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THE DEVELOPMENT AND FECUNDITY OF THE ORIENTAL FRUIT MOTH, GRAPHOLITHA (CYDIA) MOLESTA (BUSCK) UNDER CONTROLLED TEMPERATURES AND HUMIDITIES PDF

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Preview THE DEVELOPMENT AND FECUNDITY OF THE ORIENTAL FRUIT MOTH, GRAPHOLITHA (CYDIA) MOLESTA (BUSCK) UNDER CONTROLLED TEMPERATURES AND HUMIDITIES

ifWBj This is to certifq that the thesis entitled The Development and Fecundity of the Oriental Fruit Moth, Grapholltha (Cydia) Moleata (Busck) Under Controlled x-^AV: Temperatures and Humidities. presented by Ghulam-Ullah Chaudhry has been accepted towards fulfillment of the requirements for Ph.D. tn Entomology mmmm i ajor professor ssvssm July 13, 1951 0-169 THE DEVELOPMENT AND FECUNDITY OF THE ORIENTAL FRUIT MOTH, GRAPHOLITHA (CYDIA) MOLESTA (BUSCK) UNDER CONTROLLED TEMPERATURES AND HUMIDITIES By GHULAM-ULLAH CHAUDHRY A THESIS Submitted to the School of Graduate Studies of Michigan State College of Agriculture zmd Applied Science in partial fulfillment of the requirem ents for the degree of DOCTOR OF PHILOSOPHY Department of Entomology 1951 ACKNOWLEDGMENTS The w riter wishes o express his sincere appreciation and thanks to Professor Ray Hutson, Head of the Department of Entomology for guidance, criticism , help and constant en- couragement in the conduc of this work. The author is further indebted to Dr. W. B. Drew, Dr. C. J. Alexopoulos and Dr. E. S. Beneke for the use of their incubators; to Professor D. Cation for his assistance in Sup- plying peach seedlings and for perm ission to remove infested twigs from his peach nurseries; to Dr. W. D. Baten for help in analyzing part of the da ;a statistically; to Dr. H. L. King for reading the m anuscript critically; to the United States W eather Bureau and the M eteorological Department of Pakistan for furnishing meteorologic al data; and to the graduate students in the Entomology Department for cooperation during the course of these studies. VITA Ghulam-Ullah Chaudhry candidate for the degree of Doctor of Philosophy Final examination, Friday, July 13, 1951, 2:00 p.m ., 245 Natural Science Building. D issertation: The Development and Fecundity of the Oriental Fruit Moth, Grapholitha (Cydia) m olesta (Busck) under Controlled Tem peratures and Humidities. Outline of Studies: M ajor subject: Entomology. Minor subjects: Botany, Plant Pathology, Mycology, Horticulture, Statistics. Biographical Items: Born, January 13, 1913, Hoshiarpur, India. Undergradeate Studies, University of the Panjab, 1929-33. Graduate Studies, Indian A gricultural Research Institute, New De1hi, 1936-42 and 1947. Michigan State College, East Lansing, 1949-51. Experience i. Locust Research A ssistant, 1933-34. ii. Field A ssistant (Cotton), 1934-36. iii. A ssistant to the Im perial Entomologist, 1936-42. iv. Locust Technical officer, 1942-44. v. Entomologist, Baluchistan State, 1944-47. vi. Technical Officer, Bureau of Plant P ro­ tection and Quarantine, India, 1947. vii. A ssistant Plant Protection Entomologist, Dept, of Plant Protection and Quar­ antine, Pakistan, 1947-49. THE DEVELOPMENT AND FECUNDITY OF THE ORIENTAL FRUIT MOTH, GRAPHOLITHA (CYDIA) MOLESTA (BUSCK) UNDER CONTROLLED TEMPERATURES AND HUMIDITIES By GHULAM-ULLAH CHAUDHRY AN ABSTRACT Submitted to the School of Graduate Studies of Michigan State College of Agriculture and Applied Science in partial fulfillment of the requirem ents for the degree of DOCTOR OF PHILOSOPHY Department of Entomology Year 1951 Approve d_ GHULAM-ULLAH CHAUDHRY ABSTRACT The development and fecundity of the oriental fruit moth, Grapholitha (Cydia) m olesta (Busck) was studied under several controlled tem peratures of 50. 