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Arabidopsis thaliana T-DNA Mutants Implicate GAUT Genes in the Biosynthesis of Pectin and Xylan in Cell Walls and Seed Testa

机译:拟南芥T-DNA突变体牵涉GAUT基因在细胞壁和种子种皮中果胶和木聚糖的生物合成中

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摘要

Galacturonosyltransferase 1 (GAUT1) is an α1,4-D-galacturonosyltransferase that transfers galacturonic acid from uridine 5′-diphosphogalacturonic acid onto the pectic polysaccharide homogalacturonan (Sterling et al., 2006). The 25-member Arabidopsis thaliana GAUT1-related gene family encodes 15 GAUT and 10 GAUT-like (GATL) proteins with, respectively, 56–84 and 42–53% amino acid sequence similarity to GAUT1. Previous phylogenetic analyses of AtGAUTs indicated three clades: A through C. A comparative phylogenetic analysis of the Arabidopsis, poplar and rice GAUT families has sub-classified the GAUTs into seven clades: clade A-1 (GAUTs 1 to 3); A-2 (GAUT4); A-3 (GAUTs 5 and 6); A-4 (GAUT7); B-1 (GAUTs 8 and 9); B-2 (GAUTs 10 and 11); and clade C (GAUTs 12 to 15). The Arabidopsis GAUTs have a distribution comparable to the poplar orthologs, with the exception of GAUT2, which is absent in poplar. Rice, however, has no orthologs of GAUTs 2 and 12 and has multiple apparent orthologs of GAUTs 1, 4, and 7 compared with either Arabidopsis or poplar. The cell wall glycosyl residue compositions of 26 homozygous T-DNA insertion mutants for 13 of 15 Arabidopsis GAUT genes reveal significantly and reproducibly different cell walls in specific tissues of gaut mutants 6, 8, 9, 10, 11, 12, 13, and 14 from that of wild-type Arabidopsis walls. Pectin and xylan polysaccharides are affected by the loss of GAUT function, as demonstrated by the altered galacturonic acid, xylose, rhamnose, galactose, and arabinose composition of distinct gaut mutant walls. The wall glycosyl residue compositional phenotypes observed among the gaut mutants suggest that at least six different biosynthetic linkages in pectins and/or xylans are affected by the lesions in these GAUT genes. Evidence is also presented to support a role for GAUT11 in seed mucilage expansion and in seed wall and mucilage composition.
机译:半乳糖醛糖基转移酶1(GAUT1)是一种α1,4-D-半乳糖醛糖基转移酶,可将半乳糖醛酸从尿苷5'-二磷酸半乳糖醛酸转移到果胶多糖同半乳糖醛酸上(Sterling等,2006)。具有25个成员的拟南芥GAUT1相关基因家族编码15个GAUT和10个GAUT样(GATL)蛋白,分别与GAUT1的氨基酸序列相似性为56–84和42–53%。以前对AtGAUTs进行的系统发育分析显示了3个进化枝:A到C。对拟南芥,杨树和水稻GAUT家族的比较系统发育分析将GAUTs细分为7个进化枝:A-1进化枝(GAUTs 1至3);进化枝A-1(GAUTs 1至3)。 A-2(GAUT4); A-3(GAUT 5和6); A-4(GAUT7); B-1(GAUT 8和9); B-2(GAUT 10和11);和进化枝C(GAUT 12至15)。拟南芥GAUTs的分布与杨树直系同源物相当,但杨树中不存在GAUT2。然而,与拟南芥或杨树相比,水稻没有GAUT 2和12的直系同源物,并且具有GAUT 1、4和7的多个表观直系同源物。 15个拟南芥GAUT基因中的13个的26个纯合T-DNA插入突变体的细胞壁糖基残基组成揭示了gaut突变体6、8、9、10、11、12、13和14特定组织中的细胞壁显着且可重复地不同。来自野生型拟南芥壁。果胶和木聚糖多糖受GAUT功能丧失的影响,如不同的gaut突变体壁的半乳糖醛酸,木糖,鼠李糖,半乳糖和阿拉伯糖组成的变化所证明。在gaut突变体中观察到的壁糖基残基组成表型表明,果胶和/或木聚糖中至少有六个不同的生物合成键受到这些GAUT基因中病变的影响。还提供了证据支持GAUT11在种子粘液扩展以及种子壁和粘液成分中的作用。

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