Giroux M J, Morris C F
Plant, Soil and Environmental Sciences Department, P.O. Box 173120, Montana State University, Bozeman, MT 59717-312, USA.
Proc Natl Acad Sci U S A. 1998 May 26;95(11):6262-6. doi: 10.1073/pnas.95.11.6262.
"Soft" and "hard" are the two main market classes of wheat (Triticum aestivum L.) and are distinguished by expression of the Hardness gene. Friabilin, a marker protein for grain softness (Ha), consists of two proteins, puroindoline a and b (pinA and pinB, respectively). We previously demonstrated that a glycine to serine mutation in pinB is linked inseparably to grain hardness. Here, we report that the pinB serine mutation is present in 9 of 13 additional randomly selected hard wheats and in none of 10 soft wheats. The four exceptional hard wheats not containing the serine mutation in pinB express no pinA, the remaining component of the marker protein friabilin. The absence of pinA protein was linked inseparably to grain hardness among 44 near-isogenic lines created between the soft variety Heron and the hard variety Falcon. Both pinA and pinB apparently are required for the expression of grain softness. The absence of pinA protein and transcript and a glycine-to-serine mutation in pinB are two highly conserved mutations associated with grain hardness, and these friabilin genes are the suggested tightly linked components of the Hardness gene. A previously described grain hardness related gene termed "GSP-1" (grain softness protein) is not controlled by chromosome 5D and is apparently not involved in grain hardness. The association of grain hardness with mutations in both pinA or pinB indicates that these two proteins alone may function together to effect grain softness. Elucidation of the molecular basis for grain hardness opens the way to understanding and eventually manipulating this wheat endosperm property.
“软质”和“硬质”是小麦(普通小麦)的两种主要市场类型,它们通过硬度基因的表达来区分。 friabilin是谷物软质(Ha)的标记蛋白,由两种蛋白质组成,分别是麦醇溶蛋白类吲哚a和b(分别为pinA和pinB)。我们之前证明,pinB中的甘氨酸到丝氨酸突变与谷物硬度紧密相连。在此,我们报告,在另外随机选择的13个硬质小麦中有9个存在pinB丝氨酸突变,而10个软质小麦中均不存在该突变。4个不含pinB丝氨酸突变的特殊硬质小麦不表达pinA,pinA是标记蛋白friabilin的另一个组成部分。在软质品种Heron和硬质品种Falcon之间创建的44个近等基因系中,pinA蛋白的缺失与谷物硬度紧密相关。pinA和pinB显然都是谷物软质表达所必需的。pinA蛋白和转录本的缺失以及pinB中的甘氨酸到丝氨酸突变是与谷物硬度相关的两个高度保守的突变,这些friabilin基因被认为是硬度基因紧密连锁的组成部分。之前描述的一个与谷物硬度相关的基因“GSP - 1”(谷物软质蛋白)不受5D染色体控制,显然也不参与谷物硬度的形成。谷物硬度与pinA或pinB中的突变之间的关联表明,这两种蛋白质单独作用可能共同影响谷物软质。对谷物硬度分子基础的阐明为理解并最终操控这种小麦胚乳特性开辟了道路。