二化螟水稻、茭白种群幼虫口器和触角及其感器扫描电镜观察

展开
  • 浙江省植物有害生物防控重点实验室省部共建国家重点实验室培育基地,浙江省农业科学院 植物保护与微生物研究所,杭州310021

网络出版日期: 2017-03-10

基金资助

浙江省自然科学基金资助项目(LY16C140006);浙江省博后基金资助项目(BSH1502055);浙江省公益性技术应用研究项目(2016C32G4010117)

Mouthparts and Antenna and Their Associated Sensilla of Rice and Water-oat Populations of the Striped Rice Borer(Chilo suppressalis

Expand
  • State Key Laboratory Breeding Base for Zhejiang Sustainable Pest and Disease Control, Institute of Plant Protection and Microbiology, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China
*Corresponding author,E-mail: chenjm63@163.com

Online published: 2017-03-10

摘要

目的 为明确二化螟不同寄主种群幼虫口器和触角及其感器,对上述结构的超微形态进行了观察。方法 选择二化螟水稻、茭白种群幼虫口器和触角及其感器为研究材料,利用扫描电子显微镜进行观察。结果 表明,二化螟两种群梗节具2个刺形感器、3个锥形感器;上唇具6对刺形感器;上颚切齿叶具7个端齿,基外侧具2个刺形感器;轴节和茎节各具1个刺形感器;外颚叶具3个锥形感器、2个刺形感器和2个栓锥感器;下颚须侧缘具1个指形感器;下唇须端部有1个刺形感器。两种群间鞭节和下颚须感器数目存在差异:茭白种群鞭节具1个栓锥感器和2个锥形感器,水稻种群则具1个栓锥感器和1个锥形感器;茭白种群下颚须具5个锥形感器和3个柱形感器,而水稻种群具4个锥形感器和4个柱形感器。在感器长度上,茭白种群部分龄期幼虫的部分刺形感器(分布于梗节、轴节、茎节)、锥形感器(分布于梗节、下颚须、外颚叶)、栓锥感器(分布于鞭节、外颚叶)显著长于水稻种群的相应感器。茭白种群(1~5龄)的部分柱形感器(分布于下颚须)、3~5龄幼虫部分刺形感器(分布于外颚叶)显著短于水稻种群的相应感器。

本文引用格式

钟海英, 张珏锋, 李芳, 陈建明 . 二化螟水稻、茭白种群幼虫口器和触角及其感器扫描电镜观察[J]. 中国水稻科学, 2017 , 31(2) : 195 -206 . DOI: 10.16819/j.1001-7216.2017.6120

Abstract

【Objective】In order to explore the ultramorphology in antennae and mouthparts and associated sensilla (especially the types, number and distribution) in different populations of Chilo suppressalis Walker, the two organs and their sensilla at different developmental stages were investigated.【Method】The antennae and mouthparts and associated sensilla of rice and water-oat populations of C. suppressalis were used as materials. We observed the organs with a scanning electron microscopy.【Result】The antennae, mouthparts and their associated sensilla varied with larval stage within populations. The two populations of C. suppressalis possessed the following characters: the pedicel was typically equipped with three sensilla basiconica and two sensilla chaetica; six pairs of sensilla chaetica were found on the labrum; the mandible bore seven incisor cusps distally, and carried two sensilla chaetica basally on its outer face; the cardo and stipes each possessed a sensillum chaeticum distally; three sensilla basiconica, two sensilla chaetica and two sensilla styloconica were observed on the galea; a sensillum digitiformium laterally was found on each maxillary palpus; and sensillum chaeticum were observed on the distal of each labial palpus. Difference in sensillum number of flagellum and maxillary palpus between the two populations were as follows: flagellum of the water-oat population was equipped with a sensillum styloconicum and two sensilla basiconica, while the rice population possessed a sensillum styloconicum and a sensilla basiconica; maxillary palpus of the former was equipped with rive sensilla basiconica and three cylindrical sensilla, whereas four sensilla basiconica and four cylindrical sensilla were carried in the latter. Some sensilla chaetica (located at the pedicel, cardo, stipes), sensilla basiconica (distributed at the pedicel, maxillary palpus and galea), sensilla styloconica (distributed at the flagellum and galea) of water-oat population were significantly longer than those of the rice population; whereas some cylindrical sensilla (located at the maxillary palpus) of 1st- to 5th-instar larvae, and sensilla chaetica (distributed at the galea) of 3rd- to 5th-instar larvae were significantly shorter than those of the rice population.

