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Vitellogenin from planthopper oral secretion acts as a novel effector to impair plant defenses
Author(s) -
Ji Rui,
Fu Jianmei,
Shi Yu,
Li Jing,
Jing Maofeng,
Wang Lu,
Yang Shiying,
Tian Tian,
Wang Lihua,
Ju Jiafei,
Guo Huifang,
Liu Bin,
Dou Daolong,
Hoffmann Ary A.,
ZhuSalzman Keyan,
Fang Jichao
Publication year - 2021
Publication title -
new phytologist
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.742
H-Index - 244
eISSN - 1469-8137
pISSN - 0028-646X
DOI - 10.1111/nph.17620
Subject(s) - brown planthopper , biology , effector , vitellogenin , nicotiana benthamiana , rna interference , plant defense against herbivory , insect , microbiology and biotechnology , bioassay , oryza sativa , secretion , oryza , gene silencing , wrky protein domain , botany , biochemistry , transcriptome , rna , gene , gene expression , genetics
Summary Vitellogenin (Vg) is a well‐known nutritious protein involved in reproduction in nearly all oviparous animals, including insects. Recently, Vg has been detected in saliva proteomes of several piercing–sucking herbivorous arthropods, including the small brown planthopper ( Laodelphax striatellus , SBPH). Its function, however, remains unexplored. We investigated the molecular mechanism underlying SBPH orally secreted Vg‐mediated manipulation of plant–insect interaction by RNA interference, phytohormone and H 2 O 2 profiling, protein–protein interaction studies and herbivore bioassays. A C‐terminal polypeptide of Vg (VgC) in SBPH, when secreted into rice plants, acted as a novel effector to attenuate host rice defenses, which in turn improved insect feeding performance. Silencing Vg reduced insect feeding and survival on rice. Vg ‐silenced SBPH nymphs consistently elicited higher H 2 O 2 production, a well‐established defense mechanism in rice, whereas expression of VgC in planta significantly hindered hydrogen peroxide (H 2 O 2 ) accumulation and promoted insect performance. VgC interacted directly with the rice transcription factor OsWRKY71, a protein which is involved in induction of H 2 O 2 accumulation and plant resistance to SBPH. These findings indicate a novel effector function of Vg: when secreted into host rice plants, this protein effectively weakened H 2 O 2 ‐mediated plant defense through its association with a plant immunity regulator.