Guo Jian, Wang Zitao, Qu Lingling, Hao Derong, Lu Dalei
Jiangsu Key Laboratory of Crop Genetics and Physiology/Jiangsu Key Laboratory of Crop Cultivation and Physiology/Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Agricultural College of Yangzhou University, Yangzhou 225009, PR China.
Jiangsu Yanjiang Institute of Agricultural Sciences, Nantong 226012, PR China.
Food Chem X. 2023 Jan 6;17:100561. doi: 10.1016/j.fochx.2023.100561. eCollection 2023 Mar 30.
Heterosis on maize yield and quality is highly variable and depends on parental selection. This study investigated and compared the starch structure and physicochemical properties among four sweet-waxy maize lines, four waxy maize lines, and their eight reciprocal F1 hybrids. Compared with the sweet-waxy maize, waxy maize and F1 hybrids had lower extent of branching of amylopectin and relative crystallinity, and larger starch granule size. Waxy maize starch had higher breakdown viscosity and retrogradation percentage, and lower setback viscosity and gelatinization enthalpy than the sweet-waxy maize starch. Meanwhile, the peak and setback viscosities, and retrogradation enthalpy of most F1 hybrid starches were higher than those of their female parent, while gelatinization enthalpy was the opposite. The F1 hybrid starches had higher onset temperature and retrogradation percentage and lower gelatinization enthalpy than their male parent in general. In conclusion, this study provides a framework for the production of new hybrids.
玉米产量和品质的杂种优势高度可变,且取决于亲本选择。本研究调查并比较了四个甜糯玉米自交系、四个糯玉米自交系及其八个正反交F1杂种的淀粉结构和理化性质。与甜糯玉米相比,糯玉米和F1杂种的支链淀粉分支程度和相对结晶度较低,淀粉颗粒尺寸较大。糯玉米淀粉比甜糯玉米淀粉具有更高的崩解粘度和回生百分比,以及更低的反弹粘度和糊化焓。同时,大多数F1杂种淀粉的峰值粘度、反弹粘度和回生焓高于其母本,而糊化焓则相反。总体而言,F1杂种淀粉的起始温度和回生百分比高于其父本,糊化焓则较低。总之,本研究为新型杂种的生产提供了一个框架。