参考文献

[1] Chapman R F.The insects: Structure and Function. Cambridge: Cambridge University Press, 1998: 1-770.
[2] Zacharuk R Y.Ultrastructure and function of insect chem osensilla.Annu Rev Entomol, 1980, 25(1): 27-47.
[3] Städler E, Renwick J A A, Radke C D. Tarsal contact chemoreceptor response to glucosinolates and cardenolides mediating oviposition in Pieris rape. Physiol Entomol, 1995, 20(2): 175-187.
[4] 汪信庚, 程家安. 二化螟滞育的研究. 浙江农业大学学报, 1993, 19(2): 170-174.
[4] Wang X G, Chen J A.Study on diapause of the striped rice borer (Chilo suppressalis Walker). J Zhejiang Agric Univ, 1993, 19(2): 170-174.
[5] Muralidharan K, Pasalu I C.Assessments of crop losses in rice ecosystems due to stem borer damage (Lepidoptera: Pyralidae).Crop Prot, 2006, 25(5): 409-417.
[6] 孙丽娟, 戴华国, 衣维贤, 陆永钦. 二化螟水稻类群与茭白类群成虫羽化节律和交配节律研究. 昆虫知识, 2002, 39(6): 421-423.
[6] Sun L J, Dai H G, Yi W X, Lu Y Q.The adult emergence rhythm and mating rhythm of rice host population and water-oats host population of the rice stem borer,Chilo suppressalis. Entomol Knowl, 2002, 39(6): 421-423.
[7] Matsukura K, Hoshizaki S, Ishikawa Y, et al.Differences in timing of the emergence of the overwintering generation between rice and water-oats populations of the striped stem borer moth,Chilo suppressalis(Lepidoptera: Crambidae). Appl Entomol Zool, 2009, 44(3): 485-489.
[8] 徐红星, 俞晓平, 吕仲贤, 陈建明, 郑许松, 陶林勇,卜卫良. 水稻田和茭白田越冬代二化螟成虫习性研究. 浙江农业学报, 2001, 13(3): 157-160.
[8] Xu H X, Yu X P, Lu Z X, Chen JM, Zheng X S, Tao LY, Bu W L.Study on the biology of over-wintered striped stem borer,Chilo suppressalis (Walker). Acta Agric Zhejiangensis, 2001, 13(3): 157-160.
[9] 俞晓平, 徐红星, 吕仲贤, 陈建明, 郑许松, 陶林勇. 水稻田和茭白田二化螟的比较研究. 生态学报, 2002, 22(3): 341-345.
[9] Yu X P, Xu H X, Lu Z X, Chen J M, Zheng X S, Tao L Y.Differentiation of striped stem borer (SSB),Chilo suppressalis Walker from rice and Zizania caduciflora habitats. Acta Ecolo Sin, 2002, 22(3): 341-345.
[10] 陈建明, 俞晓平, 郑许松, 徐红星, 吕仲贤, 张珏锋. 二化螟取食茭白和水稻后生物学特征表现的比较. 浙江农业学报, 2003, 15(3): 139-143.
[10] Chen J M, Yu X P, Zheng X S, Xu H X, Lu Z X, Zhang J F.Biological performances of the striped stem borer,Chilo suppressalis Walker fed on Jiaobai, Zizania caduciflora, and rice plants. Acta Agric Zhejiangensis, 2003, 15(3): 139-143.
[11] 韩永强, 郝丽霞, 侯茂林. 北方稻田和茭白田二化螟越冬幼虫生物学特性的比较. 中国生态农业学报, 2009, 17(3): 541-544.
[11] Han Y Q, Hao L X, Hou M L.Comparison of overwintered bionomics ofChilo suppressalis larvae from paddy-rice field with those from water-oat field in North China. Chinese J Eco-Agric, 2009, 17(3): 541-544.
