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MdPHR2和MdARF6-4协同调节丛枝菌根共生以及MdPHT1;13的转录,增强苹果砧木对磷的吸收。

MdPHR2 and MdARF6-4 synergistically regulate arbuscular mycorrhizal symbiosis and the transcription of MdPHT1;13, enhancing phosphorus uptake in apple rootstocks.

作者信息

Huang Yimei, Zhai Longmei, Zhou Yan, Lv Jiahong, Liu Yao, Wu Ting, Zhang Xinzhong, Han Zhenhai, Wang Yi

机构信息

College of Horticulture, China Agricultural University, Beijing, 100193, P. R. China.

Key Laboratory of Biology and Genetic Improvement of Horticultural (Nutrition and Physiology), The Ministry of Agriculture and Rural Affairs, Beijing, P. R. China.

出版信息

Plant J. 2025 Mar;121(5):e70070. doi: 10.1111/tpj.70070.

Abstract

Phosphorus in the soil is easily chelated into forms that are unavailable to plants, leading to phosphorus deficiency, which severely affects the growth, development, and fruit quality of apple trees. To address phosphorus deficiency, we used four different arbuscular mycorrhizal fungi (AMF) to investigate their effects on the growth and development of apple rootstocks and phosphorus uptake in the soil. We identified Glomus mosseae (Gm) fungi as the most effective AMF for promoting growth and found that under phosphorus-deficient conditions, inoculating with Gm fungi promoted the growth of the above-ground parts of the plants and phosphorus absorption, while it inhibited root growth. After inoculating with Gm fungi, we found phosphorus starvation response factors (PHRs) and auxin response factors (ARFs) were upregulated. Knockdown of MdPHR2 or MdARF6-4 resulted in decreased root arbuscular structures, total mycorrhizal colonization rate, and root phosphorus content, indicating that MdPHR2 and MdARF6-4 positively regulate the symbiosis of Gm fungi and phosphorus absorption. In contrast, overexpressing MdARF6-4 led to reduced root development but increased root phosphorus content under Gm fungi inoculation, suggesting that MdARF6-4 is involved in Gm-mediated phosphorus absorption and root development. Moreover, both MdPHR2 and MdARF6-4 directly bound to the promoter area of the downstream phosphorus transporter MdPHT1;13, and these two transcription factors interacted with each other in vivo and in vitro. In summary, our study demonstrates that the interaction between MdPHR2 and MdARF6-4 synergistically regulates the Gm symbiosis and the transcription of MdPHT1;13, thereby promoting phosphorus absorption in apple rootstocks.

摘要

土壤中的磷很容易螯合形成植物无法利用的形态,导致磷缺乏,这严重影响苹果树的生长、发育和果实品质。为了解决磷缺乏问题,我们使用了四种不同的丛枝菌根真菌(AMF)来研究它们对苹果砧木生长发育和土壤中磷吸收的影响。我们确定摩西球囊霉(Gm)真菌是促进生长最有效的AMF,并发现缺磷条件下,接种Gm真菌促进了植株地上部分的生长和磷吸收,同时抑制了根系生长。接种Gm真菌后,我们发现磷饥饿响应因子(PHRs)和生长素响应因子(ARFs)上调。MdPHR2或MdARF6 - 4基因敲除导致根丛枝结构、总菌根定殖率和根磷含量降低,表明MdPHR2和MdARF6 - 4正向调控Gm真菌共生和磷吸收。相反,过表达MdARF6 - 4导致接种Gm真菌时根系发育受抑但根磷含量增加,表明MdARF6 - 4参与Gm介导的磷吸收和根系发育。此外,MdPHR2和MdARF6 - 4都直接结合到下游磷转运体MdPHT1;13的启动子区域,并且这两个转录因子在体内和体外相互作用。总之,我们的研究表明MdPHR2和MdARF6 - 4之间的相互作用协同调节Gm共生和MdPHT1;13的转录,从而促进苹果砧木对磷的吸收。

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