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Wheat Granule-Bound Starch Synthase I and II Are Encoded by Separate Genes That Are Expressed in Different Tissues

机译:小麦颗粒结合的淀粉合酶I和II由在不同组织中表达的单独基因编码。

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摘要

Studies of waxy mutations in wheat and other cereals have shown that null mutations in genes encoding granule-bound starch synthase I (GBSSI) result in amylose-free starch in endosperm and pollen grains, whereas starch in other tissues may contain amylose. We have isolated a cDNA from waxy wheat that encodes GBSSII, which is thought to be responsible for the elongation of amylose chains in non-storage tissues. The deduced amino acid sequences of wheat GBSSI and GBSSII were almost 66% identical, while those of wheat GBSSII and potato GBSSI were 72% identical. GBSSII was expressed in leaf, culm, and pericarp tissue, but transcripts were not detected in endosperm tissue. In contrast, GBSSI expression was high in endosperm tissue. The expression of GBSSII mRNA in pericarp tissue was similar at the midpoints of the day and night periods. The GBSSII genes were mapped to chromosomes 2AL, 2B, and 2D, whereas GBSSI genes are located on group 7 chromosomes. Gel-blot analysis indicated that genes related to GBSSII also occur in barley, rice, and maize. The possible role of GBSSII in starch synthesis is discussed.
机译:对小麦和其他谷物中蜡质突变的研究表明,编码颗粒结合淀粉合酶I(GBSSI)的基因中的无效突变会导致胚乳和花粉粒中不含直链淀粉,而其他组织中的淀粉中可能含有直链淀粉。我们已经从蜡质小麦中分离出一个编码GBSSII的cDNA,据认为这是导致非存储组织中直链淀粉链延长的原因。小麦GBSSI和GBSSII的推导氨基酸序列几乎66%相同,而小麦GBSSII和马铃薯GBSSI的推导氨基酸序列72%相同。 GBSSII在叶,茎和果皮组织中表达,但在胚乳组织中未检测到转录本。相反,胚乳组织中GBSSI表达较高。在白天和晚上的中点,果皮组织中GBSSII mRNA的表达相似。 GBSSII基因位于2AL,2B和2D染色体,而GBSSI基因位于第7组染色体。凝胶印迹分析表明,与GBSSII相关的基因也存在于大麦,水稻和玉米中。讨论了GBSSII在淀粉合成中的可能作用。

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