Quantification and Localization of Watermelon Chlorotic Stunt Virus and Tomato Yellow Leaf Curl Virus (Geminiviridae) in Populations of Bemisia tabaci (Hemiptera, Aleyrodidae) with Differential Virus Transmission Characteristics

被引:25
作者
Kollenberg, Mario [1 ]
Winter, Stephan [1 ]
Goetz, Monika [1 ]
机构
[1] Leibniz Inst DSMZ German Collect Microorganisms &, Plant Virus Dept, Braunschweig, Germany
关键词
CIRCULATIVE TRANSMISSION; WHITEFLY-TRANSMISSION; ENDOSYMBIOTIC BACTERIA; SARDINIA-VIRUS; SWEET-POTATO; RAPID SPREAD; HOST-RANGE; B-BIOTYPE; VECTOR; PLANT;
D O I
10.1371/journal.pone.0111968
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Bemisia tabaci (Gennadius) is one of the economically most damaging insects to crops in tropical and subtropical regions. Severe damage is caused by feeding and more seriously by transmitting viruses. Those of the genus begomovirus (Geminiviridae) cause the most significant crop diseases and are transmitted by B. tabaci in a persistent circulative mode, a process which is largely unknown. To analyze the translocation and to identify critical determinants for transmission, two populations of B. tabaci MEAM1 were compared for transmitting Watermelon chlorotic stunt virus (WmCSV) and Tomato yellow leaf curl virus (TYLCV). Insect populations were chosen because of their high and respectively low virus transmission efficiency to compare uptake and translocation of virus through insects. Both populations harbored Rickettsia, Hamiltonella and Wolbachia in comparable ratios indicating that endosymbionts might not contribute to the different transmission rates. Quantification by qPCR revealed that WmCSV uptake and virus concentrations in midguts and primary salivary glands were generally higher than TYLCV due to higher virus contents of the source plants. Both viruses accumulated higher in insects from the efficiently compared to the poorly transmitting population. In the latter, virus translocation into the hemolymph was delayed and virus passage was impeded with limited numbers of viruses translocated. FISH analysis confirmed these results with similar virus distribution found in excised organs of both populations. No virus accumulation was found in the midgut lumen of the poor transmitter because of a restrained virus translocation. Results suggest that the poorly transmitting population comprised insects that lacked transmission competence. Those were selected to develop a population that lacks virus transmission. Investigations with insects lacking transmission showed that virus concentrations in midguts were reduced and only negligible virus amounts were found at the primary salivary glands indicating for a missing or modified receptor responsible for virus attachment or translocation.
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页数:12
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共 85 条
[1]   Discrimination of cassava-associated Bemisia tabaci in Africa from polyphagous populations, by PCR-RFLP of the internal transcribed spacer regions of ribosomal DNA [J].
Abdullahi, I ;
Atiri, GI ;
Thottappilly, G ;
Winter, S .
JOURNAL OF APPLIED ENTOMOLOGY, 2004, 128 (02) :81-87
[2]   Watermelon chlorotic stunt virus (WmCSV): a serious disease threatening watermelon production in Jordan [J].
Al-Musa, A. ;
Anfoka, G. ;
Al-Abdulat, A. ;
Misbeh, S. ;
Ahmed, F. Haj ;
Otri, I. .
VIRUS GENES, 2011, 43 (01) :79-89
[3]   Host range of an Iranian isolate of Watermelon chlorotic stunt virus as determined by whitefly-mediated inoculation and agroinfection, and its geographical distribution [J].
Bananej, K ;
Ahoonmanesh, A ;
Kheyr-Pour, A .
JOURNAL OF PHYTOPATHOLOGY-PHYTOPATHOLOGISCHE ZEITSCHRIFT, 2002, 150 (8-9) :423-430
[4]   Biology of bacteriocyte-associated endosymbionts of plant sap-sucking insects [J].
Baumann, P .
ANNUAL REVIEW OF MICROBIOLOGY, 2005, 59 :155-189
[5]   DIFFERENTIATION OF 3 WHITEFLY-TRANSMITTED GEMINIVIRUSES FROM THE-REPUBLIC-OF-YEMEN [J].
BEDFORD, ID ;
BRIDDON, RW ;
JONES, P ;
ALKAFF, N ;
MARKHAM, PG .
EUROPEAN JOURNAL OF PLANT PATHOLOGY, 1994, 100 (3-4) :243-257
[6]   The Endosymbiotic Bacterium Wolbachia Induces Resistance to Dengue Virus in Aedes aegypti [J].
Bian, Guowu ;
Xu, Yao ;
Lu, Peng ;
Xie, Yan ;
Xi, Zhiyong .
PLOS PATHOGENS, 2010, 6 (04) :1-10
[7]   Characterization of a Newly Discovered Symbiont of the Whitefly Bemisia tabaci (Hemiptera: Aleyrodidae) [J].
Bing, Xiao-Li ;
Yang, Jiao ;
Zchori-Fein, Einat ;
Wang, Xiao-Wei ;
Liu, Shu-Sheng .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2013, 79 (02) :569-575
[8]   Interactions between a luteovirus and the GroEL chaperonin protein of the symbiotic bacterium Buchnera aphidicola of aphids [J].
Bouvaine, Sophie ;
Boonham, Neil ;
Douglas, Angela E. .
JOURNAL OF GENERAL VIROLOGY, 2011, 92 :1467-1474
[9]   Electron microscopy studies on luteovirid transmission by aphids [J].
Brault, Veronique ;
Herrbach, Etienne ;
Reinbold, Catherine .
MICRON, 2007, 38 (03) :302-312
[10]   THE SWEET-POTATO OR SILVERLEAF WHITEFLIES - BIOTYPES OF BEMISIA-TABACI OR A SPECIES COMPLEX [J].
BROWN, JK ;
FROHLICH, DR ;
ROSELL, RC .
ANNUAL REVIEW OF ENTOMOLOGY, 1995, 40 :511-534