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1.
施氏鲟仔鱼发育及异速生长模型   总被引:7,自引:1,他引:6  
马境  章龙珍  庄平  张涛  冯广朋  赵峰 《应用生态学报》2007,18(12):2875-2882
施氏鲟仔鱼的生长发育可分为两个时期:卵黄囊期(或称为自由胚期),即从刚出膜(0日龄,10.17±0.63 mm)到初次开口(9日龄,18.93±0.74 mm);晚期,从开口摄食至器官发育基本完全(38日龄,41.89±5.09 mm).卵黄囊期仔鱼的感觉、摄食、呼吸、游泳等器官快速分化;晚期仔鱼各骨板分化并发育,在形态上逐渐完成向成鱼的转变.对施氏鲟仔鱼异速生长进行的研究表明,仔鱼许多关键器官均存在异速生长现象,如眼径、口宽、尾鳍长、胸鳍长分别在2日龄、8~9日龄、10日龄、11日龄出现生长拐点,拐点之前器官快速生长,拐点之后生长速度减慢甚至近似等速生长.施氏鲟仔鱼各器官呈现出协调和快速发育的特征,随着重要的感觉、摄食、呼吸、游泳等器官的发育和完善,仔鱼快速地具备了躲避敌害和摄食的能力,其生存能力大大提高.  相似文献   

2.
施氏鲟仔鱼的生长发育可分为两个时期:卵黄囊期(或称为自由胚期),即从刚出膜(0日龄,10.17±0.63 mm)到初次开口(9日龄,18.93±0.74 mm);晚期,从开口摄食至器官发育基本完全(38日龄,41.89±5.09 mm).卵黄囊期仔鱼的感觉、摄食、呼吸、游泳等器官快速分化;晚期仔鱼各骨板分化并发育,在形态上逐渐完成向成鱼的转变.对施氏鲟仔鱼异速生长进行的研究表明,仔鱼许多关键器官均存在异速生长现象,如眼径、口宽、尾鳍长、胸鳍长分别在2日龄、8~9日龄、10日龄、11日龄出现生长拐点,拐点之前器官快速生长,拐点之后生长速度减慢甚至近似等速生长.施氏鲟仔鱼各器官呈现出协调和快速发育的特征,随着重要的感觉、摄食、呼吸、游泳等器官的发育和完善,仔鱼快速地具备了躲避敌害和摄食的能力,其生存能力大大提高.  相似文献   

3.
运用光学显微镜技术和实验生态学方法, 对斑鰶(Konosirus punctatus)早期形态发育观察、异速生长模式及其生态学意义进行了研究。结果表明: 在水温(21.5±0.5)℃下, 初孵仔鱼全长(3.18±0.52) mm, 斑鰶仔鱼期从孵化出膜到43日龄棱鳞开始出现前, 稚鱼期从44日龄棱鳞出现到55日龄全身覆满鳞片。斑鰶的形态变化和器官分化主要发生在仔鱼期。斑鰶的吻长、躯干长、肠道长、胸鳍长、腹鳍长等重要形态学指标均存在异速生长现象, 其生长拐点依次为 42日龄(TL: 26.41 mm)、24日龄(TL: 15.57 mm)、31日龄(TL: 21.41 mm)、41日龄(TL: 25.47 mm)、42日龄(TL: 26.41 mm)。相对于全长、吻长和胸鳍长在拐点前后由正异速生长变为等速生长, 腹鳍长由正异速生长转为负异速生长, 这为呼吸、摄食和成功逃避捕食者提供有利条件; 而肠道长由负异速生长变为等速生长, 这可能与斑鰶的食性转化有关。综上所述, 为适应复杂多变的生存环境, 斑鰶在早期发育阶段优先发育对生长生存起关键作用的器官, 这对提高仔、稚鱼的存活率具有重要的生态学意义。研究将为今后进一步人工繁育和苗种培育提供理论依据。  相似文献   

