Scientia Agricultura Sinica ›› 2014, Vol. 47 ›› Issue (4): 633-643.doi: 10.3864/j.issn.0578-1752.2014.04.003
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY·AGRICULTURE INFORMATION TECHNOLOGY • Previous Articles Next Articles
SHI De-Yang-1, 2 , ZHANG Hai-Yan-1, 3 , DONG Shu-Ting-2, 3
| [1]Wang X H. China corn processing industrial situation and outlook: starch and ethanol//Abstracts of the 58th starch convention 2007 in Detmold. Starch, 2007, 59(9): 454-465. [2]Gagan D S, Amrinder S B, Sukhcharn S, Dharmesh C S. Physicochemical, pasting, thermal and morphological characteristics of Indian water chestnut (Trapa natans) starch. Starch, 2009, 61(1): 35-42. [3]Wei C, Zhang J, Chen Y, Zhou W, Xu B, Wang Y, Chen J. Physicochemical properties and development of wheat large and small starch granules during endosperm development. Acta Physiology Plant, 2010, 32(5): 905-916. [4]银永安, 齐军仓, 李卫华, 曹连莆 王自布. 小麦胚乳A、B型淀粉理化特性研究. 中国农业科学, 2010, 43(11): 2372-2379. Yin Y A , Qi J C , Li W H, Cao L P, Wang Z B. Physico-Chemical characteristics of A, B type starch granule in wheat endosperm. Scientia Agricultura Sinica, 2010, 43(11): 2372-2379. (in Chinese) [5]Ao Z H, Jane J L. Characterization and modeling of the A- and B-granule starches of wheat, triticale, and barley. Carbohydrate Polymers, 2007, 67(1): 46-55. [6]Geera B P, Nelson J E, Souza E, Huber K C. Composition and properties of A- and B-type starch granules of wild-type, partial waxy, and waxy soft wheat. Cereal Chemistry, 2006, 83(5): 551-557. [7]陆大雷, 郭换粉, 董策, 陆卫平. 生长季节对糯玉米淀粉粒分布和热力学特性的影响. 作物学报, 2010, 36(11): 1998-2003.Lu D L, Guo H F, Dong C, Lu W P. Starch granule size distribution and thermal properties of waxy maize cultivars in growing seasons. Acta Agronomica Sinica, 2010, 36(11): 1998-2003. (in Chinese)[8]Tester R F. Influence of growth conditions on barley starch properties. International Journal of Biological Macromolecules, 1997, 21(1): 37-45. [9]Panozzo J F, Eagles H A. Cultivars and environmental effects on quality characters in wheat.Ⅰ. Starch. Australian Journal of Agricultural Research, 1998, 49(5): 757-766. [10]陆大雷, 郭换粉, 陆卫平. 播期、品种和拔节期追氮量对糯玉米淀粉粒分布的影响. 中国农业科学, 2011, 44(2): 263-270. Lu D L, Guo H F, Lu W P. Effects of sowing date, variety and nitrogen top-dressing at jointing stage on starch granule size distribution of waxy maize. Scientia Agricultura Sinica, 2011, 44(2): 263-270. (in Chinese)[11]Lu T, Jane J, Kewling P L, Singletary G W. Maize starch fine structures affected by ear developmental temperature. Carbohydrate Research, 1996, 282(1): 157-170. [12]刘海龙, 何萍, 金继运, 李文娟, 张宽, 王秀芳, 谢佳贵, 尹彩侠, 侯云鹏. 施氮对高淀粉玉米和普通玉米籽粒可溶性糖和淀粉积累的影响. 植物营养与肥料学报, 2009, 15(3): 493-500. Liu H L, He P, Jin J Y, Li W J, Zhang K, Wang X F, Xie J G, Yi C X, Hou Y P. Effects of nitrogen nutrition on sugar and starch accumulation on high starch maize and common maize. Plant Nutrition and Fertilizer Science, 2009, 15(3): 493-500. (in Chinese)[13]张智猛, 戴良香, 胡昌浩, 董树亭, 王空军. 氮素与玉米淀粉积累及相关酶活性的影响. 作物学报, 2005, 31(7): 956-962.Zhang Z M, Dai L X, Hu C H, Dong S T, Wang K J. Effect of nitrogen on starch accumulation and related enzyme activities maize. Acta Agronomica Sinica, 2005, 31(7): 956-962. (in Chinese)[14]Peng M, Gao M, Abdel-Aal E S M, Hucl P, Chibbar R N.Separation and characterization of A- and B-type starch granules in wheat endosperm. Cereal Chemistry, 1999, 76(3): 375-379. [15]Malouf R B, Hoseney R C. Wheat hardness: I. A method to measure endosperm tensile strength using tablets made from wheat flour. Cereal Chemistry, 1992, 69(2): 164-168. [16]何照范. 