University of Wisconsin-Madison, Department of Agronomy, Madison, WI 53706, USA.
Plant Physiol Biochem. 2011 Jan;49(1):39-45. doi: 10.1016/j.plaphy.2010.09.019. Epub 2010 Oct 8.
The objective of this study was to determine if developing barley (Hordeum vulgare L.) seeds had differences in β-amylase 1 (Bmy1) mRNA accumulation, β-amylase (EC 3.2.1.2) activity, β-amylase protein accumulation, and total protein levels during late seed development from genotypes with different Bmy1 intron III alleles. Two North American malting barley cultivars (Hordeum vulgare ssp. vulgare) were chosen to represent the Bmy1.a and Bmy1.b alleles and, due to limited Bmy1 intron III allele variation in North American cultivars, two wild barleys (Hordeum vulgare ssp. spontaneum) were chosen to represent the Bmy1.c and Bmy1.d alleles. Wild barleys Ashqelon (Bmy1.c) and PI 296897 (Bmy1.d) had 2.5- to 3-fold higher Bmy1 mRNA levels than cultivars Legacy (Bmy1.a) and Harrington (Bmy1.b). Levels of Bmy1 mRNA were not significantly different between cultivated or between wild genotypes. In all four genotypes Bmy1 mRNA levels increased from 17 to 19 days after anthesis (DAA) and remained constant from 19 to 21 DAA. Ashqelon and PI 296897 had more β-amylase activity on a fresh weight basis than Legacy and Harrington at all developmental stages. β-Amylase protein levels increased from 17 DAA to maturity in all genotypes. Total protein in grains from wild genotypes was significantly higher than cultivated genotypes at all developmental stages. Higher levels of total protein in Ashqelon and PI 296897 could explain their higher levels of β-amylase activity, when expressed on a fresh weight basis. When β-amylase activities are expressed on a protein basis there are no statistical differences between the wild and cultivated barleys at maturity.
本研究旨在确定不同 Bmy1 内含子 III 等位基因的北美商业大麦品种和野生大麦在种子晚期发育过程中,β-淀粉酶 1(Bmy1)mRNA 积累、β-淀粉酶(EC 3.2.1.2)活性、β-淀粉酶蛋白积累和总蛋白水平是否存在差异。选择了两个北美麦芽大麦品种(Hordeum vulgare ssp. vulgare)来代表 Bmy1.a 和 Bmy1.b 等位基因,由于北美品种中 Bmy1 内含子 III 等位基因变异有限,选择了两个野生大麦(Hordeum vulgare ssp. spontaneum)来代表 Bmy1.c 和 Bmy1.d 等位基因。野生大麦 Ashqelon(Bmy1.c)和 PI 296897(Bmy1.d)的 Bmy1 mRNA 水平比品种 Legacy(Bmy1.a)和 Harrington(Bmy1.b)高 2.5-3 倍。在所有四个基因型中,Bmy1 mRNA 水平从授粉后 17 天(DAA)到 19 天增加,并从 19 天到 21 天保持不变。在所有发育阶段,Ashqelon 和 PI 296897 的 Bmy1 酶活性均高于 Legacy 和 Harrington。在所有基因型中,β-淀粉酶蛋白水平从 17 DAA 增加到成熟。在所有发育阶段,野生基因型的籽粒总蛋白含量均显著高于栽培基因型。Ashqelon 和 PI 296897 的总蛋白水平较高,这可以解释其在新鲜重量基础上的β-淀粉酶活性较高。当以蛋白质基础表示β-淀粉酶活性时,在成熟时野生大麦和栽培大麦之间没有统计学差异。