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粗纹举腹蚁蚁巢解剖及其数学建模 被引量:1

Mathematical modeling of nest populations of the ant Crematogaster macaoensis
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摘要 为了弄清与排泄蜜露的昆虫有密切关系的粗纹举腹蚁Crematogaster macaoensis Wheeler的生物学特性,于2009年8月至2010年7月在云南省墨江县雅邑乡紫胶园采集并调查了42个粗纹举腹蚁蚁巢。粗纹举腹蚁蚁巢类型为层纸巢,灰黑色,筑于紫胶虫寄主植物树干的中上部,由干枯树叶、杂草、碎屑和蚁分泌物粘结而成;巢内疏松,蚁道纵横交错;单蚁后制,工蚁单型;平均每巢的蚁后、繁殖雌蚁、雄蚁和工蚁的数量分别为(1.00±0.00)头,(488.75±242.59)头,(3 096.86±2 923.75)头和(40 839.07±8 597.98)头;卵、幼虫和蛹的数量分别为(9 936.60±2 448.62)粒,(3 214.83±781.71)头和(4 582.00±656.07)个。粗纹举腹蚁蚁巢体积和每巢工蚁数量的计算公式分别为:V=0.365×(43×πabc)1.056和WN=135.236×V0.660(式中V代表蚁巢体积,a、b、c分别代表蚁巢的长半径、短半径和极半径,WN代表工蚁数量)。这两个公式为监测粗纹举腹蚁的种群数量变化提供了一种手段。 In order to reveal the biological characteristics of ant Crematogaster macaoensis Wheeler, which has a close relation with excreting honeydew insects, the nests of the ant C. macaoensis were investigated in a lac plantation in Yayi Town of Mojiang County, Yunnan Province. Forty-two nests were collected from August 2009 to July 2010. C. macaoensis built their nests with leaf and stick debris on branches of the host plant of lac insect. The color of nest is grey black, the inner structure is loose and ant way is criss-cross. Each nest was divided into small pieces for counting the numbers of each caste and developing stages. The results showed that the average number of queens, winged females, males and workers in each nest were 1.00±0.00, 488.75±242.59, 3 096.86±2 923.75 and 40 839.07±8 597.98, respectively. While the developing stages of eggs, larvae and pupae were 9 936.60±2 448.62, 3 214.83±781.71 and 4 582.00±656.07, respectively. Thus the total number of ant population in each nest was 58250.31±10469.50. Two mathematical models (namely nest volume of C. macaoensis and the numbers of workers) were established to predict C. macaoensis population dynamics. The calculation formula were: V=0.365×( ×πabc)1.056 and WN=135.236×V0.660. (Where V was the nest volume. a, b, c were long radius, short radius and extremely radius, respectively. WN was the numbers of workers.). With these two models, the numbers of workers in each nest could be estimated by measuring the long radius, short radius and extremely radius of the nest.
出处 《应用昆虫学报》 CAS CSCD 北大核心 2013年第5期1405-1412,共8页 Chinese Journal of Applied Entomology
基金 "十二五"科技支撑课题(2011BAD33B02)
关键词 举腹蚁 蚁巢 结构特征 模型 紫胶虫 Crematogaster macaoensis, nest, physical features, model, lac insect
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参考文献19

  • 1Bhattacharya A, Kumar S, Jaiswal AK, 2007. Evaluation of trichogramma species for the suppression of lepidopteran insect predator, Eublemma amabilis Moore, in lac culture on Flemingia macrophylla. J. Biol. Control. , 2l (2) :267 - 270.
  • 2Bourke AFG, Franks NR, 1995. Social Evolution in Ants. New Jersey:Princeton University Press. 529.
  • 3Buckley RC, 1987. Ant-plant-homopteran interactions. Adv. Ecol. Res. , 16:53 -85.
  • 4Eastwood R, 2004. Successive replacement of tending ant species at aggregations of scale insects (Hemiptera: Margarodidae and Eriococcidae) on Eucalyptus in south-east Queensland. Aast. J. Entomol. , 43 : 1 - 4.
  • 5Elmes GW, Clarke RT, Thomas JA, Hochberg ME, 1996. Empirical tests of specific predictions made from a spatial model of the population dynamics of Maculinea rebeli, a parasitic butterfly of red ant colonies. Acta. Ecologica. , 17 (1) :61 -80.
  • 6Franks NR, Deneubourg JL, 1997. Self-organizing nest construction in ants: individual worker behaviour and the nest' s dynamics. Anita. Behav. , 54:779 - 796.
  • 7Hlldobler B, Wilson EO, 1990. The Ants. Berlin:Springer Verlag Press. 732.
  • 8Oliveira PS, Del-Claro K, 2005. Muhitrophic interactions in a neotropical savanna: Ant-hemipteran systems, associated insect herbivores, and a host plant. Biotic Interactions inthe Tropics. Their Role in the Maintenance of Species Diversity. Cambridge University Press. 414 -438.
  • 9Pemberton RW, 2003. Potential for biological control of the lobate lac scale, Paratachardina labata labata ( Hemiotera : Kerriidae). Fla. Entomol. , 86 (3) :353 - 360.
  • 10Perfecto I, Vandermeer J, 2006. The effect of an ant- hemipteran mutualism on the coffee beery borer ( Hypothenemus hampei) in southern Mexico. Agr. Ecosyst. Environ. , 117:218 - 221.

