2019
DOI: 10.1038/s41477-019-0383-2
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Inducible overexpression of Ideal Plant Architecture1 improves both yield and disease resistance in rice

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Cited by 168 publications
(156 citation statements)
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“…Moreover, osa-mi319/OsTCP21 [27], osa-miR444/OsMADS57 [26], osa-miR171b/OsSCL6-IIa, OsSCL6-IIb, OsSCL6-IIc [25] and osa-miR528/OsAO [24] regulatory units could change the disease development caused by rice stripe virus and rice ragged stunt virus, respectively. However, only two regulatory units, osa-miR156/OsIPA1 [31] and osa-miR169o/OsNF-YA [32], were published, which mediated immunity to Xoo. Integrating analysis of small RNA sequencing and degradome data showed that 29 DE known miRNAs might be involved in anti-bacterial regulatory mechanism in BB.…”
Section: Multiple Mirna/targets Regulatory Units Drives Flexible Defementioning
confidence: 99%
See 1 more Smart Citation
“…Moreover, osa-mi319/OsTCP21 [27], osa-miR444/OsMADS57 [26], osa-miR171b/OsSCL6-IIa, OsSCL6-IIb, OsSCL6-IIc [25] and osa-miR528/OsAO [24] regulatory units could change the disease development caused by rice stripe virus and rice ragged stunt virus, respectively. However, only two regulatory units, osa-miR156/OsIPA1 [31] and osa-miR169o/OsNF-YA [32], were published, which mediated immunity to Xoo. Integrating analysis of small RNA sequencing and degradome data showed that 29 DE known miRNAs might be involved in anti-bacterial regulatory mechanism in BB.…”
Section: Multiple Mirna/targets Regulatory Units Drives Flexible Defementioning
confidence: 99%
“…Regarding applied potential, osa-miR1861k induced by multiple Xoo strains in resistant rice genotypes may mediate a broad spectrum resistance [30]. The inducible knockdown of osa-miR156 could motivate OsIPA1 expression, to debar the fitness penalty of BB resistance in rice [31]. Conversely, the enhancive osa-miR169o boosted the pathogenicity of Xoo strains [32].…”
Section: Introductionmentioning
confidence: 99%
“…Understanding sRNA-mediated regulation of the trade-offs between plant defense and growth can also provide guidance in generating resistant crops with minimum fitness cost. For example, downregulation of rice miR156 or overexpression of its targets, Ideal Plant Architecture1 (IPA1) and SQUAMOSA promoter-binding protein-like transcription factor, OsSPL7, in rice leads to enhanced resistance to the bacterial blight Xoo but with reduced yield (Liu et al, 2019). Overexpression of IPA1 under a bacterial effector-induced promoter can ensure its activation only upon pathogen attack, which largely avoids the fitness penalty and increases disease resistance against Xoo (Liu et al, 2019).…”
Section: Endogenous Function Of Srnas In Plant Immune Responses and Smentioning
confidence: 99%
“…Rice SQUAMOSA PROMOTER-BINDING PROTEIN-LIKE (SPL) gene OsSPL14 (Ideal Plant Architecture 1, IPA1) encodes a plant-speci c transcription factor and is a new "Green Revolution" gene, which plays a critical role in regulating rice ideal plant architecture [1][2][3]. Therefore, the optimal increased expression of OsSPL14 in rice could confer ideal plant architecture including reduced tiller number, increased panicle primary branching, elevated lodging resistance of stems, at the same time increased thousand-grain weight [4][5][6].…”
Section: Introductionmentioning
confidence: 99%