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水甘油通道蛋白在大麦根中硼转运过程中的作用。

The involvement of aquaglyceroporins in transport of boron in barley roots.

作者信息

Fitzpatrick Kate L, Reid Rob J

机构信息

School of Earth and Environmental Sciences, University of Adelaide, Adelaide, Australia.

出版信息

Plant Cell Environ. 2009 Oct;32(10):1357-65. doi: 10.1111/j.1365-3040.2009.02003.x. Epub 2009 Jun 10.

Abstract

Boron (B) enters cells as the uncharged boric acid, a small neutral molecule with sufficient lipid solubility to cross cell membranes without the aid of transport proteins. The extent to which the observed uptake rates for B in plants can be explained by this simple physical process was examined by applying treatments expected to inhibit the membrane transporters most likely to be involved in B transport. These experiments established that at least 50% of B uptake could be facilitated by transporters. The B transport characteristics of two barley aquaglyceroporins, HvPIP1;3 and HvPIP1;4, were investigated using yeast complementation assays. Expression of both genes in yeast resulted in increased B sensitivity. Transport assays in yeast confirmed that HvPIP1;3 and HvPIP1;4 are both capable of transporting B. The physiological role of these HvPIP1 genes in B transport is uncertain since their expression was not responsive to B nutritional status, and they continued to be expressed under toxicity conditions.

摘要

硼(B)以不带电荷的硼酸形式进入细胞,硼酸是一种小的中性分子,具有足够的脂溶性,能够在无需转运蛋白协助的情况下穿过细胞膜。通过采用预期会抑制最有可能参与硼转运的膜转运蛋白的处理方法,研究了这一简单物理过程能够解释植物中观察到的硼吸收速率的程度。这些实验证实,至少50%的硼吸收可由转运蛋白促进。利用酵母互补试验研究了两种大麦水甘油通道蛋白HvPIP1;3和HvPIP1;4的硼转运特性。这两个基因在酵母中的表达导致硼敏感性增加。酵母中的转运试验证实,HvPIP1;3和HvPIP1;4都能够转运硼。这些HvPIP1基因在硼转运中的生理作用尚不确定,因为它们的表达对硼营养状况没有反应,并且在毒性条件下仍继续表达。

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