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Increased Lysine and Seed Storage Protein in Rice Plants Recovered from Calli Selected with Inhibitory Levels of Lysine plus Threonine and S-(2-Aminoethyl)cysteine

机译:从抑制赖氨酸加苏氨酸和S-(2-氨基乙基)半胱氨酸水平的愈伤组织中恢复的水稻植株中赖氨酸和种子贮藏蛋白的增加

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摘要

Experiments were designed to test whether variation in percent lysine in seed proteins could be recovered in plants regenerated from callus subjected to inhibitory levels of lysine plus threonine. Anther-derived callus was subjected to 1 millimolar lysine plus threonine for three successive passages and then once to the same concentration of S-(2-aminoethyl)cysteine. Plants were regenerated from the resistant callus. Plants recovered directly from tissue culture were normal in color, size and were 50% or less fertile. Second and third generation plants produced a wide range of variants including albinos, deep green plants both short and tall, and totally fertile as well as partially fertile plants. All regenerated plants produced chalky or opaque seed. One unique second generation line had 14% more lysine in seed storage proteins than the controls. This characteristic was transmitted to the next generation. The high lysine plants had reduced seed size with significantly higher levels of seed storage protein than the controls. The phenotypes recovered provide experimental materials for basic studies in protein synthesis and lysine metabolism and may become a source of material for rice breeding.
机译:设计实验以测试在受抑制水平的赖氨酸和苏氨酸的条件下,从愈伤组织再生的植物中是否可以回收种子蛋白中赖氨酸百分比的变化。花药来源的愈伤组织接受1毫摩尔的赖氨酸加苏氨酸进行三次连续传代,然后一次达到相同浓度的S-(2-氨乙基)半胱氨酸。从抗性愈伤组织再生植物。直接从组织培养物中回收的植物的颜色,大小均正常,可育率为50%或更低。第二代和第三代植物产生了多种变体,包括白化病,矮而高的深绿色植物,完全可育以及部分可育的植物。所有再生的植物产生的垩白或不透明种子。一种独特的第二代品系的种子贮藏蛋白中的赖氨酸比对照多14%。该特性被传递给下一代。高赖氨酸植物的种子大小减小,且种子贮藏蛋白水平明显高于对照。回收的表型为蛋白质合成和赖氨酸代谢的基础研究提供了实验材料,并可能成为水稻育种的材料来源。

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