sly-miR408b Targets a Plastocyanin-Like Protein to Regulate Mycorrhizal Symbiosis in Tomato.

IF 6 1区 生物学 Q1 PLANT SCIENCES Plant, Cell & Environment Pub Date : 2025-01-09 DOI:10.1111/pce.15363
Yibin Lin, Chenling He, Zhenfang Li, Yingying Sun, Lu Tong, Xinyu Chen, Rensen Zeng, Zhenxia Su, Yuanyuan Song
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Abstract

Symbiosis between arbuscular mycorrhizal fungi and plants plays a crucial role in nutrient acquisition and stress resistance for terrestrial plants. microRNAs have been reported to participate in the regulation of mycorrhizal symbiosis by controlling the expression of their target genes. Herein, we found that sly-miR408b was significantly downregulated in response to mycorrhizal colonisation. Overexpression of sly-miR408b compromised mycorrhizal colonisation by Rhizophagus irregularis in tomato (Solanum lycopersicum) roots. A basic blue protein gene (SlBBP) was then identified as the new target gene of miR408b in tomato. The expression of membrane-located SlBBP was induced in a copper-dependent manner. Importantly, the loss function of SlBBP decreased the root mycorrhizal colonisation. Overexpression of SlBBP decreased SOD activity, which may interfere with the process of scavenging excessive reactive oxygen species (ROS). Mutation of RBOH1, which encodes ROS-producing enzymes NADPH oxidases, obviously reduced the arbuscule abundance in the mutant roots. Overall, our results provide evidence that sly-miR408b and its target gene SlBBP regulate mycorrhizal symbiosis in tomato through mediating ROS production.

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sly-miR408b靶向一种质体青素样蛋白调控番茄菌根共生
丛枝菌根真菌与植物的共生关系对陆生植物的养分获取和抗逆性起着至关重要的作用。据报道,microrna通过控制其靶基因的表达参与菌根共生的调节。在这里,我们发现sly-miR408b在菌根定植的反应中显著下调。sly-miR408b的过表达会影响不规则根噬菌在番茄根系中的定植。一个碱性蓝色蛋白基因(SlBBP)被确定为番茄miR408b的新靶基因。SlBBP以铜依赖的方式被诱导表达。重要的是,SlBBP的损失函数减少了根菌根定植。SlBBP的过度表达降低了SOD活性,这可能干扰了清除过多活性氧(ROS)的过程。编码ros生成酶NADPH氧化酶的RBOH1突变明显降低了突变根的丛枝丰度。综上所述,我们的研究结果证明,sly-miR408b及其靶基因SlBBP通过介导ROS的产生来调节番茄菌根共生。
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来源期刊
Plant, Cell & Environment
Plant, Cell & Environment 生物-植物科学
CiteScore
13.30
自引率
4.10%
发文量
253
审稿时长
1.8 months
期刊介绍: Plant, Cell & Environment is a premier plant science journal, offering valuable insights into plant responses to their environment. Committed to publishing high-quality theoretical and experimental research, the journal covers a broad spectrum of factors, spanning from molecular to community levels. Researchers exploring various aspects of plant biology, physiology, and ecology contribute to the journal's comprehensive understanding of plant-environment interactions.
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