Insects at Low Temperature [electronic resource] / edited by Richard Lee.
Erişim Adresi
ISBN
9781475701906
Dil Kodu
İngilizce
Yer Numarası
DK/10675
Basım Bildirimi
1st ed. 1991.
Yayın Bilgisi
New York, NY : Springer US : Imprint: Springer, 1991.
Fiziksel Niteleme
X, 514 p. 15 illus. online resource.
İçindekiler Notu
Physiology of Insect Cold Hardiness -- 1. A Tribute to R. W. Salt -- 2. Principles of Insect Low Temperature Tolerance -- 3. The Water Relations of Overwintering Insects -- 4. Biochemistry of Cryoprotectants -- 5. Hemolymph Proteins Involved in Insect Subzero-Temperature Tolerance: Ice Nucleators and Antifreeze Proteins -- Impact on Development and Survival -- 6. Cold Shock and Heat Shock -- 7. Effects of Cold on Morphogenesis -- 8. Relationship between Cold Hardiness and Diapause -- 9. Thermoperiodism -- Species Adaptations -- 10. Winter Habitats and Ecological Adaptations for Winter Survival -- 11. Freezing Tolerance in the Goldenrod Gall Fly (Eurosta solidaginis) -- 12. Behavioral and Physiological Adaptations to Cold in a Freeze-Tolerant Arctic Insect -- 13. Comparative Invertebrate Cold Hardiness -- 14. Adaptations to Alpine and Polar Environments in Insects and Other Terrestrial Arthropods -- 15. Overwintering of Freshwater Benthic Macroinvertebrates -- Practical Applications -- 16. Cryopreservation of Insect Germplasm: Cells, Tissues, and Organisms -- 17. Cryobiology of Drosophila melanogaster Embryos -- 18. Silkworm Eggs at Low Temperatures: Implications for Sericulture -- 19. Overwintering in Honey Bees: Implications for Apiculture -- 20. Implications of Cold Hardiness for Pest Management -- Taxonomic Index -- Contributors.
Özet, vb.
The study of insects at low temperature is a comparatively new field. Only recently has insect cryobiology begun to mature, as research moves from a descriptive approach to a search for underlying mechanisms at diverse levels of organization ranging from the gene and cell to ecological and evolutionary relationships. Knowledge of insect responses to low temperature is crucial for understanding the biology of insects living in seasonally varying habitats as well as in polar regions. It is not possible to precisely define low temperature. In the tropics exposure to 10-15°C may induce chill coma or death, whereas some insects in temperate and polar regions remain active and indeed even able to fly at O°C or below. In contrast, for persons interested in cryopreservation, low temperature may mean storage in liquid nitrogen at - 196°C. In the last decade, interest in adaptations of invertebrates to low temperature has risen steadily. In part, this book had its origins in a symposium on this subject that was held at the annual meeting of the Entomological Society of America in Louisville, Kentucky, USA in December, 1988. However, the emergence and growth of this area has also been strongly influenced by an informal group of investigators who met in a series of symposia held in Oslo, Norway in 1982, in Victoria, British Columbia, Canada in 1985 and in Cambridge, England in 1988. Another is scheduled for Binghamton, New York, USA (1990).
Konu
Social sciences.
Humanities.
Humanities and Social Sciences.
Humanities.
Humanities and Social Sciences.
Diğer Yazarlar
Kurum Adı
Eseri Alıntıla
Referansları kullanmadan önce gözden geçirmeniz ve varsa gerekli düzeltmeleri yapmanız önerilir.
Dijital Kaynak
MARC Görünümü
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505 0 |aPhysiology of Insect Cold Hardiness -- 1. A Tribute to R. W. Salt -- 2. Principles of Insect Low Temperature Tolerance -- 3. The Water Relations of Overwintering Insects -- 4. Biochemistry of Cryoprotectants -- 5. Hemolymph Proteins Involved in Insect Subzero-Temperature Tolerance: Ice Nucleators and Antifreeze Proteins -- Impact on Development and Survival -- 6. Cold Shock and Heat Shock -- 7. Effects of Cold on Morphogenesis -- 8. Relationship between Cold Hardiness and Diapause -- 9. Thermoperiodism -- Species Adaptations -- 10. Winter Habitats and Ecological Adaptations for Winter Survival -- 11. Freezing Tolerance in the Goldenrod Gall Fly (Eurosta solidaginis) -- 12. Behavioral and Physiological Adaptations to Cold in a Freeze-Tolerant Arctic Insect -- 13. Comparative Invertebrate Cold Hardiness -- 14. Adaptations to Alpine and Polar Environments in Insects and Other Terrestrial Arthropods -- 15. Overwintering of Freshwater Benthic Macroinvertebrates -- Practical Applications -- 16. Cryopreservation of Insect Germplasm: Cells, Tissues, and Organisms -- 17. Cryobiology of Drosophila melanogaster Embryos -- 18. Silkworm Eggs at Low Temperatures: Implications for Sericulture -- 19. Overwintering in Honey Bees: Implications for Apiculture -- 20. Implications of Cold Hardiness for Pest Management -- Taxonomic Index -- Contributors.