[12] Ueno H, Furukawa S, Tsuchida K.Difference in the time of mating activity between host-associated populations of the rice stem borer,Chilo suppressalis(Walker). Entomol Sci, 2006, 9(3): 255-259.
[13] Hou M L, Lin W, Han Y Q.Seasonal changes in supercooling points and glycerol content in overwintering larvae of the asiatic rice borer from rice and water-oat plants.Environ Entomol, 2009, 38(4): 1182-1188.
[14] Ding N, Dakub P, Zhu Q, Ma W, Zhu F, Wang X.A comparison of the larval overwintering biology of the striped stem borer,Chilo suppressalis(Lepidoptera: Crambidae), in rice and water-oat fields. Appl Entomol Zool, 2013, 48(2): 147-153.
[15] 全为礼, 丁楠, 周睿琦, 马伟华,王小平. 二化螟寄主种群及种群间生殖隔离形成机制研究. 环境昆虫学报, 2014, 36(4): 597-604.
[15] Quan W L, Ding N, Zhou R Q, Ma W, Wang X.Host-plant races and the reproductive isolation mechanisms involved in race formation in Chilo suppressalis.J Environ Entomol, 2014, 36(4): 597-604.
[16] 魏辉, 杨广, 王前梁, 侯有明, 尤民生. 小菜蛾幼虫头部化学感觉器电镜扫描观察. 福建农业大学学报, 2003, 32(4): 434-437.
[16] Wei H, Yang G, Wang Q L, Hou Y M, You M S.Electron microscope scanning of diamondback moth,Plutella xylostella L., J Fujian Agric Fores Univ(Nal Sci Ed), 2003, 32(4): 434-437.
[17] 谢建军, 钟国华, 陈新芳, 陈文团, 徐齐云, 胡美英. 亚洲玉米螟(Ostrinia furnacalis Guenéue)幼虫化学感受器种类与分布的形态学研究. 电子显微学报, 2006, 25(1): 71-75.
[17] Xie J J, Zhong G H, Chen X F, Chen W T, Xu Q Y, Hu M Y.Morphological studies on the location and classifying of chemoreceptors on the larva of Ostrinia furnacalis Guenée. J Chin Elect Micros Soc, 2006, 25(1): 71-75.
[18] Li J X, Wang J J, Deng W, Yang B, Li J, Liu H.Description of sensilla on the larval antennae and mouthparts of Spodoptera exigua(Hübner)(Lepidoptera, Noctuidae), Acta Zootaxonomica Sinica 2008, 33(3): 443-448.
[19] Wazalwar S M, Khurad A M.The mouth parts sensillae in the larvae of tasar silkworm,Antheraea mylitta(D)(Lepidoptera: Saturniidae). Sercologia2009, 49(1): 47-57.
[20] Liu Z, Hua B, Liu L.Ultrastructure of the sensilla on larval antennae and mouthparts in the peach fruit moth,Carposin sasakii Matsumura (Lepidoptera: Carposinidae). Micron, 2011, 42(5):478-483.
[21] Barsagade D D, Khurad A M, Chamat M V.Microscopic structure of mouth parts sensillae in the fifth instar larvae of eri silkworm, Philosamia ricini(Lepidoptera: Saturniidae). Jpn J Appl Entomol Zool, 2013, 1(3): 15-21.
[22] 周平, 赵盼盼, 曹霞, 高瑾, 巨云为. 山核桃透翅蛾幼虫头部感器扫描电镜观察. 植物保护, 2015, 41(4): 63-67.
[22] Zhou P, Zhao P P, Cao X, Gao J, Ju Y W.Observation of sensilla on the larval head of Sphecodoptera sheni by using scanning electron microscopy. Plant Protection, 2015, 41(4): 63-67.
