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遗传学证据表明,发育中的玉米胚乳中存在的两种蔗糖合酶同工酶至关重要,一种负责细胞壁完整性,另一种负责淀粉生物合成。

Genetic evidence that the two isozymes of sucrose synthase present in developing maize endosperm are critical, one for cell wall integrity and the other for starch biosynthesis.

作者信息

Chourey P S, Taliercio E W, Carlson S J, Ruan Y L

机构信息

US Department of Agriculture, Agricultural Research Service, Department of Plant Pathology, University of Florida, Gainesville 32611-0680, USA.

出版信息

Mol Gen Genet. 1998 Jul;259(1):88-96. doi: 10.1007/s004380050792.

DOI:10.1007/s004380050792
PMID:9738884
Abstract

In maize, two paralogous genes, Sh1 and Sus1, encode two biochemically similar isozymes of sucrose synthase, SS1 and SS2, respectively. Previous studies have attributed the mild starch deficiency of the shrunken1 (sh1) endosperm to the loss of the SS1 isozyme in the mutant. Here we describe the first mutation in the sucrose synthase1 (Sus1) gene, sus1-1, and the isolation of a double recessive genotype, sh1 sus1-1. Combined data from diverse studies, including Northern and Western analyses, RT-PCR and genomic PCR, cloning and sequencing data for the 3' region, show that the mutant sus1-1 gene has a complex pattern of expression, albeit at much reduced levels as compared to the Sus1 gene. Endosperm sucrose synthase activity in sh1 sus1-1 was barely 0.5% of the total activity in the Sh1 Sus1 genotype. Significantly, comparative analyses of Sh1 Sus1, sh1 Sus1 and sh1 sus1-1 genotypes have, for the first time, allowed us to dissect the relative contributions of each isozyme to endosperm development. Starch contents in endosperm of the three related genotypes were 100, 78 and 53%, respectively. Anatomical analyses, which confirmed the previously described early cell degeneration phenotype unique to the sh1 Sus1 endosperm, revealed no detectable difference between the two sh1 genotypes. We conclude that the SS1 isozyme plays the dominant role in providing the substrate for cellulose biosynthesis, whereas the SS2 protein is needed mainly for generating precursors for starch biosynthesis.

摘要

在玉米中,两个旁系同源基因Sh1和Sus1分别编码两种生化性质相似的蔗糖合酶同工酶SS1和SS2。先前的研究认为,皱缩1(sh1)胚乳中轻微的淀粉缺乏是由于突变体中SS1同工酶的缺失。本文我们描述了蔗糖合酶1(Sus1)基因的首个突变体sus1 - 1,并分离出双隐性基因型sh1 sus1 - 1。来自多种研究的综合数据,包括Northern和Western分析、RT - PCR和基因组PCR、3'区域的克隆和测序数据,表明突变体sus1 - 1基因具有复杂的表达模式,尽管与Sus1基因相比表达水平大幅降低。sh1 sus1 - 1胚乳中的蔗糖合酶活性仅为Sh1 Sus1基因型总活性的0.5%。重要的是,对Sh1 Sus1、sh1 Sus1和sh1 sus1 - 1基因型的比较分析首次使我们能够剖析每种同工酶对胚乳发育的相对贡献。三种相关基因型胚乳中的淀粉含量分别为100%、78%和53%。解剖分析证实了先前描述的sh1 Sus1胚乳特有的早期细胞退化表型,且未发现两种sh1基因型之间有可检测到的差异。我们得出结论:SS1同工酶在为纤维素生物合成提供底物方面起主导作用,而SS2蛋白主要是为淀粉生物合成生成前体所必需的。

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