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Development and Age-Specific Mortality of Diamondback Moth on Brassica Host Plants: Pattern and Causes of Mortality Under Laboratory Conditions

Identifieur interne : 000364 ( PascalFrancis/Curation ); précédent : 000363; suivant : 000365

Development and Age-Specific Mortality of Diamondback Moth on Brassica Host Plants: Pattern and Causes of Mortality Under Laboratory Conditions

Auteurs : Mahmoud Soufbaf [Iran] ; Yaghoub Fathipour [Iran] ; Javad Karimzadeh [Iran] ; Myron P. Zaluck [Iran, Australie]

Source :

RBID : Pascal:10-0359199

Descripteurs français

English descriptors

Abstract

The development and mortality of diamondback moth, Plutella xylostella (L.), were studied in laboratory at 25 ± 1°C, 65 ± 5% RH, and a photoperiod of 16:8 (L:D) h on 10 canola cultivars: 'SLM046,' 'Opera,' 'Okapi,' 'RGS003,' 'Modena,' 'Sarigol,' 'Zarfam,' 'Licord,' 'Hayula420,' and 'Talaye.' Larvae successfully survived on all host plants. The developmental time of immature stages ranged from 15.03 ± 0.15 d on Hayula420 to 16.65 ± 0.29 d on Opera, with a larval period ranging from 7.67 to 8.91 d on these cultivars. Adult female longevity was longest on Hayula420 without any supplemental food. Life table entropy values (H < 0.5) indicated Deevey's type I survivorship curve; however, the value of 0.541 on Hayula420 (H > 0.5) corresponded to type III. Major mortality parameters such as fraction of original cohort dying between successive days of age, death frequency (dx) of immature P. xylostella, average daily mortality (μ?x), and central death rate (mx) were evaluated on canola cultivars and indicated that the highest mx occurred on RGS003, with relatively low potential of population growth, on fifth day of life when the pest is in early larval stages (L1 and L2). The early instars are the most susceptible stages and suffer the highest cause-specific mortality under laboratory conditions.
pA  
A01 01  1    @0 0013-8746
A02 01      @0 AESAAI
A03   1    @0 Ann. Entomol. Soc. Am.
A05       @2 103
A06       @2 4
A08 01  1  ENG  @1 Development and Age-Specific Mortality of Diamondback Moth on Brassica Host Plants: Pattern and Causes of Mortality Under Laboratory Conditions
A11 01  1    @1 SOUFBAF (Mahmoud)
A11 02  1    @1 FATHIPOUR (Yaghoub)
A11 03  1    @1 KARIMZADEH (Javad)
A11 04  1    @1 ZALUCK (Myron P.)
A14 01      @1 Department of Entomology, Faculty of Agriculture, Tarbiat Modares University @2 Tehran @3 IRN @Z 1 aut. @Z 2 aut. @Z 4 aut.
A14 02      @1 Insect Population Ecology Laboratory, Department of Agricultural Entomology, Iranian Research Institute of Plant Protection @2 Tehran @3 IRN @Z 3 aut.
A14 03      @1 School of Biological Sciences, The University of Queensland @2 St. Lucia, QLD 4072 @3 AUS @Z 4 aut.
A20       @1 574-579
A21       @1 2010
A23 01      @0 ENG
A43 01      @1 INIST @2 3067 @5 354000194698090130
A44       @0 0000 @1 © 2010 INIST-CNRS. All rights reserved.
A45       @0 1/2 p.
A47 01  1    @0 10-0359199
A60       @1 P
A61       @0 A
A64 01  1    @0 Annals of the Entomological Society of America
A66 01      @0 USA
