10-12 vs. 13-14; from C. kottae in narrower interorbital width, 9.2-12.2% of standard length vs. 12.4-14.0%; from C. imbriferna in shorter head length, 32.6-39.7% of standard length vs. 40.1-42.6%; from C. thysi in higher number of gill rakers on first ceratobranchial, 9-10 vs. 7-8; from C. snyderae in longer snout length, 13.5-16.9% of standard length vs. 11.3-13.3%; from C. bakossiorum in higher cheek depth, 12.0-15.4% of standard length vs. 8.7-11.2%; from C. bythobates in shorter caudal peduncle length, 12.6-15.7% of standard length vs. 15.9-17.5%; from C. guineensis, C. margaritacea, C. discolor, C. tholloni, C. flava, and C. gutturosa in a lower caudal peduncle depth, 13.0-15.1% of standard length vs. 15.2-19.2%; from C. ismailiaensis, C. camerunensis, C. coffea, C. louka, and C. nyongana in greater lower jaw length, 12.4-16.2% of standard length vs. 7.8-12.2%; and from C. bemini in robust, non-spatulate outer row jaw teeth, vs. gracile spatulate teeth (Ref. 85854). It differs from C. deckerti in shorter eye length, 6.2-8.4% of standard length vs. 8.5-10.7%; from C. nigrans in flank scales with dark scale margins and a light centre, especially on scales below the lateral line, vs. dark square-shaped blotches at base of each flank scale, filled or with a light coloured window at centre of blotch; and from C. fusiforme in greater snout length, 13.5-16.9% of standard length vs. 10.3-13.3% (Ref. 85854). Coptodon spongotroktis is distinguishable by combination of characters: interorbital width, lower jaw length and caudal peduncle length; C. zillii is distinguished by a combination of characters: anal spine length, length of last dorsal spine, snout length, lower jaw length, caudal peduncle depth and head length (Ref. 85854).
Body shape (shape guide): fusiform / normal.

生物学     用語集 (例 epibenthic)

Pairs breed exclusively in the shallow inshore region above 2 m; pairs excavate large nest-pits under large branches or logs (Ref. 85854). Non-breeding Coptodon ejagham are moving solitarily and are and appear to permanently scan their environment for prey while swimming permanently without a hast, and rarely being motionless (Ref. 85854). Observations suggest that this species are predators of small fish, mostly juvenile cichlids (Ref. 85854).

ライフサイクルと交尾行動 成熟 | 繁殖 | 放精 | | 生産力 | 幼生

主な参考文献 参考文献のアップロード | 参考文献 | コーディネーター : Kullander, Sven O. | 協力者

Dunz, A.R. and U.K. Schliewen, 2013. Molecular phylogeny and revised classification of the haplotilapiine cichlid fishes formerly referred to as "Tilapia". Mol. Phylogenet. Evol. 68(1):64-80. (Ref. 93285)

IUCNのレッドリストの状況は (Ref. 130435: Version 2025-2 (Global))

  絶滅寸前の危機的状況 (CR) (B1ab(iii)+2ab(iii)); Date assessed: 09 March 2023

CITES

Not Evaluated

CMS (Ref. 116361)

Not Evaluated

人間に対する脅威

  Harmless





人間の用途

FAO - Publication: search | FishSource |

より多くの情報

養殖生態
食料品(獲物)
餌の構成
摂食量
食料配給
捕食動物
生態学
生態学
人口動態
成長のパラメーター
最大年齢/サイズ
長さ-重量比。
長短関係。
体長組成
質量変換
補充
豊度
ライフサイクル
繁殖
成熟
成熟度/エラ
生産力
放精
産卵群

卵の開発
幼生
幼生の動力
解剖学
カマ

オトリス
生理学
体組成
栄養素
酸素消費
水泳タイプ
泳ぐ速さ
視覚色素
フィッシュ・サウンド
病気と寄生虫
毒性(LC50)
遺伝子の
ゲノム
遺伝子の
ヘテロ接合性
遺伝
遺伝的多様性
人間関係
養殖システム
水産養殖の紹介
緊張
シガテラ症例
切手、コイン、その他
アウトリーチ
協力者
分類学
共通名の
類義語
形態学
形態計測学
画像
参考文献
参考文献

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インターネットの情報源

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モデルに基づく推定値

系統多様性指数
(参照 82804)
PD50 = 0.5000 [Uniqueness, from 0.5 = low to 2.0 = high].
Bayesian length-weight a=0.01862 (0.00830 - 0.04177), b=3.02 (2.83 - 3.21), in cm total length, based on LWR estimates for this (Sub)family-body shape (Ref. 93245).
栄養段階
(参照 69278)
2.5   ±0.1 se; based on size and trophs of closest relatives
回復力
(参照 120179)
高い, 15か月以下の倍増期間の最小個体群 (Preliminary K or Fecundity.).
漁業の脆弱性
(Ref. 59153)
Low to moderate vulnerability (27 of 100). 🛈