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Author Lu Q., Luo X., Yang X., Zhou T., Zhang Y., Lan Y., Zhang D., Zheng L., Li Y., Li L., Zhang S., Liu Y.
Title CRISPR/Cas9-mediated gene editing of <i>vacuolar ATPase subunit d</i> mediates phytohormone biosynthesis and virus resistance in rice.
Abstract:
Vacuolar ATPases (V-ATPases) are proton pumps for proton translocation across membranes that utilize energy derived from ATP hydrolysis; OsV-ATPase subunit d (OsV-ATPase d) is part of an integral, membrane-embedded V0 complex in the V-ATPase complex. Whether OsV-ATPase d is involved in phytohormone biosynthesis and resistance in rice remains unknown. The knockout mutants of <i>OsV-ATPase d</i> in rice were generated using the CRISPR/Cas9 system, and mutation of <i>OsV-ATPase d</i> did not show any detrimental effect on plant growth or yield productivity. Transcriptomic results showed that <i>OsV-ATPase d</i> is probably involved in mediating the biosynthesis of plant hormones and resistance in rice. Compared to wild type, mutation of <i>OsV-ATPase d</i> significantly increased JA and ABA biosynthesis and resistance against <i>Southern rice black-streaked dwarf virus</i> (SRBSDV), but it decreased resistance against <i>Rice stripe virus</i> (RSV) in rice. The data presented in this study reveal that <i>OsV-ATPase d</i> mediates phytohormone biosynthesis and virus resistance in rice and can be selected as a potential target for resistance breeding in rice.
Journal Front Plant Sci
Country China
Volume 14
Pages 1122978
Year 2023
PubMed ID 36818855
PubMed Central ID 9929465
DOI 10.3389/fpls.2023.1122978
URL -
Relation
Gene AOS3 CM-LOX1 NCED2 PAO7 SWEET15 TIFY5 VHA-D
INSD -
Strain Wild Core Collection -
Induced Mutation Lines(NIG Collection) -
Sterile Seed Strain -
Lethal Embryo
Mutantion Strain
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Stages in Each Organ
- Muant Lines (Gene)
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Cultivated Varieties(NIG Collection) -
Stages in Each Organ -
/rice/oryzabase