5° to 95° F. and relative humid­ ities of 35%, 70% and 100%. The optimum range of tem per­ ature for this insect was 75°-85° F. It could develop at 95° F. under high humidities only. The incubation period was lowest under 70% relative humidity at tem peratures of 65° to 95° F. At low tem peratures of 50.5° and 60° F. the eggs developed best under 100% relative humidity. The eggs tol­ erated an exposure of forty hours to 98° F. and twenty-one hours to 105° F ., but their incubation period increased by 24-40 hours as compared to those kept throughout at an opti­ mum tem perature. o o The threshold of development for eggs was 40 and 44 F .; for pupae 46.5° and 52.5° F. under relative humidities of 100% and 35%, respectively. For larvae it was 43.5° F. The eggs and pupae can develop at lower tem peratures when exposed to high humidity than under low humidity. The larvae of the fruit moth entered into a short dia­ pause for a period of 31 to 60 days and into a long diapause vi GHULAM-UL L.AH CHAUDHRY ABSTRACT 1 of over 60 days during September to November, 1950, under various conditions of tem perature and humidity. A substan­ tially larger number of larvae entered into and completed their long diapause when the relative humidity to which they were exposed during the cocoon period was high enough. Generally out of the total number of moths emerging at various tem pera­ tures about 50%, 33% and 0.0% moths em erged from the long cycle larvae under relative humidities of 100%, 70% and 35%, respectively. This adaptation ensures greater survival for this species in regions where a high humidity of 80-90% pre­ vails in late sum m er and fall. Photoperiodism did not affect the induction or duration of larval diapause as the larvae went into hibernation even when grown in darkness. The real cause which initiates diapause may be inherent. The viability of the pupae was usually highest under saturated atm osphere. The moths laid m ore eggs if their preim aginal life had been under higher humidities. The present distribution of the oriental fruit moth in tem perate regions appears to be governed by relative humidity. vii GHULAM-ULLAH CHAUDHRY ABSTRACT In humid areas the insect is m ore abundant than in dry areas. This difference is explained here by the influence of relative humidity on its development and on the successful completion of larval diapause; higher humidities favouring this insect and lower hum idities affecting its biotic potential adversely. TABLE OF CONTENTS Page I. IN TRO D U CTIO N .......................................................... 1 II. TECHNIQUE AND M ETHODS................................ 6 III. NOMENCLATURE AND DESCRIPTION OF S P E C IE S ............................................................... 10 IV. DEVELOPMENT AND VIABILITY OF GRAPHOLITHA M O L E S T A ................................ 17 •»> 1. Egg S t a g e ........................................................... 18 (a) Effect of tem perature on d e v elo p m e n t............................................. 18 (i) Incubation p e rio d ................................ 18- (ii) Threshold of development . . . 20 . (iii) Upper vital l i m i t ................................ 26 (b) Effect of humidity on development of e g g s .......................................................... 29 (c) Effect of tem perature and humidity on v ia b ility .......................... 30 2. Larval S t a g e .................................................... 35 ix Page (a) Effect of tem perature on d e v elo p m e n t............................................. 35 (i) D u ra tio n ................................. 35 (ii) Threshold of development . . . 41 (b) Effect of tem perature on viability ................................................... 42 3. Pupal S ta g e ........................................ 43 (a) Effect of tem perature on d e v elo p m e n t........................... 45 (i) D u ratio n ................................... 45 (ii) Threshold of development . . . 55 (iii) Optimum and upper vital l i m i t s .................................. 56 (b) Effect of humidity on developm ent............................. 57 (c) Effect of tem perature and humidity on v ia b ility ........ 59 4. Larval D ia p a u s e ............................ 61 (a) Short Diapause ...................................... 65 (i) Effect of tem perature . . . . 65

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