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体内山梨醇生成的调控会改变烟草中硼的吸收与运输。

Manipulation of in vivo sorbitol production alters boron uptake and transport in tobacco.

作者信息

Bellaloui N, Brown PH, Dandekar AM

机构信息

Department of Pomology, University of California, Davis, California 95616, USA.

出版信息

Plant Physiol. 1999 Feb;119(2):735-42. doi: 10.1104/pp.119.2.735.

Abstract

Recent evidence that some species can retranslocate boron as complexes with sugar alcohols in the phloem suggests a possible mechanism for enhancing boron efficiency. We investigated the relationship between sugar alcohol (sorbitol) content, boron uptake and distribution, and translocation of foliar-applied, isotopically enriched 10B in three lines of tobacco (Nicotiana tabacum) plants differing in sorbitol production. In tobacco line S11, transformed with sorbitol-6-phosphate dehydrogenase, the production of sorbitol was accompanied by an increase in the concentration of boron in plant tissues and an increased uptake of boron compared with either tobacco line A4, transformed with antisense orientation of sorbitol-6-phosphate dehydrogenase, or wild-type tobacco (line SR1, zero-sorbitol producer). Foliar application of 10B to mature leaves was translocated to the meristematic tissues only in line S11. These results demonstrate that the concentration of the boron-complexing sugar alcohol in the plant tissue has a significant effect on boron uptake and distribution in plants, whereas the translocation of the foliar-applied 10B from the mature leaves to the meristematic tissues verifies that boron is mobile in sorbitol-producing plants (S11) as we reported previously. This suggests that selection or transgenic generation of cultivars with an increased sugar alcohol content can result in increased boron uptake, with no apparent negative effects on short-term growth.

摘要

最近有证据表明,一些物种可以在韧皮部中以糖醇复合物的形式重新转运硼,这提示了一种提高硼效率的可能机制。我们研究了在三种山梨醇产量不同的烟草(Nicotiana tabacum)植株中,糖醇(山梨醇)含量、硼吸收与分布以及叶面施用的同位素富集的¹⁰B的转运之间的关系。在转山梨醇-6-磷酸脱氢酶基因的烟草品系S11中,与转山梨醇-6-磷酸脱氢酶反义方向基因的烟草品系A4或野生型烟草(品系SR1,零山梨醇生产者)相比,山梨醇的产生伴随着植物组织中硼浓度的增加和硼吸收的增加。仅在品系S11中,向成熟叶片叶面施用¹⁰B后,¹⁰B被转运到分生组织。这些结果表明,植物组织中硼络合糖醇的浓度对植物中硼的吸收和分布有显著影响,而叶面施用的¹⁰B从成熟叶片向分生组织的转运证实了硼在产山梨醇的植物(S11)中是可移动的,正如我们之前报道的那样。这表明选择或通过转基因培育糖醇含量增加的品种可以导致硼吸收增加,而对短期生长没有明显的负面影响。

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