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首页> 外文期刊>The New Phytologist >The family of ammonium transporters (AMT) in Sorghum bicolor: two AMT members are induced locally, but not systemically in roots colonized by arbuscular mycorrhizal fungi
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The family of ammonium transporters (AMT) in Sorghum bicolor: two AMT members are induced locally, but not systemically in roots colonized by arbuscular mycorrhizal fungi

机译:双色高粱中的铵转运蛋白(AMT)家族:局部诱导了两个AMT成员,但不是在丛枝菌根真菌定植的根中全身性诱导

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摘要

Arbuscular mycorrhizal (AM) fungi contribute to plant nitrogen (N) acquisition. Recent studies demonstrated the transport of N in the form of ammonium during AM symbiosis. Here, we hypothesize that induction of specific ammonium transporter (AMT) genes in Sorghum bicolor during AM colonization might play a key role in the functionality of the symbiosis. For the first time, combining a split-root experiment and microdissection technology, we were able to assess the precise expression pattern of two AM-inducible AMTs, SbAMT3;1 and SbAMT4. Immunolocalization was used to localize the protein of SbAMT3;1. The expression of SbAMT3;1 and SbAMT4 was greatly induced locally in root cells containing arbuscules and in adjacent cells. However, a split-root experiment revealed that this induction was not systemic. By contrast, a strictly AM-induced phosphate transporter (SbPt11) was expressed systemically in the split-root experiment. However, a gradient of expression was apparent. Immunolocalization analyses demonstrated that SbAMT3;1 was present only in cells containing developing arbuscules. Our results show that the SbAMT3;1 and SbAMT4 genes are expressed in root cortical cells, which makes them ready to accommodate arbuscules, a process of considerable importance in view of the short life span of arbuscules. Additionally, SbAMT3;1 might play an important role in N transfer during AM symbiosis.
机译:丛枝菌根(AM)真菌有助于植物获得氮(N)。最近的研究表明,在AM共生过程中,铵态氮以铵态迁移。在这里,我们假设在AM移殖过程中高粱双色中特定铵转运蛋白(AMT)基因的诱导可能在共生功能中起关键作用。我们首次结合了分根实验和显微解剖技术,能够评估两种AM诱导型AMT SbAMT3; 1和SbAMT4的精确表达模式。免疫定位用于定位SbAMT3; 1的蛋白质。 SbAMT3; 1和SbAMT4的表达在含有丛枝的根细胞和邻近细胞中被局部诱导。但是,一项分裂根实验表明,这种诱导不是全身性的。相比之下,严格的AM诱导的磷酸盐转运蛋白(SbPt11)在劈根实验中被系统表达。然而,表达的梯度是明显的。免疫定位分析表明,SbAMT3; 1仅存在于含有发育中的丛枝的细胞中。我们的结果表明,SbAMT3; 1和SbAMT4基因在根皮层细胞中表达,这使它们准备好容纳丛枝,鉴于丛枝寿命短,这一过程具有重要意义。此外,SbAMT3; 1可能在AM共生过程中的氮转移中起重要作用。

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