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玉米(Zea mays L.)中四个新的β-微管蛋白基因的特征及其在雄花发育过程中的表达

Characterization of four new beta-tubulin genes and their expression during male flower development in maize (Zea mays L.).

作者信息

Villemur R, Haas N A, Joyce C M, Snustad D P, Silflow C D

机构信息

Department of Genetics & Cell Biology, University of Minnesota, St. Paul 55108.

出版信息

Plant Mol Biol. 1994 Jan;24(2):295-315. doi: 10.1007/BF00020169.

Abstract

Four different beta-tubulin coding sequences were isolated from a cDNA library prepared from RNA from maize seedling shoots. The four genes (designated tub4, tub6, tub7 and tub8) represented by these cDNA clones together with the tub1 and tub2 genes reported previously encode six beta-tubulin isotypes with 90-97.5% amino acid sequence identity. Results from phylogenetic analysis of 17 beta-tubulin genes from monocot and dicot plant species indicated that multiple extant lines of beta-tubulin genes diverged from a single precursor after the appearance of the two major subfamilies of alpha-tubulin genes described previously. Hybridization probes from the 3' non-coding regions of six beta-tubulin clones were used to quantify the levels of corresponding tubulin transcripts in different maize tissues including developing anthers and pollen. The results from these dot blot hybridization experiments showed that all of the beta-tubulin genes were expressed in most tissues examined, although each gene showed a unique pattern of differential transcript accumulation. The tub1 gene showed a high level of transcript accumulation in meristematic tissues and almost no accumulation in the late stages of anther development and in pollen. In contrast, the level of tub4 transcripts was very low during early stages of male flower development but increased markedly (more than 100 times) during the development of anthers and in pollen. Results from RNAse protection assays showed that this increased hybridization signal resulted from expression of transcripts from one or two genes closely related to tub4. The tub4-related transcripts were not present in shoot tissue. Transcripts from the tub2 gene accumulated to very low levels in all tissues examined, but reached the highest levels in young anthers containing microspore mother cells. RNAse protection assays were used to measure the absolute levels of alpha- and beta-tubulin transcripts in seedling shoot and in pollen. The alpha-tubulin gene subfamily I genes (tua1, tua2, tua4) contributed the great majority of alpha-tubulin transcripts in both shoot and pollen. Transcripts from the beta-tubulin genes tub4, tub6, tub7, and tub8 were predominant in shoot, but were much less significant than the tub4-related transcripts in pollen.

摘要

从玉米幼苗芽的RNA制备的cDNA文库中分离出四种不同的β-微管蛋白编码序列。这些cDNA克隆所代表的四个基因(命名为tub4、tub6、tub7和tub8)与先前报道的tub1和tub2基因一起编码六种β-微管蛋白亚型,其氨基酸序列同一性为90-97.5%。对单子叶和双子叶植物物种的17个β-微管蛋白基因进行系统发育分析的结果表明,在先前描述的α-微管蛋白基因的两个主要亚家族出现后,β-微管蛋白基因的多个现存谱系从单个前体分化而来。来自六个β-微管蛋白克隆的3'非编码区的杂交探针用于定量不同玉米组织(包括发育中的花药和花粉)中相应微管蛋白转录本的水平。这些斑点印迹杂交实验的结果表明,所有β-微管蛋白基因在大多数检测组织中都有表达,尽管每个基因都表现出独特的差异转录本积累模式。tub1基因在分生组织中显示出高水平的转录本积累,而在花药发育后期和花粉中几乎没有积累。相反,tub4转录本的水平在雄花发育早期非常低,但在花药发育和花粉发育过程中显著增加(超过100倍)。核糖核酸酶保护分析的结果表明,这种增加的杂交信号是由与tub4密切相关的一个或两个基因的转录本表达产生的。与tub4相关的转录本在芽组织中不存在。tub2基因的转录本在所有检测组织中积累到非常低的水平,但在含有小孢子母细胞的幼嫩花药中达到最高水平。核糖核酸酶保护分析用于测量幼苗芽和花粉中α-和β-微管蛋白转录本的绝对水平。α-微管蛋白基因亚家族I基因(tua1、tua2、tua4)在芽和花粉中贡献了绝大多数α-微管蛋白转录本。β-微管蛋白基因tub4、tub6、tub7和tub8的转录本在芽中占主导地位,但在花粉中比与tub4相关的转录本重要性低得多。

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