4.6 Article

Rice miR1432 Fine-Tunes the Balance of Yield and Blast Disease Resistance via Different Modules

Journal

RICE
Volume 14, Issue 1, Pages -

Publisher

SPRINGER
DOI: 10.1186/s12284-021-00529-1

Keywords

miR1432; Blast disease resistance; Yield traits; OsEFH1; OsACOT

Categories

Funding

  1. National Natural Science Foundation of China [U19A2033, 31430072]
  2. Department of Science and Technology of Sichuan Province [2020YJ0332, 2021YJ0304]
  3. Open Research Fund of State Key Laboratory of Hybrid Rice (Hunan Hybrid Rice Research Center) [2021KF07]

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miR1432 acts as a fine-tuner in regulating plant growth and resistance. Its overexpression compromises resistance and yield, while blocking miR1432 enhances them. MiR1432 suppresses LOC_Os03g59790, affecting rice yield and blast disease resistance, showing that miR1432 can balance yield and resistance by targeting different genes.
microRNAs act as fine-tuners in the regulation of plant growth and resistance against biotic and abiotic stress. Here we demonstrate that rice miR1432 fine-tunes yield and blast disease resistance via different modules. Overexpression of miR1432 leads to compromised resistance and decreased yield, whereas blocking miR1432 using a target mimic of miR1432 results in enhanced resistance and yield. miR1432 suppresses the expression of LOC_Os03g59790, which encodes an EF-hand family protein 1 (OsEFH1). Overexpression of OsEFH1 leads to enhanced rice resistance but decreased grain yield. Further study revealed that miR1432 and OsEFH1 are differentially responsive to chitin, a fungus-derived pathogen/microbe-associated molecular pattern (PAMP/MAMP). Consistently, blocking miR1432 or overexpression of OsEFH1 improves chitin-triggered immunity responses. In contrast, overexpression of ACOT, another target gene regulating rice yield traits, has no significant effects on rice blast disease resistance. Altogether, these results indicate that miR1432 balances yield and resistance via different target genes, and blocking miR1432 can simultaneously improve yield and resistance.

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