Evolution and function of the sucrose-phosphate synthase gene families in wheat and other grasses

被引:122
作者
Castleden, CK
Aoki, N
Gillespie, VJ
MacRae, EA
Quick, WP
Buchner, P
Foyer, CH
Furbank, RT
Lunn, JE [1 ]
机构
[1] Rothamsted Res, Crop Performance & Improvement Div, Harpenden AL5 2JQ, Herts, England
[2] Univ Sheffield, Dept Anim & Plant Sci, Sheffield S10 2TN, S Yorkshire, England
[3] Australian Capital Terr, Canberra, ACT 2601, Australia
[4] CSIRO Plant Ind, Canberra, ACT, Australia
[5] HortRes, Mt Albert Res Ctr, Auckland, New Zealand
关键词
D O I
10.1104/pp.104.042457
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Suc-phosphate synthase (SPS) is a key regulatory enzyme in the pathway of Suc biosynthesis and has been linked to quantitative trait loci controlling plant growth and yield. In dicotyledonous plants there are three SPS gene families: A, B, and C. Here we report the finding of five families of SPS genes in wheat (Triticum aestivum) and other monocotyledonous plants from the family Poaceae (grasses). Three of these form separate subfamilies within the previously described A, B, and C gene families, but the other two form a novel and distinctive D family, which on present evidence is only found in the Poaceae. The D-type SPS proteins lack the phosphorylation sites associated with 14-3-3 protein binding and osmotic stress activation, and the linker region between the N-terminal catalytic glucosyltransferase domain and the C-terminal Suc-phosphatase-like domain is 80 to 90 amino acid residues shorter than in the A, B, or C types. The D family appears to have arisen after the divergence of mono- and dicotyledonous plants, with a later duplication event resulting in the two D-type subfamilies. Each of the SPS gene families in wheat showed different, but overlapping, spatial and temporal expression patterns, and in most organs at least two different SPS genes are expressed. Analysis of expressed sequence tags indicated similar expression patterns to wheat for each SPS gene family in barley (Hordeum vulgare) but not in more distantly related grasses. We identified an expressed sequence tag from rice (Oryza sativa) that appears to be derived from an endogenous antisense SPS gene, and this might account for the apparently low level of expression of the related OsSPS11 sense gene, adding to the already extensive list of mechanisms for regulating the activity of SPS in plants.
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页码:1753 / 1764
页数:12
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