Javascript must be enabled to continue!
Novel strains of tomato spotted wilt orthotospovirus (TSWV) are transmitted by western flower thrips in a context-specific manner
View through CrossRef
Abstract
Novel resistance breaking (RB) strains of tomato spotted wilt orthotospovirus (TSWV) capable of disrupting single gene resistance in tomato (
Sw-
5
b
) and pepper (
Tsw
) have been reported worldwide. Thrips, a supervector of TSWV, transmit these strains in a suite of specialty and staple food crops across the globe. However, transmission biology of RB strains remains virtually unexplored. We investigated various transmission parameters
viz
. inoculation efficiency, putative sex-specific differences in transmission, virus accumulation, and source sink relationships to dissect these interactions using six novel strains of TSWV, namely Tom-BL1, Tom-BL2, Tom-CA, Tom-MX, Pep-BL and Non-RB, transmitted by western flower thrips (WFT) over four 24h consecutive inoculation accession periods (IAPs). Our results show that most strains were inoculated at all four IAPs, however, their rates differed across IAPs. Overall, WFT had highest inoculation efficiency at the first and lowest at the second IAP. Female thrips carried higher virus titers; however, males were better at inoculating TSWV. Furthermore, we did not find significant positive correlations in virus titers between the tissues used for TSWV acquisition, thrips and thrips-inoculated leaf discs. Males inoculated RB strains at 87% efficiency whereas Non-RB strain at 80% efficiency. Female thrips were 77% and 75% efficient at inoculating RB and Non-RB strains, respectively. This study furnishes new insights into the transmission biology of TSWV RB strains, especially from inoculation and thrips sex perspectives, and provides a baseline for future molecular studies surrounding ever evolving novel TSWV strains.
Title: Novel strains of tomato spotted wilt orthotospovirus (TSWV) are transmitted by western flower thrips in a context-specific manner
Description:
Abstract
Novel resistance breaking (RB) strains of tomato spotted wilt orthotospovirus (TSWV) capable of disrupting single gene resistance in tomato (
Sw-
5
b
) and pepper (
Tsw
) have been reported worldwide.
Thrips, a supervector of TSWV, transmit these strains in a suite of specialty and staple food crops across the globe.
However, transmission biology of RB strains remains virtually unexplored.
We investigated various transmission parameters
viz
.
inoculation efficiency, putative sex-specific differences in transmission, virus accumulation, and source sink relationships to dissect these interactions using six novel strains of TSWV, namely Tom-BL1, Tom-BL2, Tom-CA, Tom-MX, Pep-BL and Non-RB, transmitted by western flower thrips (WFT) over four 24h consecutive inoculation accession periods (IAPs).
Our results show that most strains were inoculated at all four IAPs, however, their rates differed across IAPs.
Overall, WFT had highest inoculation efficiency at the first and lowest at the second IAP.
Female thrips carried higher virus titers; however, males were better at inoculating TSWV.
Furthermore, we did not find significant positive correlations in virus titers between the tissues used for TSWV acquisition, thrips and thrips-inoculated leaf discs.
Males inoculated RB strains at 87% efficiency whereas Non-RB strain at 80% efficiency.
Female thrips were 77% and 75% efficient at inoculating RB and Non-RB strains, respectively.
This study furnishes new insights into the transmission biology of TSWV RB strains, especially from inoculation and thrips sex perspectives, and provides a baseline for future molecular studies surrounding ever evolving novel TSWV strains.
Related Results
First report of tomato spotted wilt virus infecting Panax notoginseng in Wenshan, China
First report of tomato spotted wilt virus infecting Panax notoginseng in Wenshan, China
Panax notoginseng (Burk.) F.H. Chen in the family Araliaceae is a widely used traditional Chinese medicine for its abilities to improve blood circulation and ameliorate hemostasis ...
Evaluation of Selected Tomato Cultivars Effectiveness Against Tomato Yellow Leaf Curl Virus (TYLCV) and Its PCR-Based Molecular Detection
Evaluation of Selected Tomato Cultivars Effectiveness Against Tomato Yellow Leaf Curl Virus (TYLCV) and Its PCR-Based Molecular Detection
Viral diseases are the primary impediment to tomato cultivation. One of the most destructive viral diseases is Tomato yellow leaf curl virus (TYLCV) transmitted by the insect vecto...
Rising orthotospovirus incidence in India: Challenges and advances in management
Rising orthotospovirus incidence in India: Challenges and advances in management
Orthotospoviruses (OV) have emerged as a significant agricultural threat in India, posing a severe risk to critical crops, including tomato, chilli, watermelon and groundnut. This ...
Host Plant Resistance to Tomato spotted wilt virus (Bunyaviridae: Tospovirus) in Tomato
Host Plant Resistance to Tomato spotted wilt virus (Bunyaviridae: Tospovirus) in Tomato
Commercially available cultivars of tomato
Solanum lycopersicum
L. were field-tested for resistance to
Tomato spotted wi...
Fruit melanotic ringspot (FMRS) – a disease of resistant Capsicum genotypes infected with Tomato spotted wilt virus (TSWV) on the fruits
Fruit melanotic ringspot (FMRS) – a disease of resistant Capsicum genotypes infected with Tomato spotted wilt virus (TSWV) on the fruits
Etiology of pepper fruit melanotic ringspot (FMRS) disease (Salamon, 2009) was studied on fruit samples collected in forced pepper populations. It was noticed that in spite of heav...
Within-Plant and Within-Field Distribution Patterns of Asian Bean Thrips and Melon Thrips in Snap Bean
Within-Plant and Within-Field Distribution Patterns of Asian Bean Thrips and Melon Thrips in Snap Bean
Asian bean thrips, Megalurothrips usitatus Bagnall, is a significant pest of vegetable crops, especially leguminous crops, across the Asian continent. In Florida, it is a new inv...
Within-Plant and Within-Field Distribution Patterns of Asian Bean Thrips and Melon Thrips in Snap Bean
Within-Plant and Within-Field Distribution Patterns of Asian Bean Thrips and Melon Thrips in Snap Bean
Asian bean thrips, Megalurothrips usitatus Bagnall, are a serious pest of vegetable crops, especially leguminous crops, across the Asian continent. In Florida, it is a new invasive...
Comparative Effects of ThryvOn Trait and Imidacloprid Seed Treatment on Thrips Injury and Lint Yield in Cotton
Comparative Effects of ThryvOn Trait and Imidacloprid Seed Treatment on Thrips Injury and Lint Yield in Cotton
Onion thrips, Thrips tabaci Lindeman and western flower thrips, Frankliniella occidentalis Pergande are predominant thrips species infesting seedling cotton (Gossypium hirsutum L.)...

