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A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector

It is known that plant viruses can change the performance of their vectors. However, there have been no reports on whether or how a semipersistent plant virus manipulates the feeding behaviors of its whitefly vectors. Cucurbit chlorotic yellows virus (CCYV) (genus Crinivirus, family Closteroviridae)...

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Autores principales: Lu, Shaohua, Li, Jingjing, Wang, Xueli, Song, Danyang, Bai, Rune, Shi, Yan, Gu, Qinsheng, Kuo, Yen-Wen, Falk, Bryce W., Yan, Fengming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5294973/
https://www.ncbi.nlm.nih.gov/pubmed/28098749
http://dx.doi.org/10.3390/v9010004
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author Lu, Shaohua
Li, Jingjing
Wang, Xueli
Song, Danyang
Bai, Rune
Shi, Yan
Gu, Qinsheng
Kuo, Yen-Wen
Falk, Bryce W.
Yan, Fengming
author_facet Lu, Shaohua
Li, Jingjing
Wang, Xueli
Song, Danyang
Bai, Rune
Shi, Yan
Gu, Qinsheng
Kuo, Yen-Wen
Falk, Bryce W.
Yan, Fengming
author_sort Lu, Shaohua
collection PubMed
description It is known that plant viruses can change the performance of their vectors. However, there have been no reports on whether or how a semipersistent plant virus manipulates the feeding behaviors of its whitefly vectors. Cucurbit chlorotic yellows virus (CCYV) (genus Crinivirus, family Closteroviridae) is an emergent plant virus in many Asian countries and is transmitted specifically by B and Q biotypes of tobacco whitefly, Bemisia tabaci (Gennadius), in a semipersistent manner. In the present study, we used electrical penetration graph (EPG) technique to investigate the effect of CCYV on the feeding behaviors of B. tabaci. The results showed that CCYV altered feeding behaviors of both biotypes and sexes of B. tabaci with different degrees. CCYV had stronger effects on feeding behaviors of Q biotype than those of B biotype, by increasing duration of phloem salivation and sap ingestion, and could differentially manipulate feeding behaviors of males and females in both biotype whiteflies, with more phloem ingestion in Q biotype males and more non-phloem probing in B biotype males than their respective females. With regard to feeding behaviors related to virus transmission, these results indicated that, when carrying CCYV, B. tabaci Q biotype plays more roles than B biotype, and males make greater contribution than females.
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spelling pubmed-52949732017-02-10 A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector Lu, Shaohua Li, Jingjing Wang, Xueli Song, Danyang Bai, Rune Shi, Yan Gu, Qinsheng Kuo, Yen-Wen Falk, Bryce W. Yan, Fengming Viruses Article It is known that plant viruses can change the performance of their vectors. However, there have been no reports on whether or how a semipersistent plant virus manipulates the feeding behaviors of its whitefly vectors. Cucurbit chlorotic yellows virus (CCYV) (genus Crinivirus, family Closteroviridae) is an emergent plant virus in many Asian countries and is transmitted specifically by B and Q biotypes of tobacco whitefly, Bemisia tabaci (Gennadius), in a semipersistent manner. In the present study, we used electrical penetration graph (EPG) technique to investigate the effect of CCYV on the feeding behaviors of B. tabaci. The results showed that CCYV altered feeding behaviors of both biotypes and sexes of B. tabaci with different degrees. CCYV had stronger effects on feeding behaviors of Q biotype than those of B biotype, by increasing duration of phloem salivation and sap ingestion, and could differentially manipulate feeding behaviors of males and females in both biotype whiteflies, with more phloem ingestion in Q biotype males and more non-phloem probing in B biotype males than their respective females. With regard to feeding behaviors related to virus transmission, these results indicated that, when carrying CCYV, B. tabaci Q biotype plays more roles than B biotype, and males make greater contribution than females. MDPI 2017-01-13 /pmc/articles/PMC5294973/ /pubmed/28098749 http://dx.doi.org/10.3390/v9010004 Text en © 2017 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lu, Shaohua
Li, Jingjing
Wang, Xueli
Song, Danyang
Bai, Rune
Shi, Yan
Gu, Qinsheng
Kuo, Yen-Wen
Falk, Bryce W.
Yan, Fengming
A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title_full A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title_fullStr A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title_full_unstemmed A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title_short A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector
title_sort semipersistent plant virus differentially manipulates feeding behaviors of different sexes and biotypes of its whitefly vector
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5294973/
https://www.ncbi.nlm.nih.gov/pubmed/28098749
http://dx.doi.org/10.3390/v9010004
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