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Rice copine genes OsBON1 and OsBON3 function as suppressors of broad‐spectrum disease resistance

机译:稻副本基因Osbon1和Osbon3用作广谱疾病抗性的抑制作用

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Breeding for disease resistance is the most effective strategy to control diseases, particularly with broad‐spectrum disease resistance in many crops. However, knowledge on genes and mechanism of broad‐spectrum resistance and trade‐off between defence and growth in crops is limited. Here, we show that the rice copine genes OsBON1 and OsBON3 are critical suppressors of immunity. Both OsBON1 and OsBON3 changed their protein subcellular localization upon pathogen challenge. Knockdown of OsBON1 and dominant negative mutant of OsBON3 each enhanced resistance to rice bacterial and fungal pathogens with either hemibiotrophic or necrotrophic lifestyles. The defence activation in OsBON1 knockdown mutants was associated with reduced growth, both of which were largely suppressed under high temperature. In contrast, overexpression of OsBON1 or OsBON3 decreased disease resistance and promoted plant growth. However, neither OsBON1 nor OsBON3 could rescue the dwarf phenotype of the Arabidopsis BON1 knockout mutant, suggesting a divergence of the rice and Arabidopsis copine genes. Our study therefore shows that the rice copine genes play a negative role in regulating disease resistance and their expression level and protein location likely have a large impact on the balance between immunity and agronomic traits.
机译:抗病性育种是对疾病的最有效的策略,特别是许多作物中的广谱疾病抗性。然而,对农作物之间的广谱抗性和衡量权衡的基因和机制的知识有限。在这里,我们表明稻米亚胺基因Osbon1和Osbon3是免疫的关键抑制剂。 Osbon1和Osbon3都改变了对病原体攻击的蛋白质亚细胞定位。 Osbon1的敲低和Osbon3的主要负突变体每种增强耐水稻细菌和真菌病原体的抗性,具有血管营养或病例。在Osbon1敲低突变体中的防御激活与增长降低相关,两者在高温下大大抑制。相反,Osbon1或Osbon3的过表达降低了抗病性和促进植物生长。然而,Osbon1和Osbon3都不能拯救拟南芥Bon1敲除突变体的矮化表型,表明水稻和拟南芥副基因的分歧。因此,我们的研究表明,水稻副基因在调节抗病抗性和它们的表达水平和蛋白质位置可能对免疫和农艺性状之间的平衡产生了很大的影响。

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