[1] ZOHARY D. The origin and early spread of agriculture in the Old World[J]. Developments in Agricultural and Managed Forest,1986:3-20 [2] DE CASTRO O,GARGIULO R,GUACCHIOE D,et al. A molecular survey concerning the origin of Cyperus esculentus (Cyperaceae,poales):two sides of the same coin (weed vs.crop)[J]. Ann Bot,2015(5):733-745 [3] 阳振乐. 油莎豆的特性及其研究进展[J]. 北方园艺,2017(17):192-201 [4] 张遂申. 油莎草生长发育及其块茎在土层中分布状况观察[J]. 中国油料,1982,2:69-71 [5] SANCHEZ-ZAPATA E,FERNANDEZ-LOPEZ J,PEREZ-ALVAREZ J A. Tiger Nut (Cyperus esculentus) commercialization:health aspects,composition,properties,and food applications[J]. Comprehensive Reviews in Food Science & Food Safety,2012,11(4):366-377 [6] ARAFAT S M,GAAFAR A M,BA SUNY A M,et al. Chufa tubers (Cyperus esculentus L.):As a New Source of Food[J]. World Applied Sciences Journal,2009,7(2):151-156 [7] BADO S,BAZONGO P,SON G,et al. Physicochemical characteristics and composition of three morphotypes of Cyperus esculentus tubers and tuber oils[J]. Journal of Analytical Methods in Chemistry,2015,ID:673547 [8] MADUKA N,IRE F S. Tigernut plant and useful application of tigernut tubers (Cyperus esculentus)-A review[J]. Current Journal of Applied Science and Technology,2018,29(3):1-23 [9] 张学昆. 我国油莎豆产业研发进展报告[J]. 中国农村科技,2019,287:67-69 [10] PASCUAL B,MAROTO J V,LOPEZ-GALARZA S,et al. Chufa (Cyperus esculentus L. var. sativus Boeck):an unconventional crop,studies related to applications and cultivation[J]. Economic Botany,2000,54,439-448 [11] 焦兵阳,王英,尹诗慧,等. 油莎豆生物学特性、功能与遗传研究进展[J]. 现代农业,2021,1:40-44 [12] 张斌,刘晶,范仲学,等. 油莎豆引种试验及绿色高效栽培技术研究进展[J]. 山东农业科学,2019,51(3):147-150 [13] 金梦阳,段先琴,赵永国,等. 油莎豆干物质积累、分配及转化规律研究初报[J]. 西南农业学报,2010,23(2):475-479 [14] 李国平,杨鹭生,潘美云,等. 大粒油莎豆块茎中淀粉和蛋白质提取工艺研究[J]. 热带作物学报,2011,32(2):349-353 [15] CAMPBELL D R. Using phenotypic manipulations to study multivariate selection of floral trait associations[J]. Ann Bot,2009,103:1557-1566 [16] SOLERI D,CLEVELAND D A. Farmer selection and conservation of crop varieties.In:Goodman R M Ed. Encyclopedia of Plant and Crop Science[J]. Marcel Dekker,New York:Marcel Dekker Incorporated,2004,433-438 [17] 刘小慧,王重丽,王梦茹,等. 圭亚那柱花草苗期抗旱性评价及抗旱种质鉴定[J]. 草地学报,2020,28(04):956-967 [18] 张琦,魏臻武,闫天芳,等. 燕麦种质资源农艺性状遗传多样性的鉴定评价[J]. 草地学报,2021,29(02):309-316 [19] 徐海明,邱英雄,胡晋,等. 不同遗传距离聚类和抽样方法构建作物核心种质的比较[J]. 作物学报,2004,30(9):932-936 [20] 惠大丰,姜长鉴,莫惠栋. 数量性状基因图谱构建方法的比较[J]. 作物学报,1997,23(2):129-136 [21] 付凤玲,周树峰,潘光堂,等. 玉米耐旱系数的多元回归分析[J]. 作物学报,2003,29(3):468-472 [22] 梁国玲,刘文辉,马祥. 590份皮燕麦种质资源穗部性状遗传多样性分析[J]. 草地学报,2021,29(3):495-503. [23] 李培富,杨淑琴,马宏伟. 宁夏水稻主要农艺性状的主成分及聚类分析[J]. 中国农学通报,2006,22(12):162-166 [24] 罗珊,康玉凡,濮绍京,等. 黑河地区55份大豆品种资源农艺性状和营养成分的聚类分析[J]. 大豆科学,2009,28(3):421-425 |