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不同磷有效性条件下杨树(Populus × canescens)的磷吸收动力学及组织特异性转运蛋白表达谱

Phosphate uptake kinetics and tissue-specific transporter expression profiles in poplar (Populus × canescens) at different phosphorus availabilities.

作者信息

Kavka Mareike, Polle Andrea

机构信息

Forstbotanik und Baumphysiologie, Georg-August Universität Göttingen, Büsgenweg 2, 37077, Göttingen, Germany.

Labor für Radio-Isotope, Georg-August Universität Göttingen, Büsgenweg 2, 37077, Göttingen, Germany.

出版信息

BMC Plant Biol. 2016 Sep 23;16(1):206. doi: 10.1186/s12870-016-0892-3.

Abstract

BACKGROUND

Phosphorus (P) is a major plant nutrient. It is transported into and allocated inside plants by four families of phosphate transporters (PHT1 to PHT4) with high or low affinity to phosphate. Here, we studied whole-plant P uptake kinetics and expression profiles of members of the PHT families under high, intermediate and low P availability in the woody crop poplar (Populus × canescens) in relation to plant performance.

RESULTS

Poplars exhibited strong growth reduction and increased P use efficiency in response to lower P availabilities. The relative P uptake rate increased with intermediate and decreased with low P availability. This decrease was not energy-limited because glucose addition could not rescue the uptake. The maximum P uptake rate was more than 13-times higher in P-starved than in well-supplied poplars. The K for whole-root uptake ranged between 26 μM and 20 μM in poplars with intermediate and low P availability, respectively. In well-supplied plants, only low uptake rate was found. The minimum concentration for net P uptake from the nutrient solution was 1.1 μM. All PHT1 members studied showed significant up-regulation upon P starvation and were higher expressed in roots than leaves, with the exception of PtPHT1;3. PtPHT1;1 and PtPHT1;2 showed root- and P starvation-specific expression. Various members of the PHT2, PHT3 and PHT4 families showed higher expression in leaves than in roots, but were unresponsive to P deprivation. Other members (PtPHT3;1, PtPHT3;2, PtPHT3;6, PtPHT4;6 to PtPHT4;8) exhibited higher expression in roots than in leaves and were in most cases up-regulated in response to P deficiency.

CONCLUSIONS

Expression profiles of distinct members of the PHT families, especially those of PHT1 were linked with changes in P uptake and allocation at whole-plant level. The regulation was tissue-specific with lower P responsiveness in leaves than in roots. Uptake efficiency for P increased with decreasing P availability, but could not overcome a threshold of about 1 μM P in the nutrient solution. Because the P concentrations in soil solutions are generally in the lower micro-molar range, even below the apparent K-values, our findings suggest that bare-rooted poplars are prone to suffer from P limitations in most environments.

摘要

背景

磷(P)是植物的主要养分。它通过对磷酸盐具有高亲和力或低亲和力的四类磷酸盐转运蛋白(PHT1至PHT4)转运到植物体内并在植物体内分配。在此,我们研究了木本作物杨树(Populus×canescens)在高、中、低磷有效性条件下全株磷吸收动力学以及PHT家族成员的表达谱与植物生长性能的关系。

结果

杨树在低磷有效性条件下生长显著受抑,磷利用效率提高。相对磷吸收速率在中等磷有效性条件下增加,在低磷有效性条件下降低。这种降低并非能量限制所致,因为添加葡萄糖并不能挽救磷吸收。缺磷杨树的最大磷吸收速率比供磷充足的杨树高13倍以上。中等和低磷有效性杨树全根吸收的K值分别在26μM和20μM之间。在供磷充足的植株中,仅发现低吸收速率。从营养液中净吸收磷的最低浓度为1.1μM。所研究的所有PHT1成员在缺磷时均表现出显著上调,且在根中的表达高于叶,PtPHT1;3除外。PtPHT1;1和PtPHT1;2表现出根和缺磷特异性表达。PHT2、PHT3和PHT4家族的不同成员在叶中的表达高于根,但对缺磷无反应。其他成员(PtPHT3;1、PtPHT3;2、PtPHT3;6、PtPHT4;6至PtPHT4;8)在根中的表达高于叶,且在大多数情况下对缺磷上调。

结论

PHT家族不同成员的表达谱,尤其是PHT1的表达谱与全株水平上磷吸收和分配的变化相关。这种调节具有组织特异性,叶对磷的响应性低于根。随着磷有效性降低,磷吸收效率增加,但无法克服营养液中约1μM磷的阈值。由于土壤溶液中的磷浓度通常处于较低的微摩尔范围内,甚至低于表观K值,我们的研究结果表明,在大多数环境中,裸根杨树容易受到磷限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7943/5035498/2c95409c7967/12870_2016_892_Fig1_HTML.jpg

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