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Labeotropheus candipygia Pauers & Phiri, 2023

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

> Cichliformes (Cichlids, convict blennies) > Cichlidae (Cichlids) > Pseudocrenilabrinae
Etymology: Labeotropheus: Latin, labeo = one who has large lips + Greek, tropaion = defeat, a memorial of a fighting war, trophy; because of their specialized teeth were such an obvious feeding adaptation (Ref. 45335)candipygia: The specific epithet combines the Latin adjective for white or brilliant, candidum, and the new Latin noun pygia, meaning rump or buttocks; this refers to the bright white or bluish-white ventrum of the males (Ref. 128773).

Environment: milieu / climate zone / depth range / distribution range 生態学

; 新鮮な水 底生の漂泳性. Tropical

分布 国々 | 国連食糧農業機関の区域 | エコシステム | 事件 | Point map | 導入 | Faunafri

Africa: Malawi.

サイズ / 重さ / 年齢

Maturity: Lm ?  range ? - ? cm
Max length : 9.7 cm SL オス/雌雄の選別がない; (Ref. 128773)

簡単な記述 検索表 | 形態学 | 形態計測学

背面の脊椎 (合計) : 16 - 19; 背鰭 (合計) : 7 - 10; 肛門の骨: 3; 臀鰭: 7 - 9. Diagnosis: Labeotropheus candipygia differs from all other species of Labeotropheus by the typical nuptial colouration of the males: male L. candipygia have a distinct iridescent silvery-blue or silvery-white ventral surface; this unique colouration extends from the branchiostegals to the anus in all individuals, and will extend to through the caudal peduncle to the ventral attachment of the caudal fin in some individuals; above this silvery-white ventrum, males are ochreous orange, which covers most of the head and can extend to the base of the dorsal fin, and extends posteriorly through the caudal peduncle to the base of the caudal fin, or they will be a dull greyish blue with ochreous-orange highlights on the scales of the dorsum; both colour patterns feature a brilliantly iridescent white dorsal fin that has ochreous-orange tips, and patches of iridescent blue, black, orange, or red pigmentation (Ref. 128773). Labeotropheus candipygia differs from the slender-bodied Labeotropheus, L. trewavasae, L. simoneae, L. chirangali, except L. rubidorsalis, due to its greater body depth, 32.0-38.6% of standard length vs. 26.3-33.4% in L. trewavasae, 26.9-30.8% in L. simoneae, 26.6-33.2% in L. chirangali; it does have a generally deeper body than L. rubidorsalis, although the ranges overlap, 31.6-36.1% in L. rubidorsalis; It differs from L. rubidorsalis primarily in the nuptial colouration of the males, but also by a generally shorter snout length, 19.7-33.9% of head length vs. 29.8-42.7%, a longer snout pad, 11.3-19.2% of head length vs. 10.3-14.4%, and a greater number of tooth rows in the upper jaw, 4-6 vs. 3-4 (Ref. 128773). Labeotropheus candipygia differs from the other robust-bodied Labeotropheus primarily via male nuptial colouration (Ref. 128773). While the morphometric and meristic values largely overlap with the other robust Labeotropheus, there are some distinctions: Labeotropheus candipygia has a greater distance between the tip of the snout and the origin of the dorsal fin, 32.2-36.8% of standard length vs. 30.8-33.8%, a shorter distance between the insertion of the dorsal and anal fins, 13.9-16.7% of standard length vs. 16.5-17.4%, and fewer teeth in the left side of the lower jaw, 23-24 vs. 31-43, than L. fuelleborni; it typically has a shorter snout, 19.7-33.9% of head length vs. 25.2-40.8%, greater rostral length, 35.1-49.7% of head length vs. 22.9-43.7%, and a larger snout pad, 11.3-19.2% of head length vs. 7.4-16.1%, than L. artatorostris; it has a narrower interorbital width, 32.7-42.8% of head length vs. 40.1-43.5%, and typically fewer infraorbital neuromasts, 13-33 vs. 25-40, than L. chlorosiglos; it differs from L. obscurus due to a shorter distance between the insertions of the dorsal and anal fins, 13.9-16.7% of standard length vs. 15.8-17.8%, a shorter distance between the insertion of the dorsal fin and the origin of the anal fin, 27.4-31.7% of standard length vs. 30.3-33.2%, a typically shorter lower jaw, 21.5-39.4% of head length vs. 27.6-40.4%, more rows of teeth in the upper jaw, 4-6 vs. 3-4, more teeth in the left half of the lower jaw, 23-34 vs. 20-26, and fewer infraorbital neuromasts, 13-33 vs. 22-46 (Ref. 128773).

生物学     用語集 (例 epibenthic)

Life cycle and mating behavior 成熟 | 繁殖 | 放精 | | 生産力 | 幼生

主な参考文献 Upload your references | 参考文献 | コーディネーター : Kullander, Sven O. | 協力者

Pauers, M.J. and T.B. Phiri, 2023. Six new species of Labeotropheus (Cichliformes: Cichlidae) from the Malawian shore of Lake Malawi, Africa. Ichthyology & Herpetology 111(2):264-292. (Ref. 128773)

IUCNのレッドリストの状況は (Ref. 130435: Version 2024-1)


CITES

Not Evaluated

CMS (Ref. 116361)

Not Evaluated

人間に対する脅威

  Harmless





Human uses

水産業: 興味がない
FAO - Publication: search | FishSource |

より多くの情報

Trophic ecology
食品種目概要について
餌の構成
摂食量
Food rations
捕食動物
Ecology
生態学
Population dynamics
成長のパラメーター
Max. ages / sizes
Length-weight rel.
Length-length rel.
体長組成
Mass conversion
補充
豊度
Life cycle
繁殖
成熟
Maturity/Gills rel.
生産力
放精
Spawning aggregations

卵の開発
幼生
幼生の動力
Distribution
国々
国連食糧農業機関の区域
エコシステム
事件
導入
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カマ
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酸素消費
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Toxicity (LC50s)
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遺伝子の
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共通名の
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参考文献

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インターネットの情報源

AFORO (otoliths) | Aquatic Commons | BHL | Cloffa | BOLDSystems | Websites from users | Check FishWatcher | CISTI | Catalog of Fishes: 部類, | DiscoverLife | ECOTOX | FAO - Publication: search | Faunafri | Fishipedia | Fishtrace | GenBank: ゲノム, ヌクレオチド | GloBI | Google Books | Google Scholar | Google | IGFA World Record | MitoFish | Otolith Atlas of Taiwan Fishes | PubMed | Reef Life Survey | Socotra Atlas | 生命の木 | Wikipedia: 行く, 検索する | World Records Freshwater Fishing | Zoobank | 動物に関する記録

Estimates based on models

Phylogenetic diversity index (Ref. 82804):  PD50 = No PD50 data   [Uniqueness, from 0.5 = low to 2.0 = high].
Bayesian length-weight: a=0.01445 (0.00674 - 0.03099), b=2.99 (2.82 - 3.16), in cm total length, based on LWR estimates for this (Sub)family-body shape (Ref. 93245).
栄養段階 (Ref. 69278):  3.3   ±0.4 se; based on size and trophs of closest relatives
回復力 (Ref. 120179):  高い, 15か月以下の倍増期間の最小個体群 (Preliminary K or Fecundity.).
Fishing Vulnerability (Ref. 59153):  Low vulnerability (10 of 100).