二级参考文献21

  • 1陈又清,王绍云.紫胶虫的有效性比[J].生态学杂志,2006,25(5):531-534. 被引量:4
  • 2陈又清,王绍云.蚂蚁和紫胶蚧互利关系中的行为机制[J].生态学杂志,2006,25(6):663-666. 被引量:8
  • 3张慧杰,段国琪,张战备,王晓民,王娇娟,张丽萍.烟粉虱成虫的昼夜时空动态及空间格局[J].应用与环境生物学报,2005,11(1):55-58. 被引量:13
  • 4陈又清,王绍云.不同寄主植物对云南紫胶虫自然种群的影响[J].应用生态学报,2007,18(4):761-765. 被引量:13
  • 5[2]Auclair JL.1963.Aphid feeding and nutrition[J].Annu.Rev.Entomol.,8:439~490.
  • 6[3]Bristow CW.1983.Treehoppers transfer parental care to ants:A new benefit of mutualism[J].Science,220:532~533.
  • 7[4]Buckley RC.1987.Interactions involving plants,Homoptera,and ants[J].Annu.Rev.Ecol.Syst.,18:111~138.
  • 8[5]Cushman JH,Addicott JF.1989.Intra-and interspecific competition for mutualism:Ants as a limiting resource for aphid[J].Oecologia,79:315~ 321.
  • 9[6]Cushman JH,Whitham TG.1989.Conditional mutualism in a membracid-ant association:Temporal,age-specific,and density dependent effects[J].Ecology,70:1040~1047.
  • 10[7]Douglas JM,Sudd JH.1980.Behavioral co-ordination between an aphid and the ant than tends it:An ethological analysis[J].Anim.Behav.,28:1127~1139.

共引文献15

同被引文献28

  • 1Soares S M, Schoereder J H. Ant-nest distribution in a remnant of tropical rainforest in southeastern Brazil [ J ]. Insectes Socianx, 2001,48(3) : 280 -286.
  • 2Cushman J H, Martinsen G D, Mazeroll A I. Density and size-de- pendent spacing of ant nests: evidence for intraspecific competition [J]. Oecologia, 1988, 77(4) : 522 -525.
  • 3Deslippe R J, Savolainen R. Mechanisms of competition in a guild of formicine ants[J]. Oikos, 1995, 72( 1 ) : 67 -73.
  • 4Fern6ndez-Escudero I, Tinant A. Factors determining nest distribu- tion in the high-mountain ant Proformica longiseta (Hymenoptera Formicidae) [ J]. Ethology Ecology & Evolution, 1999, 11 (4) :325 - 338.
  • 5Herbers J M. Structure of an Australian ant community with compari- sons to North American counterparts (Hymenoptera: Formieidae ) [J]. Sociobiology, 1994, 24(3): 293-306.
  • 6Doncaster C P. The spatial distribution of ants" nests on Ramsey Is- land, South Wales[J]. The Journal of Animal Ecology, 1981, 50 (1) : 195 -218.
  • 7Levings S C. Seasonal, annual, and among-site variation in the ground ant community of a deciduous tropical forest: some causes of patchy species distributions[ J]. Ecological Monographs, 1983, 53 (4) : 435 - 455.
  • 8Stadler B, Dixon A F G. Ecology and evolution of aphid-ant interac- tions[J]. Annual Review of Ecology, Evolution, and Systematics, 2005, 20(36) : 345 -372.
  • 9Styrsky J I), Eubanks M D. Ecological consequences of interactions between ants and honeydew-producing insects [ J ]. Proceedings of the Royal Society B: Biological Sciences, 2007, 274( 1607 ) : 151 -164.
  • 10Peng R K, Christian K. The weaver ant, Oecophylla smaragdina (Hymenoptera: Formicidae), an effective biological control agent of the red-banded thfips, Selenothrips rubrocinctus ( Thysanoptera: Thripidae) in mango crops in the Northern Territory of Australia [J]. International Journal of Pest Management, 2004, 50 (2) : 107 - 114.

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