首页> 美国卫生研究院文献>Journal of Experimental Botany >Deficiencies in both starch synthase IIIa and branching enzyme IIb lead to a significant increase in amylose in SSIIa-inactive japonica rice seeds
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Deficiencies in both starch synthase IIIa and branching enzyme IIb lead to a significant increase in amylose in SSIIa-inactive japonica rice seeds

机译:淀粉合酶IIIa和分支酶IIb的缺乏都会导致无SSIIa的粳稻种子中直链淀粉的显着增加

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摘要

Starch synthase (SS) IIIa has the second highest activity of the total soluble SS activity in developing rice endosperm. Branching enzyme (BE) IIb is the major BE isozyme, and is strongly expressed in developing rice endosperm. A mutant (ss3a/be2b) was generated from wild-type japonica rice which lacks SSIIa activity. The seed weight of ss3a/be2b was 74–94% of that of the wild type, whereas the be2b seed weight was 59–73% of that of the wild type. There were significantly fewer amylopectin short chains [degree of polymerization (DP) ≤13] in ss3a/be2b compared with the wild type. In contrast, the amount of long chains (DP ≥25) connecting clusters of amylopectin in ss3a/be2b was higher than in the wild type and lower than in be2b. The apparent amylose content of ss3a/be2b was 45%, which was >1.5 times greater than that of either ss3a or be2b. Both SSIIIa and BEIIb deficiencies led to higher activity of ADP-glucose pyrophosphorylase (AGPase) and granule-bound starch synthase I (GBSSI), which partly explains the high amylose content in the ss3a/be2b endosperm. The percentage apparent amylose content of ss3a and ss3a/be2b at 10 days after flowering (DAF) was higher than that of the wild type and be2b. At 20 DAF, amylopectin biosynthesis in be2b and ss3a/be2b was not observed, whereas amylose biosynthesis in these lines was accelerated at 30 DAF. These data suggest that the high amylose content in the ss3a/be2b mutant results from higher amylose biosynthesis at two stages, up to 20 DAF and from 30 DAF to maturity.
机译:在发育的水稻胚乳中,淀粉合酶(SS)IIIa的活性在总可溶性SS活性中排名第二。分支酶(BE)IIb是主要的BE同功酶,在正在发育的水稻胚乳中强烈表达。从缺乏SSIIa活性的野生型粳稻中产生了一个突变体(ss3a / be2b)。 ss3a / be2b的种子重量为野生型的74-94%,而be2b种子的重量为野生型的59-73%。与野生型相比,ss3a / be2b中支链淀粉的短链[聚合度(DP)≤13]显着减少。相比之下,ss3a / be2b中支链淀粉的长链(DP≥25)连接簇的数量高于野生型,而低于be2b。 ss3a / be2b的表观直链淀粉含量为45%,比ss3a或be2b的直链淀粉含量高1.5倍以上。 SSIIIa和BEIIb的缺乏都导致ADP-葡萄糖焦磷酸化酶(AGPase)和颗粒结合的淀粉合酶I(GBSSI)的更高活性,部分解释了ss3a / be2b胚乳中的直链淀粉含量高。开花后10天(DAF),ss3a和ss3a / be2b的表观直链淀粉含量高于野生型和be2b。在20 DAF时,未观察到be2b和ss3a / be2b中支链淀粉的生物合成,而在30 DAF时,这些品系中的直链淀粉生物合成得到加速。这些数据表明,ss3a / be2b突变体中的直链淀粉含量较高,是由于在两个阶段(最高20 DAF和30 DAF到成熟)较高的直链淀粉生物合成导致的。

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