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LbAMT3-1,一种受丛枝菌根诱导的枸杞铵转运蛋白,使烟草具有更高的丛枝菌根水平和养分吸收能力。

LbAMT3-1, an ammonium transporter induced by arbuscular mycorrhizal in Lycium barbarum, confers tobacco with higher mycorrhizal levels and nutrient uptake.

机构信息

College of Forestry, Northwest A&F University, Yangling, 712100, Shaanxi, China.

State Key Laboratory of Conservation and Utilization of Subtropical Agro-Bioresources, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, 510642, Guangdong, China.

出版信息

Plant Cell Rep. 2022 Jun;41(6):1477-1480. doi: 10.1007/s00299-022-02847-0. Epub 2022 Feb 24.

Abstract

An ammonium transporter LbAMT3-1 overexpression increases the arbuscular abundance of mycorrhizal that opens the possibility of using LbAMT3-1 in breeding programs to improve symbiotic nutrient uptake in Lycium barbarum. Nitrogen (N) is one of the most essential nutrients required by plants and limits net primary production much of the time in most terrestrial ecosystems. Arbuscular mycorrhizal (AM) fungi can enhance plant nutrient uptake and improve plant productivity in nutrient limit ecosystems. Here, we identified an ammonia transporter, LbAMT3-1, specifically induced by AM fungi in Lycium barbarum. To understand the expression characteristics and biological functions, LbAMT3-1 was cloned, characterized, and overexpressed in Nicotiana tabacum (tobacco). A BLAST search identified the coding sequence for LbAMT3-1 with an open-reading frame of 1473 bp. Reverse transcription polymerase chain reaction (RT-PCR) analysis indicated that, besides mycorrhizal roots, LbAMT3-1 were barely detectable in other tissues, including stems and leaves. Promoter-GUS assay showed that GUS staining was detected in mycorrhizal roots, and GUS activity driven by the LbAMT3-1 promoter was exclusively confined to root cells containing arbuscules. LbAMT3-1 functionally complemented the yeast mutant efficiently, and yeast expressing LbAMT3-1 showed well growth on the agar medium with 0.02, 0.2, and 2 mM NH supply. Moreover, overexpression of LbAMT3-1 in N. tabacum resulted a significant increase in arbuscular abundance and enhanced the nutrient acquisition capacity of mycorrhizal plants. Based on the results of our study, we propose that overexpression of LbAMT3-1 can promote P and N uptake of host plants through the mycorrhizal pathway, and increase the colonization intensity and arbuscular abundance, which opens the possibility of using LbAMT3-1 in breeding programs.

摘要

一个铵转运蛋白 LbAMT3-1 的过表达增加了丛枝菌根的丛枝丰度,这为利用 LbAMT3-1 进行育种计划以提高枸杞中共生养分吸收开辟了可能性。氮 (N) 是植物最需要的基本养分之一,在大多数陆地生态系统中,大多数时候它限制着净初级生产力。丛枝菌根 (AM) 真菌可以增强植物对养分的吸收,并在养分限制的生态系统中提高植物的生产力。在这里,我们鉴定了一种氨转运蛋白,LbAMT3-1,它在枸杞中被 AM 真菌特异性诱导。为了了解表达特征和生物学功能,克隆、鉴定并在烟草(烟草)中过表达 LbAMT3-1。BLAST 搜索鉴定出 LbAMT3-1 的编码序列,其开放阅读框为 1473bp。反转录聚合酶链反应 (RT-PCR) 分析表明,除了共生根之外,LbAMT3-1 在其他组织(包括茎和叶)中几乎检测不到。启动子-GUS 分析表明,在共生根中检测到 GUS 染色,并且由 LbAMT3-1 启动子驱动的 GUS 活性仅局限于含有丛枝的根细胞中。LbAMT3-1 有效地互补酵母突变体,并且表达 LbAMT3-1 的酵母在含有 0.02、0.2 和 2 mM NH 供应的琼脂培养基上表现出良好的生长。此外,LbAMT3-1 在烟草中的过表达导致丛枝丰度显著增加,并增强了共生植物的养分获取能力。根据我们的研究结果,我们提出 LbAMT3-1 的过表达可以通过菌根途径促进宿主植物对 P 和 N 的吸收,并增加定植强度和丛枝丰度,这为利用 LbAMT3-1 进行育种计划开辟了可能性。

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