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通过组织特异性互补对拟南芥AtSUC2蔗糖/H⁺同向转运体进行功能表征,揭示了其在韧皮部装载而非长距离运输中的重要作用。

Functional characterization of the Arabidopsis AtSUC2 Sucrose/H+ symporter by tissue-specific complementation reveals an essential role in phloem loading but not in long-distance transport.

作者信息

Srivastava Avinash C, Ganesan Savita, Ismail Ihab O, Ayre Brian G

机构信息

Department of Biological Sciences, University of North Texas, Denton, Texas 76203-5220, USA.

出版信息

Plant Physiol. 2008 Sep;148(1):200-11. doi: 10.1104/pp.108.124776. Epub 2008 Jul 23.

Abstract

AtSUC2 (At1g22710) encodes a phloem-localized sucrose (Suc)/H(+) symporter necessary for efficient Suc transport from source tissues to sink tissues in Arabidopsis (Arabidopsis thaliana). AtSUC2 is highly expressed in the collection phloem of mature leaves, and its function in phloem loading is well established. AtSUC2, however, is also expressed strongly in the transport phloem, where its role is more ambiguous, and it has been implicated in mediating both efflux and retrieval to and from flanking tissues via the apoplast. To characterize the role of AtSUC2 in controlling carbon partitioning along the phloem path, AtSUC2 cDNA was expressed from tissue-specific promoters in an Atsuc2 mutant background. Suc transport in this mutant is highly compromised, as indicated by stunted growth and the accumulation of large quantities of sugar and starch in vegetative tissues. Expression of AtSUC2 cDNA from the 2-kb AtSUC2 promoter was sufficient to restore growth and carbon partitioning to nearly wild-type levels. The GALACTINOL SYNTHASE promoter of Cucumis melo (CmGAS1p) confers expression only in the minor veins of mature leaves, not in the transport phloem of larger leaf veins and stems. Mutant plants expressing AtSUC2 cDNA from CmGAS1p had intermediate growth and accumulated sugar and starch, but otherwise they had normal morphology. These characteristics support a role for AtSUC2 in retrieval but not efflux along the transport phloem and show that the only vital function of AtSUC2 in photoassimilate distribution is phloem loading. In addition, Atsuc2 mutant plants, although debilitated, do grow, and AtSUC2-independent modes of phloem transport are discussed, including an entirely symplastic pathway from mesophyll cells to sink tissues.

摘要

AtSUC2(At1g22710)编码一种定位于韧皮部的蔗糖(Suc)/H⁺同向转运蛋白,它对于拟南芥(Arabidopsis thaliana)中蔗糖从源组织高效运输到库组织是必需的。AtSUC2在成熟叶片的收集韧皮部中高度表达,其在韧皮部装载中的功能已得到充分证实。然而,AtSUC2在运输韧皮部中也有强烈表达,其作用更为模糊,并且它被认为通过质外体介导蔗糖向侧翼组织的流出和从侧翼组织的回收。为了表征AtSUC2在控制沿韧皮部路径的碳分配中的作用,在Atsuc2突变体背景下,从组织特异性启动子表达AtSUC2 cDNA。如生长受阻以及营养组织中大量糖和淀粉的积累所示,该突变体中的蔗糖运输受到严重损害。从2 kb的AtSUC2启动子表达AtSUC2 cDNA足以将生长和碳分配恢复到接近野生型水平。甜瓜(Cucumis melo)的半乳糖醇合酶启动子(CmGAS1p)仅在成熟叶片的小叶脉中赋予表达,而不在大叶脉和茎的运输韧皮部中表达。从CmGAS1p表达AtSUC2 cDNA的突变体植株生长中等,积累了糖和淀粉,但在其他方面具有正常形态。这些特征支持AtSUC2在运输韧皮部中的回收而非流出中起作用,并表明AtSUC2在光合同化物分配中的唯一重要功能是韧皮部装载。此外,Atsuc2突变体植株虽然衰弱但仍能生长,并且讨论了不依赖AtSUC2的韧皮部运输模式,包括从叶肉细胞到库组织的完全共质体途径。

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