C01 01    ENG  @0 The development and mortality of diamondback moth, Plutella xylostella (L.), were studied in laboratory at 25 ± 1°C, 65 ± 5% RH, and a photoperiod of 16:8 (L:D) h on 10 canola cultivars: 'SLM046,' 'Opera,' 'Okapi,' 'RGS003,' 'Modena,' 'Sarigol,' 'Zarfam,' 'Licord,' 'Hayula420,' and 'Talaye.' Larvae successfully survived on all host plants. The developmental time of immature stages ranged from 15.03 ± 0.15 d on Hayula420 to 16.65 ± 0.29 d on Opera, with a larval period ranging from 7.67 to 8.91 d on these cultivars. Adult female longevity was longest on Hayula420 without any supplemental food. Life table entropy values (H < 0.5) indicated Deevey's type I survivorship curve; however, the value of 0.541 on Hayula420 (H > 0.5) corresponded to type III. Major mortality parameters such as fraction of original cohort dying between successive days of age, death frequency (dx) of immature P. xylostella, average daily mortality (μ?x), and central death rate (mx) were evaluated on canola cultivars and indicated that the highest mx occurred on RGS003, with relatively low potential of population growth, on fifth day of life when the pest is in early larval stages (L1 and L2). The early instars are the most susceptible stages and suffer the highest cause-specific mortality under laboratory conditions.
C02 01  X    @0 002A12J01
C03 01  X  FRE  @0 Développement @5 01
C03 01  X  ENG  @0 Development @5 01
C03 01  X  SPA  @0 Desarrollo @5 01
C03 02  X  FRE  @0 Age @5 02
C03 02  X  ENG  @0 Age @5 02
C03 02  X  SPA  @0 Edad @5 02
C03 03  X  FRE  @0 Mortalité @5 03
C03 03  X  ENG  @0 Mortality @5 03
C03 03  X  SPA  @0 Mortalidad @5 03
C03 04  X  FRE  @0 Plante hôte @5 04
C03 04  X  ENG  @0 Host plant @5 04
C03 04  X  SPA  @0 Planta huesped @5 04
C03 05  X  FRE  @0 Etude en laboratoire @5 05
C03 05  X  ENG  @0 Laboratory study @5 05
C03 05  X  SPA  @0 Estudio en laboratorio @5 05
C03 06  X  FRE  @0 Plutella xylostella @2 NS @5 55
C03 06  X  ENG  @0 Plutella xylostella @2 NS @5 55
C03 06  X  SPA  @0 Plutella xylostella @2 NS @5 55
C03 07  X  FRE  @0 Brassica @2 NS @5 56
C03 07  X  ENG  @0 Brassica @2 NS @5 56
C03 07  X  SPA  @0 Brassica @2 NS @5 56
C07 01  X  FRE  @0 Plutellidae @2 NS
C07 01  X  ENG  @0 Plutellidae @2 NS
C07 01  X  SPA  @0 Plutellidae @2 NS
C07 02  X  FRE  @0 Lepidoptera @2 NS
C07 02  X  ENG  @0 Lepidoptera @2 NS
C07 02  X  SPA  @0 Lepidoptera @2 NS
C07 03  X  FRE  @0 Insecta @2 NS
C07 03  X  ENG  @0 Insecta @2 NS
C07 03  X  SPA  @0 Insecta @2 NS
C07 04  X  FRE  @0 Arthropoda @2 NS
C07 04  X  ENG  @0 Arthropoda @2 NS
C07 04  X  SPA  @0 Arthropoda @2 NS
C07 05  X  FRE  @0 Invertebrata @2 NS
C07 05  X  ENG  @0 Invertebrata @2 NS
C07 05  X  SPA  @0 Invertebrata @2 NS
C07 06  X  FRE  @0 Cruciferae @2 NS
C07 06  X  ENG  @0 Cruciferae @2 NS
C07 06  X  SPA  @0 Cruciferae @2 NS
C07 07  X  FRE  @0 Dicotyledones @2 NS
C07 07  X  ENG  @0 Dicotyledones @2 NS
C07 07  X  SPA  @0 Dicotyledones @2 NS
C07 08  X  FRE  @0 Angiospermae @2 NS
C07 08  X  ENG  @0 Angiospermae @2 NS
C07 08  X  SPA  @0 Angiospermae @2 NS
C07 09  X  FRE  @0 Spermatophyta @2 NS
C07 09  X  ENG  @0 Spermatophyta @2 NS
C07 09  X  SPA  @0 Spermatophyta @2 NS
N21       @1 228
N44 01      @1 OTO
N82       @1 OTO

