TY - JOUR
T1 - World Management of Geminiviruses
AU - Rojas, Maria R.
AU - Macedo, Monica A.
AU - Maliano, Minor R.
AU - Soto-Aguilar, Maria
AU - Souza, Juliana O.
AU - Briddon, Rob W.
AU - Kenyon, Lawrence
AU - Rivera Bustamante, Rafael F.
AU - Murilo Zerbini, F.
AU - Adkins, Scott
AU - Legg, James P.
AU - Kvarnheden, Anders
AU - Wintermantel, William M.
AU - Sudarshana, Mysore R.
AU - Peterschmitt, Michel
AU - Lapidot, Moshe
AU - Martin, Darren P.
AU - Moriones, Enrique
AU - Inoue-Nagata, Alice K.
AU - Gilbertson, Robert L.
PY - 2018
Y1 - 2018
N2 - Management of geminiviruses is a worldwide challenge because of the widespread distribution of economically important diseases caused by these viruses. Regardless of the type of agriculture, management is most effective with an integrated pest management (IPM) approach that involves measures before, during, and after the growing season. This includes starting with resistant cultivars and virus-and vector-free transplants and propagative plants. For high value vegetables, protected culture (e.g., greenhouses and screenhouses) allows for effective management but is limited owing to high cost. Protection of young plants in open fields is provided by row covers, but other measures are typically required. Measures that are used for crops in open fields include roguing infected plants and insect vector management. Application of insecticide to manage vectors (whiteflies and leafhoppers) is the most widely used measure but can cause undesirable environmental and human health issues. For annual crops, these measures can be more effective when combined with host-free periods of two to three months. Finally, given the great diversity of the viruses, their insect vectors, and the crops affected, IPM approaches need to be based on the biology and ecology of the virus and vector and the crop production system. Here, we present the general measures that can be used in an IPM program for geminivirus diseases, specific case studies, and future challenges.
AB - Management of geminiviruses is a worldwide challenge because of the widespread distribution of economically important diseases caused by these viruses. Regardless of the type of agriculture, management is most effective with an integrated pest management (IPM) approach that involves measures before, during, and after the growing season. This includes starting with resistant cultivars and virus-and vector-free transplants and propagative plants. For high value vegetables, protected culture (e.g., greenhouses and screenhouses) allows for effective management but is limited owing to high cost. Protection of young plants in open fields is provided by row covers, but other measures are typically required. Measures that are used for crops in open fields include roguing infected plants and insect vector management. Application of insecticide to manage vectors (whiteflies and leafhoppers) is the most widely used measure but can cause undesirable environmental and human health issues. For annual crops, these measures can be more effective when combined with host-free periods of two to three months. Finally, given the great diversity of the viruses, their insect vectors, and the crops affected, IPM approaches need to be based on the biology and ecology of the virus and vector and the crop production system. Here, we present the general measures that can be used in an IPM program for geminivirus diseases, specific case studies, and future challenges.
KW - integrated pest management
KW - insect-transmitted viruses
KW - Bemisia tabaci
KW - begomoviruses
KW - curtoviruses
KW - mastreviruses
KW - grablovirus
KW - integrated pest management
KW - insect-transmitted viruses
KW - Bemisia tabaci
KW - begomoviruses
KW - curtoviruses
KW - mastreviruses
KW - grablovirus
UR - https://res.slu.se/id/publ/96550
U2 - 10.1146/annurev-phyto-080615-100327
DO - 10.1146/annurev-phyto-080615-100327
M3 - Review article
SN - 0066-4286
VL - 56
SP - 637
EP - 677
JO - Annual Review of Phytopathology
JF - Annual Review of Phytopathology
ER -