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The distribution of 376 salmon caught at sea between 41 °S and 46 °S up to 48 km off the east coast of the South Island between 1925 and 1978 is discussed. The distribution appears to be related to strong currents in Cook and Foveaux Straits, and to the Southland Current off the east coast of the South Island. Samples from the sea at Moeraki Peninsula had a higher incidence of stream‐reared fish and a lower mean fork length than samples from the Waitaki or Rakaia Rivers at spawning.  相似文献   
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The breeding and settlement seasons of the intertidal barnacles Chamaesipho brunnea, C. columna and Elminius plicatus were determined, and experiments using cages on the shore to examine barnacle survival and growth rate at four levels were carried out at Leigh during 1964–66.

Chamaesipho brunnea bred in spring and summer; C. columna and E. plicatus bred throughout the year, but settled intermittently. When protected from predators and from overgrowth by algae, all three species survived at levels lower than normal. At higher levels C. columna, E. modestus, Balanus trigonus and Tetraclita purpuraseens survived for significant periods (C. brunnea occurs naturally higher on the shore than the highest experimental level).  相似文献   
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Landlocked sockeye salmon (Oncorhynchus nerka), ranging in fork length (FL) from 105 to 313 mm, were captured in fine‐mesh gill nets set in the limnetic zone of the Waitaki hydro lakes (44° 30′ S, 170° 10’ E) in the South Island, New Zealand. A total of 443 stomachs was examined and the frequency of occurrence, volume and weight of prey items calculated. In the Ahuriri Arm of Lake Benmore the principal food (54% by weight) was zooplankton (Boeckella dilatata) whereas in the Haldon Arm of Lake Benmore it was larval and juvenile common bullies (Gobiomorphus cotidi‐anus) (73% by volume). In Lake Waitaki in winter, salmon had eaten insects (43% by volume) with smaller amounts of snails (Potamopyrgus antipo‐darum, 23%) and bullies (24%). In Lake Ohau adult insects may be an important food. There were also variations in diet with season and fish size. The stomachs of 147 brown trout (Salmo trutta) and 181 rainbow trout (S. gairdnerii) caught in the same gill nets were also examined. In contrast to sockeye salmon stomachs they contained negligible amounts of zooplankton (< 1% by weight) and large amounts of aquatic insects (50–58% by weight in the Ahuriri Arm of Lake Benmore). Comparisons with juvenile sockeye salmon and kokanee in North American lakes are made. The impact of introductions of sockeye salmon into other New Zealand lakes is discussed.  相似文献   
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Stratigraphic changes in the remains of Bosmina longirostris from a lake with an introduced sockeye salmon population and a lake with a natural salmon run on Kodiak Island demonstrated markedly different responses to past fluctuations in salmon populations. In both lakes, there was a positive correlation between the density of Bosmina microfossils and the abundance of sockeye salmon. However, opposite size trends were observed in the two lakes. In Karluk Lake, which has a native sockeye salmon population, Bosmina mean carapace lengths were largest at high salmon densities, and mean mucro and antennule lengths were also large, suggesting strong predation pressure from cyclopoid copepods, and less intense pressure from juvenile sockeye salmon. As salmon-derived nutrients are important in driving primary productivity in this system, changes in zooplankton productivity track salmon escapement, but