Fujita Naoko, Toyosawa Yoshiko, Utsumi Yoshinori, Higuchi Toshiyuki, Hanashiro Isao, Ikegami Akira, Akuzawa Sayuri, Yoshida Mayumi, Mori Akiko, Inomata Kotaro, Itoh Rumiko, Miyao Akio, Hirochika Hirohiko, Satoh Hikaru, Nakamura Yasunori
Department of Biological Production, Akita Prefectural University, Akita City, Akita, 010-0195 Japan.
J Exp Bot. 2009;60(3):1009-23. doi: 10.1093/jxb/ern349. Epub 2009 Feb 3.
Rice (Oryza sativa) allelic sugary1 (sug1) mutants defective in isoamylase 1 (ISA1) accumulate varying levels of starch and phytoglycogen in their endosperm, and the activity of a pullulanase-type of a debranching enzyme (PUL) was found to correlate closely with the severity of the sug1 phenotype. Thus, three PUL-deficient mutants were generated to investigate the function of PUL in starch biosynthesis. The reduction of PUL activity had no pleiotropic effects on the other enzymes involved in starch biosynthesis. The short chains (DP < or = 13) of amylopectin in PUL mutants were increased compared with that of the wild type, but the extent of the changes was much smaller than that of sug1 mutants. The alpha-glucan composition [amylose, amylopectin, water-soluble polysaccharide (WSP)] and the structure of the starch components (amylose and amylopectin) of the PUL mutants were essentially the same, although the average chain length of the B(2-3) chains of amylopectin in the PUL mutant was approximately 3 residues longer than that of the wild type. The double mutants between the PUL-null and mild sug1 mutants still retained starch in the outer layer of endosperm tissue, while the amounts of WSP and short chains (DP < or = 7) of amylopectin were higher than those of the sug1 mutant; this indicates that the PUL function partially overlaps with that of ISA1 and its deficiency has a much smaller effect on the synthesis of amylopectin than ISA1 deficiency and the variation of the sug1 phenotype is not significantly dependent on the PUL activities.
水稻(Oryza sativa)中异淀粉酶1(ISA1)缺陷的等位基因 sugary1(sug1)突变体在其胚乳中积累不同水平的淀粉和植物糖原,并且发现一种支链淀粉酶型脱支酶(PUL)的活性与 sug1 表型的严重程度密切相关。因此,构建了三个 PUL 缺陷突变体以研究 PUL 在淀粉生物合成中的功能。PUL 活性的降低对参与淀粉生物合成的其他酶没有多效性影响。与野生型相比,PUL 突变体中支链淀粉的短链(DP≤13)增加,但变化程度远小于 sug1 突变体。尽管 PUL 突变体中支链淀粉的 B(2-3)链的平均链长比野生型长约 3 个残基,但 PUL 突变体的α-葡聚糖组成[直链淀粉、支链淀粉、水溶性多糖(WSP)]和淀粉成分(直链淀粉和支链淀粉)的结构基本相同。PUL 缺失和轻度 sug1 突变体之间的双突变体在胚乳组织外层仍保留淀粉,而 WSP 和支链淀粉的短链(DP≤7)的量高于 sug1 突变体;这表明 PUL 功能部分与 ISA1 重叠,其缺失对支链淀粉合成的影响远小于 ISA1 缺失,并且 sug1 表型的变化并不显著依赖于 PUL 活性。