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首页> 外文期刊>Canadian Journal of Botany >Rice phosphate transporters associated with phosphate uptake in rice roots colonised with arbuscular mycorrhizal fung
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Rice phosphate transporters associated with phosphate uptake in rice roots colonised with arbuscular mycorrhizal fung

机译:丛枝菌根真菌定殖的水稻根系中与磷酸盐吸收相关的水稻磷酸盐转运蛋白

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摘要

The completed rice-genome sequence was screened with a known inorganic phosphate (Pi) transporter sequence to reveal a family of 13 Pi transporters. This family can be used for studies into Pi acquisition and translocation throughout the plant. Plants that form symbiotic associations with arbuscular mycorrhizal (AM) fungi are of particular interest with respect to Pi acquisition because of their ability to utilize both direct and fungal pathways of uptake. Localization of transcripts of two Pi transporters by real-time RT-PCR and in situ hybridization were conducted in rice subjected to low Pi, high Pi, and AM colonization. One Pi transporter, ORYsa; Pht1; 13, was detected in rice roots under all growth conditions. ORYsa; Pht1; 11 was only expressed in roots colonized by AM fungi. Antisense RNA probes of ORYsa; Pht1; 11 localized to cortical cells containing arbuscules and hyphal coils, formed by GlomusA intraradices Schenck and Smith and ScutellosporaA calospora (Nicolson and Gerdemann) Walker and Sanders, respectively. Localization of the ORYsa; Pht1; 13 probes was similar to that observed for ORYsa; Pht1; 11 in colonized rice roots. This research proposes that at least two rice Pi transporters are involved in acquiring Pi via AM fungi, emphasising the complexity of Pi acquisition in plants with access to two Pi uptake pathways.
机译:用已知的无机磷酸盐(Pi)转运蛋白序列筛选出完整的水稻基因组序列,以揭示13个Pi转运蛋白家族。该家族可用于研究整个植物中Pi的获取和转运。与树状菌根(AM)真菌形成共生关系的植物,由于其能够利用直接和真菌吸收途径,因此对Pi的获取特别感兴趣。通过实时RT-PCR和原位杂交技术,在低Pi,高Pi和AM定植的水稻中对两个Pi转运蛋白的转录本进行了定位。一辆Pi运输车ORYsa; Pht1;在所有生长条件下,在水稻根中均检测到13。 ORYsa; Pht1; 11仅在AM真菌定植的根中表达。 ORYsa的反义RNA探针; Pht1; 11定位于含有丛状和菌丝盘绕的皮质细胞,它们分别由GlomusA内radi Schenck和Smith和ScutellosporaA calospora(Nicolson和Gerdemann)Walker和Sanders形成。 ORYsa的本地化; Pht1; 13个探针与针对ORYsa的探针相似; Pht1; 11在已定植的水稻根中。这项研究建议,至少有两个水稻Pi转运蛋白参与通过AM真菌获得Pi的过程,强调了通过两个Pi吸收途径进入植物的Pi采集的复杂性。

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