Suppr超能文献

NPR1 样基因家族的 FaNPR3 成员负向调节草莓果实对……的抗性

FaNPR3 Members of the NPR1-like Gene Family Negatively Modulate Strawberry Fruit Resistance against .

作者信息

Súnico Victoria, Higuera José Javier, Amil-Ruiz Francisco, Arjona-Girona Isabel, López-Herrera Carlos J, Muñoz-Blanco Juan, Maldonado-Alconada Ana María, Caballero José L

机构信息

Biotechnology and Plant Pharmacognosy (BIO-278), Department of Biochemistry and Molecular Biology, Campus de Rabanales, Severo Ochoa building-C6, University of Córdoba, UCO-CeiA3, 14071 Córdoba, Spain.

Bioinformatics Unit, Central Research Support Service (SCAI), University of Córdoba, 14071 Córdoba, Spain.

出版信息

Plants (Basel). 2024 Aug 14;13(16):2261. doi: 10.3390/plants13162261.

Abstract

Strawberry fruit is highly appreciated worldwide for its organoleptic and healthy properties. However, this plant is attacked by many pathogenic fungi, which significantly affect fruit production and quality at pre- and post-harvest stages, making chemical applications the most effective but undesirable strategy to control diseases that has been found so far. Alternatively, genetic manipulation, employing plant key genes involved in defense, such as members of the NPR-like gene family, has been successful in many crops to improve resistance. The identification and use of the endogenous counterpart genes in the plant of interest (as it is the case of strawberry) is desirable as it would increase the favorable outcome and requires prior knowledge of their defense-related function. Using RNAi technology in strawberry, transient silencing of NPR3 members in fruit significantly reduced tissue damage after infection, whereas the ectopic expression of either or did not have an apparent effect. Furthermore, the ectopic expression of in double-mutant reverted the disease resistance phenotype to to wild-type levels. Therefore, the results revealed that members of the strawberry FaNPR3 clade negatively regulate the defense response to pathogens, as do their Arabidopsis AtNPR3/AtNPR4 orthologs. Also, evidence was found showing that FaNPR3 members act in strawberry () as positive regulators of genes, and ; additionally, in Arabidopsis, FaNPR3.2 negatively regulates its orthologous genes . We report for the first time the functional characterization of FaNPR3 members in , which provides a relevant molecular basis for the improvement of resistance in this species through new breeding technologies.

摘要

草莓果实因其感官特性和健康益处而在全球范围内备受青睐。然而,这种植物受到许多致病真菌的侵袭,这些真菌在收获前和收获后阶段都会显著影响果实产量和品质,使得化学药剂的使用成为目前控制病害最有效但却不理想的策略。另外,利用参与防御的植物关键基因,如NPR样基因家族的成员进行基因操作,已在许多作物中成功提高了抗性。在目标植物(如草莓)中鉴定和使用内源性对应基因是可取的,因为这将增加有利结果,并且需要事先了解它们与防御相关的功能。在草莓中使用RNAi技术,果实中NPR3成员的瞬时沉默显著减少了感染后的组织损伤,而NPR1或NPR2的异位表达则没有明显效果。此外,在npr1/npr2双突变体中NPR1的异位表达将抗病表型恢复到了野生型水平。因此,结果表明草莓FaNPR3进化枝的成员对病原体的防御反应起负调控作用,就像它们在拟南芥中的直系同源基因AtNPR3/AtNPR4一样。此外,有证据表明FaNPR3成员在草莓(Fragaria × ananassa)中作为PDF1.2、PR1和PR2基因的正调控因子发挥作用;另外,在拟南芥中,FaNPR3.2对其直系同源基因AtNPR3和AtNPR4起负调控作用。我们首次报道了草莓(Fragaria × ananassa)中FaNPR3成员的功能特性,这为通过新的育种技术提高该物种的抗性提供了相关的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff92/11360474/b7f8d840da78/plants-13-02261-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验