4.
红鳍笛鲷仔、稚鱼异速生长   总被引:3,自引:0,他引:3       下载免费PDF全文
运用生态学和传统理论生物学的研究方法,对孵化后红鳍笛鲷(Lutjanus erythropterus)仔、稚鱼在早期生存和环境适应上的异速生长及器官优先发育生态学意义进行了研究,以期为红鳍笛鲷人工繁殖、育苗提供参考资料。以17日龄为红鳍笛鲷仔、稚鱼的区分时期,结果表明,红鳍笛鲷仔、稚鱼的感觉、呼吸摄食和游泳等器官快速分化,均存在异速生长现象。在头部器官中,吻长、口宽、眼径和头高在仔鱼期均为正异速生长,稚鱼期吻长为等速生长,口宽、眼径和头高为负异速生长。在身体各部位中,仔鱼期头长和体高为正异速生长,躯干部和尾长为负异速生长;稚鱼期体高和躯干长为正异速生长,头长和尾长为等速生长;在游泳器官中,仔鱼期红鳍笛鲷背鳍、腹鳍、尾鳍为正异速生长,胸鳍为等速生长,稚鱼期臀鳍为正异速生长,腹鳍、胸鳍和尾鳍为等速生长,背鳍为负异速生长。红鳍笛鲷这些关键器官的快速发育,使外源性营养开始后以最小的代谢损耗获得了生存能力的显著提升,对挑战和适应纷繁变换的外界压力具有重要的生态学意义。  相似文献   

5.
眼斑双锯鱼仔稚鱼发育异速生长   总被引:1,自引:0,他引:1       下载免费PDF全文
运用生态学和传统理论生物学的研究方法, 对孵化后眼斑双锯(Amphiprion ocellaris)仔、稚鱼在早期生存和环境适应上的异速生长及器官优先发育生态学意义进行了研究, 以期为眼斑双锯鱼人工繁殖和育苗提供参考资料。以11日龄为眼斑双锯鱼仔、稚鱼的区分时期, 结果表明, 眼斑双锯鱼仔、稚鱼的感觉、摄食和游泳等器官快速分化, 均存在异速生长现象。在头部器官中, 吻长、眼间距、口宽和头高在仔鱼期均为正异速生长, 吻至鳃裂前缘长和眼径为负异速生长。在身体各部位中, 仔鱼期体高、躯干长、尾长、尾柄长、尾柄高和体厚均为正异速生长, 仅头长为负异速生长; 在游泳器官中, 仔鱼期眼斑双锯鱼尾鳍、背鳍、胸鳍、腹鳍和臀鳍均为正异速生长。稚鱼期眼斑双锯鱼头部、躯干及游泳等各器官均为负异速生长。眼斑双锯鱼这些关键器官的异速发育, 对适应环境因子变化具有重要的生态学意义。  相似文献   

6.
通过观察日本七鳃鳗Lampetra japonica (Martens, 1868)胚胎外部形态和内部组织结构变化, 描述受精卵从卵裂至器官形成以及仔鱼孵出的发育阶段, 采用实验生态学方法研究卵黄囊期仔鱼的异速生长模式。结果表明: 日本七鳃鳗卵子为乳白色, 呈卵圆形; 受精卵卵裂方式为全卵裂; 胚胎发育过程主要包括卵裂期、囊胚期、原肠胚期、神经胚期、头凸期、孵出前期和孵出期, 历时11—12d; 初孵仔鱼为乳白色, 全长约(3.41±0.24) mm, 体质量约为0.0006 g。日本七鳃鳗胚胎发育研究可为了解七鳃鳗胚胎发育过程, 早期脊椎动物的起源和发育进化研究提供参考。卵黄囊期内仔鱼身体各部分中, 头长和尾长均表现出快速生长, 同在7 日龄出现生长拐点, 且生长拐点后的生长速率都大于生长拐点前的生长速率; 而仔鱼体长在卵黄囊期内表现出慢速生长。在头部器官中, 吻长、鳃前长和鳃长均表现出快速生长现象, 吻长和鳃长分别在9日龄和8日龄出现生长拐点; 口笠长在3日龄时出现生长拐点, 在生长拐点前为等速生长, 而在生长拐点后表现出快速生长; 眼径和眼鳃间距则分别表现出等速生长和慢速生长。泄殖孔在卵黄囊期内未出现生长拐点, 生长速率相对于全长生长速率表现出快速生长现象。七鳃鳗卵黄囊期仔鱼的异速生长是在长期进化过程中, 适应早期生活环境和独特的生活方式而形成特有的发育机制。  相似文献   

