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Differential Regulation of Starch-synthetic Gene Expression in Endosperm Between Indica and Japonica Rice Cultivars

机译:籼稻和粳稻胚乳中胚乳淀粉合成基因表达的差异调节

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BackgroundGrain filling rates (GFRs) of indica rice cultivars are often higher than those of japonica cultivars. Although GFR is mainly determined by the starch accumulation rate (SAR) in endosperm, the genetic basis for SAR during the ripening period has not been well studied in rice. To elucidate the factors influencing the differing SARs between typical indica and japonica cultivars, we focused on differences in sink potentials, especially on starch synthesis in the endosperm. ResultsSAR in indica rice cultivar IR36 was significantly higher than in japonica cultivar T65. Although enzymes for both amylose and amylopectin syntheses had higher activity in IR36, amylopectin synthesis was seemingly more important for accelerating SAR because an elevation of amylose synthesis ability alone in the T65 genetic background did not result in the same level of SAR as IR36. In IR36, most starch-synthetic genes (SSGs) in the endosperm were more highly expressed during ripening than in T65. In panicle culture experiments, the SSGs in rice endosperm were regulated in either sucrose-dependent or -independent manners, or both. All SSGs except SSI and BEIIa were responsive to sucrose in both cultivars, and GBSSI, AGPS2b and PUL were more responsive to sucrose in IR36. Interestingly, the GBSSI gene ( Wx sup a /sup) in IR36 was highly activated by sucrose, but the GBSSI gene ( Wx sup b /sup) in T65 was insensitive. In sucrose-independent regulation, AGPL2 , SSIIIa , BEI , BEIIb and ISA1 genes in IR36 were upregulated 1.5 to 2 times more than those in T65. Additionally, at least SSI and BEIIa might be regulated by unknown signals; that regulation pathway should be more activated in IR36 than T65. ConclusionsIn this study, at least three regulatory pathways seem to be involved in SSG expression in rice endosperm, and all pathways were more active in IR36. One of the factors leading to the high SAR of IR36 seemed to be an increase in the sink potential.
机译:籼稻品种的背景填充率(GFRS)通常高于粳稻品种。虽然GFR主要由胚乳中的淀粉累积率(SAR)决定,但在成熟时期的SAR遗传基础上并未在水稻中进行很好地研究。为了阐明影响典型籼稻和粳稻品种之间不同SARS的因素,我们专注于水槽电位的差异,特别是在胚乳中的淀粉合成。籼稻品种IR36的结果显着高于粳稻T65。虽然两种直链淀粉和淀粉素合成的酶在IR36中具有更高的活性,但是,即代粘菌素合成对于加速SAR看似更重要,因为在T65遗传背景中单独的直链淀粉合成能力的升高不会导致SAR的相同水平。在IR36中,在成熟过程中胚乳中的大多数淀粉合成基因(SSGS)比在T65中更高度表达。在胰蛋白培养实验中,水稻胚乳中的SSG在依赖于蔗糖依赖性或依赖性的方式或两者中受到调节。除了SSI和Beiia之外的所有SSGS对蔗糖在栽培品种中,并且GBSSI,AGPS2B和液体对IR36中的蔗糖更加敏感。有趣的是,IR36中的GBSSI基因(WX A )通过蔗糖高度激活,但T65中的GBSSI基因(WX B / SOP>)不敏感。在蔗糖相关的调节中,IR36中的AGPL2,SSIIIA,BEI,BEIIB和ISA1基因比T65中的那些上调1.5至2倍。此外,至少SSI和BEIIa可能由未知信号调节;该调节途径应在IR36中更加激活,而不是T65。结论本研究,至少三种调节途径似乎参与水稻胚乳中的SSG表达,所有途径在IR36中更活跃。导致IR36高SAR的因素之一似乎是水槽电位的增加。

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