Summary
Multi‐functional micro
RNA
s (mi
RNA
s) are emerging as key modulators of plant–pathogen interactions. Although the involvement of some mi
RNA
s in plant–insect interactions has been revealed, the underlying mechanisms are still elusive. The brown planthopper (
BPH
) is the most notorious rice (
Oryza sativa
)‐specific insect that causes severe yield losses each year and requires urgent biological control. To reveal the mi
RNA
s involved in rice–
BPH
interactions, we performed mi
RNA
sequencing and identified
BPH
‐responsive OsmiR396. Sequestering OsmiR396 by overexpressing target mimicry (
MIM
396) in three genetic backgrounds indicated that OsmiR396 negatively regulated
BPH
resistance. Overexpression of one
BPH
‐responsive target gene of OsmiR396, growth regulating factor 8 (
Os
GRF
8
), showed resistance to
BPH
. Furthermore, the flavonoid contents increased in both the OsmiR396‐sequestered and the
Os
GRF
8
overexpressing plants. By analysing 39 natural rice varieties, the elevated flavonoid contents were found to correlate with enhanced
BPH
resistance. Artificial applications of flavonoids to wild type (
WT
) plants also increased resistance to
BPH
. A
BPH
‐responsive flavanone 3‐hydroxylase (
OsF3H
) gene in the flavonoid biosynthetic pathway was proved to be directly regulated by Os
GRF
8. A genetic functional analysis of
OsF3H
revealed its positive role in mediating both the flavonoid contents and
BPH
resistance. And analysis of the genetic correlation between OsmiR396 and
OsF3H
showed that down‐regulation of
OsF3H
complemented the
BPH
resistance characteristic and simultaneously decreased the flavonoid contents of the
MIM
396 plants. Thus, we revealed a new
BPH
resistance mechanism mediated by the OsmiR396–Os
GRF
8–OsF3H–flavonoid pathway. Our study suggests potential applications of mi
RNA
s in
BPH
resistance breeding.
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