7.
采集池塘育苗的39日龄之前的梭鱼(Liza haematocheila)仔、稚、幼鱼,对其早期发育阶段体色的变化以及鳍的发生、发育进行了连续观察。初孵仔鱼体表不具黑色素,仅卵黄囊具黑色素,孵化后2日龄体表黑色素增加,鳍膜无色透明。8日龄仔鱼开始变得不透明,腹侧有黑色线状斑点。在18~19日龄仔鱼转化为稚鱼时,鱼体背部具大量雪花状黑色素颗粒,在透色光下可观察到淡黄色斑点(黄色素)。30日龄幼鱼与成鱼相似,体表具淡白色,背褐腹白。梭鱼仔鱼在早期发育阶段各鳍的发育顺序是:胸鳍→尾鳍→腹鳍→背鳍→臀鳍→第二鳍棘。初孵仔鱼,鳍褶从头部后缘向后绕过尾部,终止于卵黄囊后缘油球外侧。2日龄仔鱼具胸鳍芽,全身由鳍膜包裹,5日龄仔鱼胸鳍和尾鳍鳍膜已具有相当的运动能力,能够起到推动和维持身体平衡的作用。梭鱼鳍在早期发育过程中最明显的变化是尾鳍的生长和鳍节的发育。梭鱼仔鱼在12日龄时出现腹鳍棘芽基,15日龄时第二背鳍棘出现。17日龄,尾椎骨向上弯曲,尾鳍基本发育完成,长鳍条16根,具10节,中间几根棘条末三节二向分叉,短鳍条上下各6~8根;背鳍有鳍条11根,具5节,最外侧鳍棘具刺,基部有支鳍骨。至30日龄,梭鱼幼鱼各鳍发育完全,与成鱼相似。  相似文献   

8.
全人工繁殖西伯利亚鲟仔稚鱼发育的异速生长   总被引:6,自引:0,他引:6  
西伯利亚鲟(Acipenser baeri)是中国主要的淡水养殖对象之一,目前已经实现了苗种的全人工繁殖,为了改善西伯利亚鲟苗种培育技术,采用Image-Pro Plus 5.1软件显微拍照并对仔稚鱼的可量性状进行测量和数据处理,研究了全人工繁殖西伯利亚鲟仔稚鱼(0~53日龄)发育的异速生长及器官优先发育在早期生存和环境适应性上的意义。结果表明:在9、28、37日龄时分别出现3个全长生长拐点。因此,全长的生长可以分为4个阶段,每个阶段的平均增长率分别为0.83、0.79、2.68和1.71 mm·d-1,其中第3个阶段的生长率明显高于其他阶段;体质量的增长可以用Gaussion方程进行拟合,相关系数R2=0.99;全长(FL)与体质量(BW)的关系为BW=0.2×10-5(FL)2.72,为负异速生长;在早期发育过程中,仔鱼的许多关键器官的大小均存在异速生长现象,眼径在3~4日龄时,最先达到生长拐点,这意味着眼部是优先发育的,使其在出膜后就能有效地躲避敌害;口宽在17~18日龄时出现拐点,此时随着感觉器官和各鳍的不断完善,主动摄食能力不断加强;胸鳍、背鳍、臀鳍的长度也分别在16~17、13~14、21~22日龄时出现生长拐点,标志着其游泳能力已比较完善,可以有效地躲避敌害和获得食物,为其早期的生存提供了保障。在育苗生产实践中,可以根据生长和发育的阶段性和优先性,适时地和针对性地创造必要的生长发育条件,保证其重要器官得到优先发育,提高早期的成活率。  相似文献   

