Development of an efficient Tef-1α RNA hairpin structure to efficient management of Lasiodiplodia theobromae and Neofusicoccum parvum
Lasiodiplodia theobromae and Neofusicoccum parvum are serious worldwide-distributed plant pathogenic fungi with a wide host range in tropical and temperate climates. They cause fruit rot, canker, and dieback of twigs in various woody plants. Protection of pruning wounds using fungicides is the preva...
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Veröffentlicht in: | Scientific reports 2021-05, Vol.11 (1), p.9612-9612, Article 9612 |
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Sprache: | eng |
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Zusammenfassung: | Lasiodiplodia theobromae
and
Neofusicoccum parvum
are serious worldwide-distributed plant pathogenic fungi with a wide host range in tropical and temperate climates. They cause fruit rot, canker, and dieback of twigs in various woody plants. Protection of pruning wounds using fungicides is the prevalent strategy for the management of the diseases caused by these fungi. Chemical control of plant diseases is not environmentally safe and the residues of fungicides are a threat to nature. Furthermore, genetic resources of resistance to plant diseases in woody plants are limited. The aim of this study was to investigate the efficiency of RNA silencing using an efficient hairpin structure based on
Tef-1α
gene for the management of
L. theobromae
and
N. parvum
. Hairpin structure of
Tef-1α
was cloned in
pFGC
5941 binary vector and the recombinant construct was named
pFGC-TEF-d
. Transient expression of
pFGC-TEF-d
using
Agrobacterium
LBA4404 in grapevine (Bidaneh Sefid cv.) and strawberry cultivars (Camarosa and Ventana) led to a reduction in disease progress of
L. theobromae
. The disease reduction in grapevine was estimated by 55% and in strawberries cultivars Camarosa and Ventana by 58% and 93%, respectively. Further analysis of transient expression of
pFGC-TEF-d
in strawberry (Camarosa) shown disease reduction using
Neofusicoccum parvum
. Here we introduce RNAi silencing using
pFGC-TEF-d
construct as an efficient strategy to the management of
L. theobromae
and
N. parvum
for the first time. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-021-88422-1 |