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Pascal:10-0359199

Le document en format XML

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<div type="abstract" xml:lang="en">The development and mortality of diamondback moth, Plutella xylostella (L.), were studied in laboratory at 25 ± 1°C, 65 ± 5% RH, and a photoperiod of 16:8 (L:D) h on 10 canola cultivars: 'SLM
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,' 'Opera,' 'Okapi,' 'RGS
<sub>003</sub>
,' 'Modena,' 'Sarigol,' 'Zarfam,' 'Licord,' 'Hayula
<sub>420</sub>
,' and 'Talaye.' Larvae successfully survived on all host plants. The developmental time of immature stages ranged from 15.03 ± 0.15 d on Hayula
<sub>420</sub>
to 16.65 ± 0.29 d on Opera, with a larval period ranging from 7.67 to 8.91 d on these cultivars. Adult female longevity was longest on Hayula
<sub>420</sub>
without any supplemental food. Life table entropy values (H < 0.5) indicated Deevey's type I survivorship curve; however, the value of 0.541 on Hayula
<sub>420</sub>
(H > 0.5) corresponded to type III. Major mortality parameters such as fraction of original cohort dying between successive days of age, death frequency (d
<sub>x</sub>
) of immature P. xylostella, average daily mortality (μ?
<sub>x</sub>
), and central death rate (m
<sub>x</sub>
) were evaluated on canola cultivars and indicated that the highest m
<sub>x</sub>
occurred on RGS
<sub>003</sub>
, with relatively low potential of population growth, on fifth day of life when the pest is in early larval stages (L1 and L2). The early instars are the most susceptible stages and suffer the highest cause-specific mortality under laboratory conditions.</div>
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<s0>The development and mortality of diamondback moth, Plutella xylostella (L.), were studied in laboratory at 25 ± 1°C, 65 ± 5% RH, and a photoperiod of 16:8 (L:D) h on 10 canola cultivars: 'SLM
<sub>046</sub>
,' 'Opera,' 'Okapi,' 'RGS
<sub>003</sub>
,' 'Modena,' 'Sarigol,' 'Zarfam,' 'Licord,' 'Hayula
<sub>420</sub>
,' and 'Talaye.' Larvae successfully survived on all host plants. The developmental time of immature stages ranged from 15.03 ± 0.15 d on Hayula
<sub>420</sub>
to 16.65 ± 0.29 d on Opera, with a larval period ranging from 7.67 to 8.91 d on these cultivars. Adult female longevity was longest on Hayula
<sub>420</sub>
without any supplemental food. Life table entropy values (H < 0.5) indicated Deevey's type I survivorship curve; however, the value of 0.541 on Hayula
<sub>420</sub>
(H > 0.5) corresponded to type III. Major mortality parameters such as fraction of original cohort dying between successive days of age, death frequency (d
<sub>x</sub>
) of immature P. xylostella, average daily mortality (μ?
<sub>x</sub>
), and central death rate (m
<sub>x</sub>
) were evaluated on canola cultivars and indicated that the highest m
<sub>x</sub>
occurred on RGS
<sub>003</sub>
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</fC03>
<fC03 i1="06" i2="X" l="ENG">
<s0>Plutella xylostella</s0>
<s2>NS</s2>
<s5>55</s5>
</fC03>
<fC03 i1="06" i2="X" l="SPA">
<s0>Plutella xylostella</s0>
<s2>NS</s2>
<s5>55</s5>
</fC03>
<fC03 i1="07" i2="X" l="FRE">
<s0>Brassica</s0>
<s2>NS</s2>
<s5>56</s5>
</fC03>
<fC03 i1="07" i2="X" l="ENG">
<s0>Brassica</s0>
<s2>NS</s2>
<s5>56</s5>
</fC03>
<fC03 i1="07" i2="X" l="SPA">
<s0>Brassica</s0>
<s2>NS</s2>
<s5>56</s5>
</fC03>
<fC07 i1="01" i2="X" l="FRE">
<s0>Plutellidae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="01" i2="X" l="ENG">
<s0>Plutellidae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="01" i2="X" l="SPA">
<s0>Plutellidae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="FRE">
<s0>Lepidoptera</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="ENG">
<s0>Lepidoptera</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="SPA">
<s0>Lepidoptera</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="FRE">
<s0>Insecta</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="ENG">
<s0>Insecta</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="SPA">
<s0>Insecta</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="FRE">
<s0>Arthropoda</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="ENG">
<s0>Arthropoda</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="SPA">
<s0>Arthropoda</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="05" i2="X" l="FRE">
<s0>Invertebrata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="05" i2="X" l="ENG">
<s0>Invertebrata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="05" i2="X" l="SPA">
<s0>Invertebrata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="06" i2="X" l="FRE">
<s0>Cruciferae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="06" i2="X" l="ENG">
<s0>Cruciferae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="06" i2="X" l="SPA">
<s0>Cruciferae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="07" i2="X" l="FRE">
<s0>Dicotyledones</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="07" i2="X" l="ENG">
<s0>Dicotyledones</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="07" i2="X" l="SPA">
<s0>Dicotyledones</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="08" i2="X" l="FRE">
<s0>Angiospermae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="08" i2="X" l="ENG">
<s0>Angiospermae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="08" i2="X" l="SPA">
<s0>Angiospermae</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="09" i2="X" l="FRE">
<s0>Spermatophyta</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="09" i2="X" l="ENG">
<s0>Spermatophyta</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="09" i2="X" l="SPA">
<s0>Spermatophyta</s0>
<s2>NS</s2>
</fC07>
<fN21>
<s1>228</s1>
</fN21>
<fN44 i1="01">
<s1>OTO</s1>
</fN44>
<fN82>
<s1>OTO</s1>
</fN82>
</pA>
</standard>
</inist>
</record>

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