9.
大黄鱼仔稚鱼脊柱、胸鳍及尾鳍骨骼系统的发育观察   总被引:4,自引:0,他引:4  
研究采用二重染色法对3—28日龄人工培育的大黄鱼Larimichthys crocea(Richardson)仔稚鱼的部分骨骼系统的发育进行观察。结果显示,仔鱼的脊索从6日龄(平均全长MTL3.9mm)开始分节,8—10日龄髓弓、脉弓先后开始发育,14日龄(MTL7.5mm)脊椎骨、髓棘、脉棘均已形成,至28日龄(MTL19.5mm)已发生骨化;大黄鱼仔鱼孵化时,胸鳍的上匙骨、匙骨、后匙骨、支鳍骨原基已形成,27日龄(MTL19.0mm)稚鱼具5块支鳍骨,鳍条发育完整;尾鳍发育以8日龄仔鱼脊索后端腹部2块尾下骨的形成开始,至14日龄仔鱼尾鳍已初具雏形,尾杆骨、尾上骨和尾下骨均发育完全,21日龄稚鱼尾下骨排列成弧状,第三与第四块尾下骨之间的缝隙增大,把尾鳍鳍条分为上下两部分,鳍条分节明显,28日龄稚鱼尾鳍尾杆骨及鳍条发生钙化。  相似文献   

10.
利用采自赤水河下游的银鮈(Squalidus argentatus)鱼卵对其早期发育进行了观察和描述,并对仔鱼的耐饥饿能力进行了研究。银卵属中等大小的漂流性卵,具双层卵膜,外膜径(3.35±0.41)mm。胚胎发育分32个发育期,在水温24.6~25.5℃时历时40h。初孵仔鱼全长(3.84±0.36)mm,眼下有一个黑点,胸鳍原基已形成,经85d左右发育成幼鱼。仔鱼孵出后2~3d开口摄食,5日龄时初次摄食率即达100%。持续饥饿对银鮈仔鱼生长、发育、存活均有很大影响,饥饿仔鱼11~12d达不可逆点(PNR),饥饿至13日龄时,绝大部分仔鱼死亡。  相似文献   

11.
通过双须叶须鱼(Ptychobarbus dipogon Regan)早期发育特征研究, 旨在为该鱼的科学保护和合理开发提供技术支撑。结果显示: 双须叶须鱼卵径3.7—3.9 mm, 吸水后的卵径可达5.1—5.3 mm。在水温10℃左右的条件下, 经历336.02h孵化出膜。根据胚胎的外部形态特征可将胚胎发育分为准备卵裂阶段、卵裂阶段、囊胚阶段、原肠阶段、神经胚阶段、器官分化阶段、孵化阶段共7个阶段34个时期。初孵仔鱼全长12.4 mm, 第1天体色素出现, 胸鳍上翘, 鳃盖骨出现, 下颌原基出现; 第2天鳃弓原基出现; 第3天消化道出现, 肝胰脏原基出现; 第4天鳃耙出现, 体表色素细胞带出现; 第5天口凹形成, 鳃丝形成; 第6天胸鳍褶, 背鳍褶, 腹鳍褶出现; 第7天鼻凹出现, 星芒状色素团出现; 第9天鳔前原基出现; 第11天尾鳍鳍条开始出现, 胸鳍开始颤动; 第13天鳔1室出现, 半规管形成; 第17天背鳍分化出来; 第21天腹部鳍褶变大, 舌颌骨清晰可见; 第28天脾脏出现; 第33天出现腹鳍鳍条; 第34天鳞片出现; 第85天稚鱼的形态与成鱼无异。双须叶须鱼是已报道裂腹鱼类卵径最大, 较四大家鱼卵周隙小, 是对高原隆起所导致的高寒自然环境的一种适应。  相似文献   