520 |aThe study of insects at low temperature is a comparatively new field. Only recently has insect cryobiology begun to mature, as research moves from a descriptive approach to a search for underlying mechanisms at diverse levels of organization ranging from the gene and cell to ecological and evolutionary relationships. Knowledge of insect responses to low temperature is crucial for understanding the biology of insects living in seasonally varying habitats as well as in polar regions. It is not possible to precisely define low temperature. In the tropics exposure to 10-15°C may induce chill coma or death, whereas some insects in temperate and polar regions remain active and indeed even able to fly at O°C or below. In contrast, for persons interested in cryopreservation, low temperature may mean storage in liquid nitrogen at - 196°C. In the last decade, interest in adaptations of invertebrates to low temperature has risen steadily. In part, this book had its origins in a symposium on this subject that was held at the annual meeting of the Entomological Society of America in Louisville, Kentucky, USA in December, 1988. However, the emergence and growth of this area has also been strongly influenced by an informal group of investigators who met in a series of symposia held in Oslo, Norway in 1982, in Victoria, British Columbia, Canada in 1985 and in Cambridge, England in 1988. Another is scheduled for Binghamton, New York, USA (1990).
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532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aSocial sciences.
650 0|aHumanities.
650 14|aHumanities and Social Sciences.
700 1 |aLee, Richard.|eeditor.|4edt|4http://id.loc.gov/vocabulary/relators/edt
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005 20260131023331
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020 |a9781475701906|9978-1-4757-0190-6
024 7 |a10.1007/978-1-4757-0190-6|2doi
041 |aeng
049 |aTürk Tarih Kurumu Kütüphanesi
050 4|aH1-99
050 4|aAZ19.2-999
072 7|aGT|2bicssc
072 7|aNON000000|2bisacsh
072 7|aGT|2thema
082 04|a300|223
082 04|a001.3|223
090 |aDK/10675
245 10|aInsects at Low Temperature|h[electronic resource] /|cedited by Richard Lee.
250 |a1st ed. 1991.
264 1|aNew York, NY :|bSpringer US :|bImprint: Springer,|c1991.
300 |aX, 514 p. 15 illus.|bonline resource.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
347 |atext file|bPDF|2rda
505 0 |aPhysiology of Insect Cold Hardiness -- 1. A Tribute to R. W. Salt -- 2. Principles of Insect Low Temperature Tolerance -- 3. The Water Relations of Overwintering Insects -- 4. Biochemistry of Cryoprotectants -- 5. Hemolymph Proteins Involved in Insect Subzero-Temperature Tolerance: Ice Nucleators and Antifreeze Proteins -- Impact on Development and Survival -- 6. Cold Shock and Heat Shock -- 7. Effects of Cold on Morphogenesis -- 8. Relationship between Cold Hardiness and Diapause -- 9. Thermoperiodism -- Species Adaptations -- 10. Winter Habitats and Ecological Adaptations for Winter Survival -- 11. Freezing Tolerance in the Goldenrod Gall Fly (Eurosta solidaginis) -- 12. Behavioral and Physiological Adaptations to Cold in a Freeze-Tolerant Arctic Insect -- 13. Comparative Invertebrate Cold Hardiness -- 14. Adaptations to Alpine and Polar Environments in Insects and Other Terrestrial Arthropods -- 15. Overwintering of Freshwater Benthic Macroinvertebrates -- Practical Applications -- 16. Cryopreservation of Insect Germplasm: Cells, Tissues, and Organisms -- 17. Cryobiology of Drosophila melanogaster Embryos -- 18. Silkworm Eggs at Low Temperatures: Implications for Sericulture -- 19. Overwintering in Honey Bees: Implications for Apiculture -- 20. Implications of Cold Hardiness for Pest Management -- Taxonomic Index -- Contributors.
520 |aThe study of insects at low temperature is a comparatively new field. Only recently has insect cryobiology begun to mature, as research moves from a descriptive approach to a search for underlying mechanisms at diverse levels of organization ranging from the gene and cell to ecological and evolutionary relationships. Knowledge of insect responses to low temperature is crucial for understanding the biology of insects living in seasonally varying habitats as well as in polar regions. It is not possible to precisely define low temperature. In the tropics exposure to 10-15°C may induce chill coma or death, whereas some insects in temperate and polar regions remain active and indeed even able to fly at O°C or below. In contrast, for persons interested in cryopreservation, low temperature may mean storage in liquid nitrogen at - 196°C. In the last decade, interest in adaptations of invertebrates to low temperature has risen steadily. In part, this book had its origins in a symposium on this subject that was held at the annual meeting of the Entomological Society of America in Louisville, Kentucky, USA in December, 1988. However, the emergence and growth of this area has also been strongly influenced by an informal group of investigators who met in a series of symposia held in Oslo, Norway in 1982, in Victoria, British Columbia, Canada in 1985 and in Cambridge, England in 1988. Another is scheduled for Binghamton, New York, USA (1990).
532 8 |aAccessibility summary: This PDF is not accessible. It is based on scanned pages and does not support features such as screen reader compatibility or described non-text content (images, graphs etc). However, it likely supports searchable and selectable text based on OCR (Optical Character Recognition). Users with accessibility needs may not be able to use this content effectively. Please contact us at accessibilitysupport@springernature.com if you require assistance or an alternative format.
532 8 |aInaccessible, or known limited accessibility
532 8 |aNo reading system accessibility options actively disabled
532 8 |aPublisher contact for further accessibility information: accessibilitysupport@springernature.com
650 0|aSocial sciences.
650 0|aHumanities.
650 14|aHumanities and Social Sciences.
700 1 |aLee, Richard.|eeditor.|4edt|4http://id.loc.gov/vocabulary/relators/edt
710 2 |aSpringerLink (Online service)
773 0 |tSpringer Nature eBook
776 08|iPrinted edition:|z9780412028014
776 08|iPrinted edition:|z9781475701913
776 08|iPrinted edition:|z9781475701920
856 40|uhttps://doi.org/10.1007/978-1-4757-0190-6
912 |aZDB-2-SHU
912 |aZDB-2-SXH
912 |aZDB-2-BAE
950 |aHumanities, Social Sciences and Law (SpringerNature-11648)
950 |aHistory (R0) (SpringerNature-43722)
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