籽粒品质及其分析技术. 北京: 中国农业出版社, 1985: 290-297.He Z F. Grain Quality and Its Analysis Technology. Beijing: China Agricultural Press, 1985: 290-297. (in Chinese)[17]Park S, Wilson J D, Seabourn B W. Starch granule size distribution of hard red winter and hard red spring wheat: Its effects on mixing and breadmaking quality. Journal of Cereal Science, 2009, 49(1): 98-105. [18]Stoddard F L. Survey of starch particle-size distribution in wheat and related species. Cereal Chemistry, 1999, 76(1): 145-149. [19]Chojecki A J S, Gale M D, Bayliss M W. The number and sizes of starch granules in the wheat endosperm, and their association with grain weight. Annals of Botany, 1986, 58(6): 819-831. [20]Lindeboom N, Chang P R, Tyler R T. Analytical, biochemical and physicochemical aspects of starch granule size, with emphasis on small granule starches: A review. Starch, 2004, 56(3/4): 89-99. [21]Edith A, Ana P B R, Guadalupe M, Luís A B. Physicochemical and biochemical characterization of starch granules isolated of pigmented maize hybrids. Starch, 2008, 60(8): 433-441. [22]陆大雷, 郭换粉, 董策, 陆卫平. 普通、甜、糯玉米果穗不同部位籽粒淀粉理化特性和颗粒分布差异. 作物学报, 2011, 37(2): 331-338.Lu D L , Guo H F, Dong C, Lu W P. Starch physicochemical characteristics and granule size distribution at apical, middle and basal ear positions in normal, sweet, and waxy maize. Acta Agronomica Sinica, 2011, 37(2): 331-338. (in Chinese)[23]张丽, 张吉旺, 刘鹏, 董树亭. 不同淀粉含量玉米籽粒淀粉粒度分布特性. 中国农业科学, 2011, 44(8): 1596-1602.Zhang L, Zhang J W, Liu P, Dong S T. Starch granule size distribution in grains of maize with different starch contents. Scientia Agricultura Sinica, 2011, 44(8): 1596-1602. (in Chinese)[24]Rubí G U, Edith A, Ana P B R, Sandra LR, Luis A B. Physicochemical and enzyme characterization of small and large starch granules isolated from two maize cultivars. Cereal Chemistry, 2010, 87(1): 50-56. [25]Ji Y, Seetharaman K, Wong K L, Pollakc M, Duvickc S, Janea J, Whitea P J. Thermal and structure properties of unusual starches from developmental corn lines. Carbohydrate Polymers, 2003, 51(4): 439-450. [26]戴忠民, 尹燕枰, 张敏, 李文阳, 闫素辉, 蔡瑞国, 王振林. 旱作和补充灌溉条件下小麦籽粒淀粉粒粒度的分布特征. 作物学报, 2008, 34(5): 795-802.Dai Z M, Yin Y P, Zhang M, Li W Y, Yan S H, Cai R G, Wang Z L. Starch granule size distribution in wheat grains under irrigated and rainfed conditions. Acta Agronomica Sinica, 2008, 34(5): 795-802. (in Chinese)[27]Santisopasri V, Kurotjanawong K, Chotineeranat S P K, Srirothc K, Christopher G O. Impact of water stress on yield and quality of cassava starch. Industrial Crops and Products, 2001, 13(2): 115-129. [28]马东云, 郭天财, 王晨阳, 宋晓, 冯辉, 韩巧霞. 施氮水平对小麦籽粒淀粉粒度分布及淀粉粒糊化特性的影响. 西北农业学报, 2010, 19(11): 43-47.Ma D Y, Guo T C, Wang C Y, Song X, Feng H, Han Q X. Effects of nitrogen fertilizer application rate on starch granule size distribution and starch pasting propertiesin wheat (Triricum aestivum L.) grain. Acta Agriculturae Boreali-Occidentalis Sinica, 2010, 19(11): 43-47. (in Chinese)[29]Mar N N, Umemoto T, Ismail M, Abdullah S N A, Maziah M. Determination of amylopectin structure and physicochemical properties in rice endosperm starch of mutant lines derived from Malaysian rice cultivar MR219. Journal of the Science of Food and Agriculture, 2013, 93(1): 110-117.