[23] 向玉勇, 徐莉, 杨茂发, 李子忠. 金银花尺蠖幼虫头部化学感受器扫描电镜观察. 植物保护学报, 2016, 43(2): 288-292.
[23] Xiang Y Y, Xu L, Yang M F, Li Z Z.Observation on the larval head chemoreceptors of honeysuckle geometridHeterolocha jinyinhuaphaga Chu with scanning electron microscope. J Plant Protec, 2016, 43(2): 288-292.
[24] Euzébio D E, Martins G F, Fernandes-Salomão T M. Morphological and morphometric studies of the antennal sensilla from two populations ofAtta robusta(Borgmeier 1939)(Hymenoptera: Formicidae).Braz J Biol, 2013, 73(3): 663-668.
[25] Catalá S S, Maida D M, Caro-Riaño H, Jaramillo N, Moreno J.Changes associated with laboratory rearing in antennal sensilla patterns of Triatoma infestans, Rhodnius prolixus, and Rhodnius pallescens(Hemiptera, Reduviidae, Triatominae). Memórias do Instituto Oswaldo Cruz, 2004, 99(1): 25-30.
[26] Carreira VP, Soto I M, Hasson E, Fanara J J.Patterns of variation in wing morphology in the cactophilic Drosophila buzzatii and its sibling D. koepferae.J Evolution Biol, 2006, 19(4): 1275-1282.
[27] Marteleto P B, Lomônaco C, Kerr W.Respostas fisiológicas, morfológicas e comportamentais deZabrotes subfasciatus(Boheman).Neot Entomol 2009, 38(2): 178-185.
[28] Albert P J.Morphology and innervation of mouthpart sensilla in larvae of the spruce budworm,Choristoneura fumiferana(Clem.)(Lepidoptera: Tortricidae). Can J Zool 1980, 58(5): 842-851.
[29] 陈静, 花保祯. 山茱萸蛀果蛾幼虫触角和口器感器的超微形态. 昆虫学报, 2014, 57(1): 133-140.
[29] Chen J, Hua B Z.Ultramorphology of sensilla on the larval antennae and mouthparts ofCarposina coreana Kim(Lepidoptera: Carposinidae). Acta Entomologica Sinica, 2014, 57(1): 133-140.
[30] Song Y, Sun H, Wu J.Morphology of the sensilla of larval antennae and mouthparts of the oriental fruit moth, Grapholita molesta. B Insectol, 2014, 67(2): 193-198.
[31] Faucheux M J.Sensilla on the antennae, mouthparts, tarsi and ovipositor of the sunflower moth,Homoeosoma electellum(Hulster),(Lepidoptera, Pyralidae): A scanning electron microscopic study.Ann Sci Nat Zool. 1995, 16(4): 121-136.
[32] Keil T A.Sensilla on the maxillary palps of Helicoverpa armigera caterpillars: in search of the CO2 -receptor. Tissue Cell, 1996, 28(6): 703-717.
[33] Kent K S, Hildebrand J G. Cephalic sensory pathways in the centralnervous system of larval Manduca sexta(Lepidoptera: Sphingidae). Philos T R Soc B, 1987, 315(1168): l-36.
文章导航

/

浙ICP备05004719号-5
公安备案号:33010302003356
地址:浙江省杭州市富阳区水稻所路28号 邮编:311400 电话:0571-63370278 E-mail:cjrs@263.net
本系统由北京玛格泰克科技发展有限公司设计开发
总访问量: 今日访问: 在线人数: