UNESP -- São Paulo State University, Department of Food Engineering and Technology, Rua Cristovao Colombo, 2265, CEP 15054-000 Sao Jose Rio Preto, SP, Brazil.
USP -- University of Sao Paulo, Sao Carlos Institute of Chemistry, Avenida Trabalhador São-carlense 400, CEP 13560-590, 780, Sao Carlos, SP, Brazil.
Int J Biol Macromol. 2020 Nov 15;163:1333-1343. doi: 10.1016/j.ijbiomac.2020.07.181. Epub 2020 Jul 22.
This study evaluated the effect of amylases on the formation, and characteristics of retrograded starches using sweet potato (SPS), cassava (CAS) and high amylose maize (HAS) starches. The starches were gelatinized, hydrolyzed with fungal or maltogenic α-amylase, de-branched and retrograded. The modified starches were then analyzed for digestibility, chain size distribution, relative crystallinity and crystallite size, thermal properties and the proportion of double helices. CAS was the most susceptible and HAS the most resistant to the action of both enzymes. Amylolysis was efficient in forming resistant starch type 3 (RS3) and high levels (> 60%) were found for all starches. RS3 content was highly correlated with the proportion of chains with degrees of polymerization between 13 and 30 for all starches, especially for the root starches, while for HAS, the high amylose content and reduction in the size of amylose chains and very long amylopectin chains also deeply contributed for the RS3 formation. These sizes (DP 13-30) are best suited for the formation of a more crystalline, more perfect, and more strongly bonded structure, composed of larger crystallites, and with a higher concentration of double helices. High correlation coefficients were found between RS3, relative crystallinity, crystallites size, and enthalpy change.
本研究采用甘薯(SPS)、木薯(CAS)和高直链玉米(HAS)淀粉评价了淀粉酶对回生淀粉形成和特性的影响。对淀粉进行糊化、真菌或麦芽糊精α-淀粉酶水解、去分支和回生。然后对改性淀粉进行消化率、链长分布、相对结晶度和结晶粒度、热性能和双螺旋比例分析。CAS 对两种酶的作用最敏感,HAS 最耐受。淀粉水解在形成抗性淀粉 3 型(RS3)方面非常有效,所有淀粉的 RS3 含量都很高(>60%)。RS3 含量与所有淀粉中聚合度在 13 到 30 之间的链的比例高度相关,尤其是在根淀粉中,而对于 HAS,高直链淀粉含量和直链淀粉链和非常长的支链淀粉链的减小也为 RS3 的形成做出了重要贡献。这些大小(DP13-30)最适合形成更结晶、更完美、结合更紧密的结构,由更大的结晶和更高浓度的双螺旋组成。RS3、相对结晶度、结晶粒度和焓变之间存在高度相关系数。