grazing pressure on Bosmina from juvenile salmon is less important than that from cyclopoid copepods. In Frazer Lake, a lake with an introduced salmon population, Bosmina morphologies were smallest during periods of high sockeye salmon in the lake, suggesting much stronger predation effects from sockeye salmon due to the suppression of Cyclops columbianus. Latent development of compensatory mechanisms and the delayed recovery of copepod populations to salmon introductions has resulted in zooplankton populations that are still recovering from shifts in fish populations that occurred decades earlier. The differential response of Bosmina populations between the natural and manipulated lakes suggests that care must be taken when attempting to extrapolate results from whole-lake manipulations and short-term experiments to natural systems.  相似文献   
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为了确定斑点鳟(Oncorhynchus mykiss)发眼卵孵化的适宜温度、盐度条件,作者通过设置不同的孵化温度和盐度,研究了温度、盐度对斑点鳟发眼卵孵化的影响。结果表明,发眼卵孵化的适宜温度范围为8~16℃,孵化率都在(73.33±2.04)%以上,最适温度为10℃,孵化率达(87.77±1.23)%。温度高于24℃时发眼卵不能孵化。温度在6~22℃内,斑点鳟发眼卵孵化时间与温度成负相关关系。斑点鳟胚胎发育的平均积温值为343℃?d。发眼卵孵化的适宜盐度范围为0~15,孵化率都在(85.33±1.92)%以上,最适盐度为0,孵化率达(97±1.13)%。盐度高于15时的孵化率为0。盐度在0~15内,发眼卵孵化时间与盐度成正相关关系。  相似文献   
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为筛选对虹鳟(Oncorhynchus mykiss)有潜在益生效果的菌株,本研究从健康虹鳟幼鱼肠道中分离到1株潜在益生菌株RT-BS07,采用形态学观察和分子特征分析对该菌株进行了鉴定,并评价了该菌株的抑菌性、耐受性、黏附性和安全性。形态学观察显示,菌株RT-BS07为革兰氏阳性杆菌,有圆形或椭圆形芽孢。16S rRNA比对结果显示,该菌株与枯草芽孢杆菌(Bacillus subtilis)NCBI3610株的同源性为99.86%。结合16S rRNA基因序列分析和形态学观察结果,确定菌株RT-BS07为枯草芽孢杆菌。菌株RT-BS07具备产蛋白酶和纤维素酶能力,其酶活力分别为(0.039±0.002)和(0.393±0.002)U/mg;该菌株可有效抑制温和气单胞菌(Aeromonas sobria)、杀鲑气单胞菌(A.salmonicida)和鲁氏耶尔森氏菌(Yersinia ruckeri)等致病菌。菌株RT-BS07在pH为2~10 LB液体培养基中均可存活;在盐度为2%~8%条件下存活率为5.70%~93.28%,其存活率随盐度升高而降低。体外黏附试验结果表明,菌株RT-BS07可大量黏附在虹鳟前肠黏膜,不破坏肠道组织完整性,对左氟沙星、环丙沙星、氧氟沙星和链霉素等18种抗菌药物敏感。本研究分离筛选得到的枯草芽孢杆菌RT-BS07株具有产消化酶性能,其抗逆性能强,对虹鳟无毒害作用,可作为虹鳟健康养殖及益生菌制剂研发源益生菌候选株。  相似文献   
9.
The sea anemones Calliactis conchicola Parry, 1952 and Paracalliactis rosea n.sp. are described. This is the first report of the hormathiid genus Paracalliactis for New Zealand. Calliactis conchicola occurs with living gastropods, hermit crabs, and a true crab, and Paracalliactis rosea occurs with hermit crabs and a true crab. Certain characteristics of each of the two anemones suggest that the genera Calliactis and Paracalliactis may not be as discrete as was indicated by earlier reports.  相似文献   
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This study examined the diet of sympatric populations of migratory juvenile rainbow trout and landlocked koaro in the Waipehi and Omori Streams, Lake Taupo, New Zealand. In both species, diet was dominated, both numerically and by weight, by aquatic prey: Ephemeroptera, Trichoptera, and Diptera larvae were the most numerous prey items. Adult koaro and juvenile rainbow trout both fed on small koaro. Terrestrial prey items were present in low numbers in the diets of both koaro and juvenile rainbow trout, but were more important in terms of weight. Resource partitioning was weak although koaro consumed more small benthic invertebrates such as chironomid larvae, whereas the diet of rainbow trout contained more Ephemeroptera larvae and terrestrial insects. In the Waipehi Stream, koaro consumed both rainbow trout ova and koaro ova; in Omori Stream, trout ova were important in the diet of juvenile rainbow trout. Since the diets of koaro and juvenile rainbow trout in some Taupo tributaries are similar, populations may co‐exist by temporal and/or spatial partitioning of food resources, whereas trout predation on small koaro may be a limiting factor for koaro populations.  相似文献   
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