Jiangsu Key Laboratory of Crop Genetics and Physiology/Jiangsu Key Laboratory of Crop Genomics and Molecular Breeding, College of Agriculture, Yangzhou University, Yangzhou, China.
Key Laboratory of Plant Functional Genomics of the Ministry of Education/Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, China.
J Sci Food Agric. 2019 Apr;99(6):2865-2873. doi: 10.1002/jsfa.9499. Epub 2018 Dec 30.
High temperature during the grain-filling stage is an important factor that can affect grain quality by altering the composition and structure of starch in rice. Therefore, it is important to study the regulatory mechanism of high temperature on rice starch biosynthesis.
Two japonica cultivars, the waxy rice Taihunuo and non-waxy Nangeng 5055 were used to examine the effect of high temperature on the fine structure of starch during the grain-filling stage. Analysis of starch chain length distribution indicated that exposure to a high temperature increased the content of starch with medium-long chains and decreased the starch with short chains in both rice varieties. The differences of amylopectin synthesis responding to high temperature between waxy and non-waxy rice can shed light on the interactions of amylose and amylopectin synthesis under high temperature conditions. In the non-waxy variety, the amylose biosynthesis may affect the short and medium-long amylopectin biosynthesis under high temperature. A mathematical fitting model was used to interpret the fine structure of amylopectin and a series of parameters with enzymatical significance (β and γ) were obtained. The fitting results showed that the waxy and non-waxy rice had similar responses to high temperature. The variations of the parameter response to high temperature was more remarkable in Taihunuo. Activity analysis of starch synthesis-related enzymes during the grain-filling stage demonstrated the reliability of model fitting results.
The influences of high temperature on the fine structure of starch are similar between waxy and non-waxy rice. Amylose biosynthesis may affect amylopectin biosynthesis under high temperature. © 2018 Society of Chemical Industry.
在灌浆期,高温是影响稻米品质的一个重要因素,它通过改变淀粉的组成和结构来影响淀粉。因此,研究高温对水稻淀粉生物合成的调控机制非常重要。
本研究以糯稻泰恢 1122 和非糯稻南粳 5055 为材料,分析高温对灌浆期稻米淀粉精细结构的影响。淀粉链长分布分析表明,高温处理增加了两种水稻中中长链淀粉的含量,降低了短链淀粉的含量。糯稻和非糯稻对高温响应的差异反映了直链淀粉和支链淀粉在高温条件下合成的相互作用。在非糯稻中,直链淀粉生物合成可能会影响高温下短链和中长链支链淀粉的生物合成。采用数学拟合模型来解释支链淀粉的精细结构,并获得了一系列具有酶学意义的参数(β和γ)。拟合结果表明,糯稻和非糯稻对高温的响应相似。参数对高温变化的响应在泰恢 1122 中的变化更为显著。灌浆期淀粉合成相关酶活性分析验证了模型拟合结果的可靠性。
高温对糯稻和非糯稻淀粉精细结构的影响相似。直链淀粉生物合成可能会影响高温下支链淀粉的生物合成。 © 2018 英国化学学会。