Albula gilberti, Cortez bonefish

Albula gilberti Pfeiler & van der Heiden, 2011

Cortez bonefish
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Image of Albula gilberti (Cortez bonefish)
Albula gilberti
图片提供人 Wozniak, S.

分类 / 名称 俗名 | 同种异名 | Catalog of Fishes(, ) | ITIS | CoL | WoRMS | Cloffa

Teleostei > Albuliformes (Bonefishes) > Albulidae (Bonefishes) > Albulinae
Etymology: Albula: Latin, albus = white (Ref. 45335)gilberti: Named for the pioneer ichthyologist Charles Henry Gilbert who, in 1889, first recorded the metamorphosis of bonefish leptocephali (see Jordan 1905, and Gill 1907) based on specimens collected in the Gulf of California. Given that Gilbert's fish collections were conducted mainly along the shore and coastal waters of the northern Gulf of California (Gilbert 1890) it is highly probable that he collected what we recognize here as A. gilberti (Ref. 88068).
Eponymy: Dr Charles Henry Gilbert (1859–1928) was an ichthyologist and fishery biologist, whose main area of study was Pacific salmon. [...] (Ref. 128868), visit book page.

环境:氛围 / 气候带 / 深度上下限 / 分布范围 生态学

海洋 底中水层性.

分布 领土 | FAO区域 | 生态系 | 标本纪录 | 分布图 | 简介 | Faunafri

North America: Mexico and USA; from Mazatlán, Sinaloa throughout the Gulf of California and outer coast of the Baja California peninsula, Mexico to California, USA.

大小 / 重量 / 年龄

成熟度: Lm ?  range ? - ? cm
Max length : 25.7 cm SL 雄鱼/尚未辨别雌雄; (Ref. 88068)

简单描述 检索表 | 型态特徵 | 形态测量图

背的软条 (总数) : 17 - 18; 臀鳍软条: 8 - 9. Albula gilberti is distinguished from A. esuncula by the following characters: the pelvic-fin tip reach the posterior edge of the anus (vs. tip not surpassing the anterior edge); pelvic-fin rays varies from 9 to 12 (vs. always 10); lateral-line scale counts 68-73 (vs. 68-71); and, gill rakers on first gill arch are higher, 4-10 (vs. 3-8). Since only four or nine specimens were examined for A. esuncula, the diagnostic value of the meristic differences between both species and the position of the pelvic-fin tip should not be considered validated yet and be used with caution. Albula gilberti also differs from A. esuncula by diagnostic nucleotide substitutions at 17 different sites in the 544 bp cytb gene segment; the cytb segment corresponds to nucleotide positions 14502-15045 in the complete mitochondrial genome of Albula glossodonta [GenBank accession no. AP002973; phylogenetic evidence suggests that the genome sequenced was actually from A. argentea (= A. forsteri) and not A. glossodonta (Pfeiler et al., 2006)] (Ref. 88068).
Body shape (shape guide): fusiform / normal; Cross section: compressed.

生物学特性     字汇 (例如 epibenthic)


生命周期和交配行为 成熟度 | 繁殖 | 产卵场 | | 孕卵数 | 仔鱼

Spawning occurs in open waters. Eggs are pelagic (Ref. 205).

主要参考文献 上传您的参考资料 | 参考文献 | 合作者 | 合作者

Pfeiler, E., A.M. Van Der Heiden, R.S. Ruboyianes and T. Watts, 2011. Albula gilberti, a new species of bonefish (Albuliformes: Albulidae) from the eastern Pacific, and a description of adults of the parapatric A. esuncula. Zootaxa 3088:1-14. (Ref. 88068)

世界自然保护联盟红皮书 (Ref. 130435: Version 2025-2 (Global))


CITES

Not Evaluated

CMS (Ref. 116361)

Not Evaluated

对人类的威胁

 





人类利用

FAO - Publication: search | FishSource |

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营养生态学
食物(猎物)
食性组成
食物消耗量
口粮
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最大年龄/尺寸
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入添量
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成熟度
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卵的发育
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稚鱼动力学
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特别资料

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网络资源

AFORO (otoliths) | Aquatic Commons | BHL | Cloffa | Websites from users | 核实 FishWatcher | CISTI | Catalog of Fishes: , | DiscoverLife | ECOTOX | FAO - Publication: search | Faunafri | Fishipedia | Fishtrace | GloBI | Google Books | Google Scholar | Google | IGFA World Record | OneZoom | Open Tree of Life | Otolith Atlas of Taiwan Fishes | PubMed | Reef Life Survey | Socotra Atlas | TreeBase | 树状分类阶层 | Wikipedia: 转至, 搜寻 | World Records Freshwater Fishing | Zoobank | 动物学的记录

基于模型的估算

系统发育多样性指数
(参考文献 82804)
PD50 = 0.5007 [Uniqueness, from 0.5 = low to 2.0 = high].
Bayesian length-weight a=0.01288 (0.00537 - 0.03092), b=3.05 (2.85 - 3.25), in cm total length, based on LWR estimates for this (Sub)family-body shape (Ref. 93245).
营养阶层
(参考文献 69278)
3.5   ±0.3 se; based on size and trophs of closest relatives
回复力
(参考文献 120179)
高度, 族群倍增时间少于 15个月 (Preliminary K or Fecundity.).
渔业脆弱性
(Ref. 59153)
Low vulnerability (25 of 100). 🛈