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008 170927s2017 si ob 001 0 eng d
020 _a9789811056352
_q(electronic bk.)
020 _a9811056358
_q(electronic bk.)
020 _z9789811056338
020 _z9811056331
040 _aYDX
_beng
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_bspa
050 4 _aQL391.R8
_b2017 EB
245 0 0 _aRotifers :
_baquaculture, ecology, gerontology, and ecotoxicology
_cAtsushi Hagiwara, Tatsuki Yoshinaga, editors.
264 1 _aSingapore
_bSpringer International Publishing
_c2017
300 _a1 recurso en línea
336 _aTexto
_btxt
_2rdacontent
337 _aelectrónico
_bc
_2rdamedia
338 _arecurso electrónico
_bcr
_2rdacarrier
347 _atext file
_bPDF
490 0 _aFisheries science series
_x2522-0470
500 _a
_bSpringer Biomedical and Life Sciences eBooks 2017 English+International
504 _aIncluye referencias bibliográficas e índice
505 0 _aForeword to the Series; Preface; Contents; Part I: Taxonomy and Population Genetics; Chapter 1: The Current Status of the Morphological Classification of Rotifer Strains Used in Aquaculture; 1.1 Introduction; 1.2 Recognition of Size Variation; 1.3 Application for Fish Species Newly Developed in Aquaculture; 1.4 Determination of Appropriate Rotifer Strain for Finfish Larvae; 1.5 Artificial Modification of Rotifer Body Size; 1.6 Prospects; References; Chapter 2: Speciation in the Brachionus plicatilis Species Complex
505 8 _a2.1 Introduction: Species and Speciation - An Overview with Stress on Rotifers2.2 Brachionus plicatilis: From a Species with Morphological Variability to a Species Complex; 2.3 Species Distribution and Co-occurrence; 2.4 Morphological Evolution in the Complex; 2.5 Population Differentiation and Speciation; 2.6 Prospects; References; Part II: Live Food; Chapter 3: Mass Culture and Preservation of Brachionus plicatilis sp. Complex; 3.1 Introduction; 3.2 Culture Methods; 3.2.1 Batch Culture; 3.2.2 Semicontinuous Culture; 3.2.3 High-Density Culture; 3.3 Culture Diagnosis and Treatment
505 8 _a3.4 PreservationReferences; Chapter 4: Enrichment of Rotifers and Its Effect on the Growth and Survival of Fish Larvae; 4.1 Introduction; 4.2 Background; 4.2.1 Necessity of Enrichment; 4.2.2 Noticing the Necessity of Nutritional Enrichment; 4.3 Methods for Nutritional Enrichment and Enrichment Diets; 4.4 Specific Nutrients for Enrichment; 4.4.1 Fatty Acids; 4.4.2 Phospholipid; 4.4.3 Vitamins; 4.4.4 Free Amino Acids; 4.4.5 Minerals; 4.5 Rotifer Quality and Enrichment Effect; 4.5.1 Influence of Primary Culture; 4.5.2 Arrangement of Enrichment Method
505 8 _a4.5.3 Difference in Enrichment Among Rotifer Species4.5.4 Nutritional Changes of Rotifers in the Rearing Water; 4.6 Prospects; References; Chapter 5: Application of Rotifers for Larval Rearing of Marine Fishes Cultivated Under Various Conditions; 5.1 Introduction; 5.2 The Effects of Rotifer Viability on the Quality of Marine Fish Larvae; 5.3 Distribution and Behavior of Rotifers in Rearing Tanks for Marine Fish Larvae; References; Chapter 6: Use of Freshwater Brachionus for Aquaculture; 6.1 Introduction; 6.2 Biological Characteristics of B. angularis
505 8 _a6.3 Results of Feeding Experiment Performed Using B. angularis Laos Strain and Fish Larvae6.4 Recommendation for Culturing Indigenous Species by Using Freshwater Brachionus; 6.5 Isolation of Freshwater Brachionus; References; Part III: Model Organism; Chapter 7: Life History Variation in Monogonont Rotifers; 7.1 Introduction: The Life History Traits of Monogonont Rotifers; 7.2 Sources of Variation in Life History Traits; 7.2.1 Phenotypic Plasticity; 7.2.1.1 Environmental Variables; 7.2.1.2 Allelochemicals; 7.2.1.3 Toxins and Endocrine Disruptors; 7.2.1.4 Other Chemical Substances
520 3 _aThis book highlights the latest advances in rotifer studies in various fields including aquaculture, ecology, gerontology and ecotoxicology. The genus Brachionus are an indispensable type of zooplankton, having served as an initial live food for marine larval rearing since the 1960s. Their mass culture techniques have been intensively studied, and some essential achievements have been made - regarding high density culture, employment of valuable dietary algae, automated culture systems, and effective production of resting eggs. These have in turn supported stable and efficient aquatic seedling production for numerous important marine fish species including flounder, sea bream, and bluefin tuna. Further, this group is considered to be a suitable model for studying various aspects in ecology. A series of aquaculture and basic science studies have significantly advanced our understanding of the life history evolution. The studies in these two fields are closely linked, and provide readers with comprehensive information on how rotifers are now being employed in biological investigations.
588 0 _aVersión impresa
650 7 _aRotíferos
_2embne
_0(OCoLC)fst01100647
_0LocalZ
_9672679
700 1 _aHagiwara, A.
_q(Atsushi),
_eeditor literario
700 1 _aYoshinaga, Tatsuki,
_eeditor literario
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=http://link.springer.com/10.1007/978-981-10-5635-2
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
988 _aEBOOK, EBSPRINGER_2017
998 _b02/2018
_dz
_e-
_zSI
999 _c96550
_d96550
_x1