[30]Naka M, Sugimoto Y, Sakamoto S, Fuwa H. Some properties of large and small granules of waxy barley (Hordeum-vulgare L.) endosperm starch. Journal of Nutritional Science and Vitaminology, 1985, 31: 423-429. [31]Shi Y C, Seib P A. Fine structure of maize starches from four wx-containing genotypes of the W64A inbred line in relation to gelatinization and retrogradation. Carbohydrate Polymers, 1995, 26(2): 141-147.[32]Zhang C H, Jiang D, Liu F L, Cai J, Dai T B, Cao W X. Starch granules size distribution in superior and inferior grains of wheat is related to enzyme activities and their gene expressions during grain filling. Journal of Cereal Science, 2010, 51(2): 226-233. [33]Peng M, Gao M, Båga M, Hucl P, Chibbar R N. Starch-branching enzymes preferentially associated with A-type starch granules in wheat endosperm. Plant Physiology, 2000, 124(1): 265-272. [34]Tyynelä J, Stitt M, Lönneborg A, Smeekens S, Schulman A H. Metabolism of starch synthesis in developing grains of the shx shrunken mutant of barley (Hordeum vulgare). Plant Physiology, 1995, 93(1): 77-84. [35]王强, 赵宏伟. 氮素用量对春玉米淀粉合成酶的影响. 玉米科学, 2008, 16(5): 83-86.Wang Q, Zhao H W. Effects of nitrogen application on key enzyme in composing starch on spring maize. Journal of Maize Sciences, 2008, 16(5): 83-86. (in Chinese)[36]Raeker M Ö, Gaines C S, Finney P L, Donelson T. Granule size distribution and chemical composition of starches from 12 soft wheat cultivars. Cereal Chemistry, 1998, 75(5): 721-728. [37]戴忠民, 王振林, 张敏, 李文阳, 闫素辉, 蔡瑞国, 尹燕枰. 不同品质类型小麦籽粒淀粉粒度的分布特征. 作物学报, 2008, 34(3): 465-470.Dai Z M, Wang Z L, Zhang M, Li W Y, Yan S H, Cai R G, Yi Y P. Starch granule size distribution in grains of strong and weak gluten wheat cultivars. Acta Agronomica Sinica, 2008, 34(3): 465-470.[38]Svihus B, Uhlen A K, Harstad O M. Effect of starch granule structure, associated components and processing on nutritive value of cereal starch: A review. Animal Feed Science and Technology, 2005, 122(3): 303-320. [39]史春余, 姚海兰, 张立明, 柳洪鹃, 张超, 刘桂玲.不同类型甘薯品种块根淀粉粒粒度的分布特征. 中国农业科学, 2011, 44(21): 4537-4543.Shi C Y, Yao H L, Zhang L M, Liu H J, Zhang C, Zhang G L. Starch granule size distribution in storage roots of different types of sweetpotato cultivars. Scientia Agricultura Sinica, 2011, 44(21): 4537-4543. (in Chinese) |
| [1] | WANG YaFei, YAN Peng, XUE JinTao, DONG XueRui, MENG FanQi, GUO LiNa, LUO Yi, ZHANG Juan, DONG ZhiQiang, LU Lin. Effects of Ethephon-Glycine Betaine-Salicylic Acid Mixture on Root System Architecture, Physiological Function and Yield of Maize Under Heat Stress [J]. Scientia Agricultura Sinica, 2026, 59(7): 1439-1455. |
| [2] | WANG JiaNuo, CHEN GuiPing, LI Pan, WANG LiPing, NAN YunYou, HE Wei, FAN ZhiLong, HU FaLong, CHAI Qiang, YIN Wen, ZHAO LiaoHao. Photo-Physiological Mechanism at Grain Filling Stage of No-Tillage with Plastic Re-Mulching to Increase Maize Yield in Oasis Irrigation Areas [J]. Scientia Agricultura Sinica, 2026, 59(6): 1189-1202. |
| [3] | ZHOU XinJie, REN Hao, CHEN YingLong, ZHANG JiWang, ZHAO Bin, REN BaiZhao, LIU Peng, WANG HongZhang. Effects of Calcium Peroxide on Root Morphology and Yield Formation of Summer Maize in Waterlogging Farmland [J]. Scientia Agricultura Sinica, 2026, 59(6): 1203-1216. |
