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玉米热休克蛋白的遗传分析。

Genetic analysis of heat shock proteins in maize.

机构信息

Plant Molecular Genetics Laboratory, Department of Plant and Soil Science and Institute for Biotechnology, Texas Tech University, Mail Stop 2122, 79409, Lubbock, TX, USA.

出版信息

Theor Appl Genet. 1995 Jul;91(1):38-46. doi: 10.1007/BF00220856.

Abstract

A genetic analysis of heat shock protein (HSP) synthesis was performed in seedling leaf tissue of two maize inbred lines, their F1 hybrid and F2 progeny. Protein synthesis following a high temperature treatment was visualized by [(35)S]-methionine in vivo labelling and two-dimensional gel electrophoresis. The parental lines' HSP synthesis patterns revealed both qualitative and quantitative polymorphisms implicative of differences in HSP structural genes and regulatory factors. The F1 hybrid HSP profile indicated that synthesis of all parental HSPs conformed to dominant inheritance patterns, including complete dominance, over-dominance and co-dominance. Alleles for six low-molecularweight HSPs in F2 progeny assorted according to typical 3∶1 Mendelian ratios for dominant gene expression. There is evidence for unlinked gene loci of four different HSP gene pairs, but data for three other HSP gene pairs were inconclusive, perhaps reflecting linkage for one pair and complex regulatory factor interactions for the other two pairs of genes. These results clearly indicate the existence of genetic variability in HSP synthesis and emphasize the potential of partitioning their roles in thermal tolerance using genetic and molecular analyses.

摘要

对两个玉米自交系及其 F1 杂种和 F2 后代的幼苗叶片组织中的热休克蛋白(HSP)合成进行了遗传分析。通过 [(35)S]-蛋氨酸的体内标记和二维凝胶电泳来可视化高温处理后的蛋白质合成。亲本系的 HSP 合成模式显示出定性和定量的多态性,表明 HSP 结构基因和调节因子存在差异。F1 杂种的 HSP 图谱表明,所有亲本 HSP 的合成均符合显性遗传模式,包括完全显性、过显性和共显性。F2 后代中六种低分子量 HSP 的等位基因按照典型的 3∶1 显性基因表达孟德尔比率进行分配。有证据表明,四个不同 HSP 基因对的基因座是不连锁的,但对于另外三个 HSP 基因对的数据尚无定论,这可能反映出一对基因的连锁和另外两对基因的复杂调节因子相互作用。这些结果清楚地表明 HSP 合成存在遗传变异性,并强调了使用遗传和分子分析来划分其在耐热性中的作用的潜力。

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