12.
The see-through stock in the medaka Oryzias latipes, causes pigments to be absent from the whole body and has a transparent body in the adult stage as well as during embryonic stages. To establish a standard table of growth stages for this model fish, morphological features were examined during the growing period from hatching to adulthood. The main observations were performed on morphological changes in external and internal organs that could be seen through the body wall of the living fish during growth. Finally, five growth stages from just after hatching to the adult stage were defined on the basis of synchronized or definite changes in morphology as follows: (1) stage 40 in which the nodes (joints) in bony rays of the caudal and pectoral fins first appear, (2) the stage 41 in which the ribs and the anal, dorsal and ventral fins are formed by degeneration of the membrane fin folds, as recognized by the first appearance of nodes in the fin rays of the anal, pectoral and dorsal fins, and the parallel distribution of the dorsal artery and ventral vein of the tail, (3) stage 42 in which the 2-spiral pattern of the gut, the ray nodes in the ventral fins, and the scales first appear, (4) stage 43 in which early secondary sexual characters such as urinogenital protruberances (female) and papillar processes (male) appear, (5) stage 44 in which the 3-spiral pattern of the gut and the papillar process on the 2nd ray of pectral fins (male) appear.  相似文献   

13.
The morphological development and allometric growth patterns in the juvenile spotted seahorse Hippocampus kuda were studied under hatchery rearing conditions. Newborn spotted seahorses [mean ± s.d . standard length ( L S) 9·33 ± 0·79 mm] were raised till the age of 124 days (119·35 ± 6·04 mm). Growth was characterized by three stages with two inflexion points occurring at day 21 and 76. The mean growth rates in the first, second and third stages were 0·68, 1·16 and 0·71 mm day−1, respectively. The growth rate was most rapid in the second stage and was probably influenced by a behavioural shift from pelagic to benthic form. The mass ( M ) and L S relationship was exponential ( M = 7·14 × 10−6 L S2·76), but the slope, b = 2·76, reflected negative allometric growth. Sexes could be distinguished at c. 110 days, and the sex ratio was unbiased. The L S in males and females did not differ significantly. Morphological stageing series is proposed, which divides H. kuda juvenile development into eight stages based on the development of coronet, cheek and eye spines, keel and pigmentation. The morphometric ratios for all the body parts, except trunk length, showed considerable changes at a transition point occurring at c. 25 mm L S. The high proportional growth in head length, head depth, pectoral fin base length, dorsal fin base length, snout length, snout depth and eye diameter at the initial stages, and the abrupt increase in tail length only after the first 2 weeks, possibly reflect development priorities during early development where important organs are being developed first for the enhancement of juvenile survival.  相似文献   

14.
Eleven sharksuckers,Echeneis naucrates, in the Oita Ecological Aquarium spawned from 2 June to 3 December 1974. The spawning behavior began as soon as the lights were turned off. Just before a female spawned, it was driven toward the surface of the water by a group of males. The spawned eggs were pelagic and 2.6 mm in diameter. Approximately 500 eggs were spawned each day. Seventy larvae were hatched on 15 July, and 26 of them were reared until 1 September. We observed the behavior of their larvae and juvenile stages, from the hatching to the attaching phases. The caudal fins of the larvae expanded as they grew. They swam near the bottom with their caudal fins folded. When the sucking disk began to form on the back of a larva’s pectoral fin, it stood still with its caudal fin bent on bottom. After the formation of the sucking disk, a larva would lie on its stomach or back. Some quickly-growing specimens began to stick to the walls, pipes, or plates when they attained 55 mm SL, 35 days after hatching.  相似文献   

15.
During the larval period, most teleost fishes undergo a dramatic change in body form. Most functional systems are incomplete at hatching. Rapid development of swimming, feeding and respiration systems are expected. In this study, growth patterns of morphological characteristics related to these three functions were studied in two species of Ostariophysian teleosts: African catfish Clarias gariepinus and common carp Cyprinus carpio . Special attention was paid to the larval finfold, which is a remarkably common feature of fish larvae. The results confirmed that larval growth shows different phases. Many morphological characters showed fast allometric growth in early larvae, followed by isometric growth after an inflexion point. In carp, all larval growth curves showed such inflexion points at a total length of about 7 mm while in Clarias such a coupling was not found. The inflexion points in carp occur at a stage during which the typical larval swimming style changes towards the adult swimming style.  相似文献   

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