| [4] | HE JiHang, ZHANG Qing, LÜ XiangYue, XUE JiQuan, XU ShuTu, LIU JianChao. Evaluation of Nitrogen Efficiency of Different Stay-Green Maize Hybrids [J]. Scientia Agricultura Sinica, 2026, 59(6): 1217-1230. |
| [5] | LI YongJuan, ZHANG YueTong, WANG YiBo, ZHAO ChangJiang, SONG Jie, CHEN XueLi, YAO Qin. Effects of Biochar Application on the Abundance and Community Composition of Nitrogen-Fixing Microbial nifH Gene in Soybean Rotation and Continuous Cropping Systems [J]. Scientia Agricultura Sinica, 2026, 59(6): 1272-1285. |
| [6] | LI SiYuan, LI HongPing, CHANG HongQing, ZHANG SenYan, LI SiJia, CUI XinFei, QIAO Po, ZENG Bo, LIU GuiZhen, LIU TianXue, TANG JiHua, LI ChaoHai. Effects of Density Increase on Dynamic Change of Yield and Agronomic Traits of Maize Cultivars with Different Plant Heights [J]. Scientia Agricultura Sinica, 2026, 59(5): 967-984. |
| [7] | DONG JinLong, ZHAO Ying, YU HaiBing, LÜ JianYe, QIN JiaQi, LIANG Chen, MING Bo, LI ShaoKun. Multi-Model Elucidating of Nutritional Quality Contributions to Maize Kernel Test Weight and Regional Heterogeneity [J]. Scientia Agricultura Sinica, 2026, 59(5): 985-995. |
| [8] | CHEN GuiPing, WEI JinGui, GUO Yao, LI Pan, WANG FeiEr, QIU HaiLong, FENG FuXue, YIN Wen. Synergistic Effects of Wide-Narrow Row and Density Enhancement on the Photosynthetic Characteristics and Resource Utilization of Maize in Oasis Irrigation Areas [J]. Scientia Agricultura Sinica, 2026, 59(2): 278-291. |
| [9] | ZHANG ZhiYong, TAN ShiChao, XIONG ShuPing, MA XinMing, WEI YiHao, WANG XiaoChun. Effects of Annual Water and Nitrogen Optimization on Yield and Nitrogen Migration of Wheat-Maize Rotation System in Irrigation Area of Northern Henan [J]. Scientia Agricultura Sinica, 2026, 59(2): 336-353. |
| [10] | WANG Feng, CHANG YunNi, WU ZhiDan, SUN Jun, JIANG FuYing, CHEN YuZhen, YU WenQuan. Effects of Long-Term Nitrogen Application on Soil Fungal Diversity, Functional Groups and Assembly Processes in Tea Gardens [J]. Scientia Agricultura Sinica, 2026, 59(2): 368-385. |
| [11] | ZHANG YiRu, HAN Xue, YAO XinJie, FENG Jun, WEI AiLi, LI WenChao, ZHANG Bin, HAN YuanHuai, LI HongYing. Integrated Multi-Omics Elucidates the Pigmentation Dynamics During Post-Harvest Maturation in Foxtail Millet (Setaria italica) [J]. Scientia Agricultura Sinica, 2025, 58(9): 1702-1718. |
| [12] | WEI WenHua, LI Pan, SHAO GuanGui, FAN ZhiLong, HU FaLong, FAN Hong, HE Wei, CHAI Qiang, YIN Wen, ZHAO LianHao. Response of Silage Maize Yield and Quality to Reduced Irrigation and Combined Organic-Inorganic Fertilizer in Northwest Irrigation Areas [J]. Scientia Agricultura Sinica, 2025, 58(8): 1521-1534. |
| [13] | XUE YuQi, ZHAO JiYu, SUN WangSheng, REN BaiZhao, ZHAO Bin, LIU Peng, ZHANG JiWang. Effects of Different Nitrogen Forms on Yield and Quality of Summer Maize [J]. Scientia Agricultura Sinica, 2025, 58(8): 1535-1549. |
| [14] | CHEN GuiPing, LI Pan, SHAO GuanGui, WU XiaYu, YIN Wen, ZHAO LianHao, FAN ZhiLong, HU FaLong. The Regulatory Effect of Reduced Irrigation and Combined Organic- Inorganic Fertilizer Application on Stay-Green Characteristics in Silage Maize Leaves After Tasseling Stage [J]. Scientia Agricultura Sinica, 2025, 58(7): 1381-1396. |
| [15] | YUE RunQing, LI WenLan, DING ZhaoHua, MENG ZhaoDong. Molecular Characteristics and Resistance Evaluation of Transgenic Maize LD05 with Stacked Insect and Herbicide Resistance Traits [J]. Scientia Agricultura Sinica, 2025, 58(7): 1269-1283. |
|
||