Page 87 - 《广西植物》2020年第2期
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     of hormones in superior and inferior spikelets and their  wheat ‘cv. Jingqiao 2’ [ J]. Cereal Res Commꎬ 3(44):
     relation with grain filling of super rice [J]. Chin J Rice Sciꎬ  393-403.
     26(3): 302-310. [付景ꎬ 徐云姬ꎬ 陈露ꎬ 等ꎬ 2012. 超级       LIANG CGꎬ WANG Yꎬ YU WJꎬ et al.ꎬ 2019. Progress in plant
     稻花后强、弱势粒淀粉合成相关酶活性和激素含量变化                           leaf starch degradation and starch excess research [ J]. J
     及其与籽粒灌浆的关系 [J]. 中国水稻科学ꎬ 26(3):                     Guizhou Norm Univ (Nat Sci Ed)ꎬ 37(3): 1-8. [梁成刚ꎬ
     302-310.]                                          汪燕ꎬ 喻武鹃ꎬ 等ꎬ 2019. 植物叶片淀粉分解与淀粉超量
   GONG QLꎬ FENG BLꎬ GAO JFꎬ et al.ꎬ 2008. Leaf senescence  积累研 究 [ J]. 贵 州 师 范 大 学 学 报 ( 自 然 科 学 版)ꎬ
     of different buckwheat genotypes at later growing stage  37(3):1-8.]
     [J]. Agric Res Arid Areasꎬ 26(5): 27-31. [巩巧玲ꎬ 冯佰  MUKASA Yꎬ 2011. Studies on new breeding methodologies and
     利ꎬ 高金锋ꎬ 等ꎬ 2008. 不同基因型荞麦生育后期叶片衰                    variety developments of two buckwheat species (Fagopyrum
     老特性研究 [J]. 干旱地区农业研究ꎬ 26(5):27-31.]                 esculentum Moench and F. tataricum Gaertn.) [J]. Res Bull
   JIANG Dꎬ YU ZWꎬ LI YGꎬ et al.ꎬ 2001. Changes of soluble  Naro Hokkaido Agric Res Cenꎬ (195): 57-114. [六笠裕
     sugar contents in leafꎬ stem and grain in winter wheat and its  治ꎬ 2011. ソ バ 属 栽 培 2 種 ( Fagopyrum esculentum
     relationship with grain starch accumulation [J]. J Triticeae  Moenchꎬ F. tataricum Gaertn.)の新たな育種法と育種に
     Cropsꎬ 21(3): 38 - 41. [ 姜 东ꎬ 于 振 文ꎬ 李 永 庚ꎬ 等ꎬ     関する研究 [J]. 北海道農業研究センター研究報告ꎬ
     2001. 冬小麦叶茎粒可溶性糖含量变化及其与籽冬小麦                        (195): 57-114.]
     叶茎粒可溶性糖含量变化及其与籽粒淀粉积累的关系                         MUKASA Yꎬ SUZUKI Tꎬ HONDA Yꎬ 2009. Suitability of rice ̄
     [J]. 麦类作物学报ꎬ 21(3):38-41.]                         tartary buckwheat for crossbreeding and for utilization of rutin
                              ˇ
   KALINOVÁ JPꎬ VRCHOTOVÁ Nꎬ TRÍSKA Jꎬ 2018. Contribu ̄  [J]. Jap Agric Res Quartꎬ 43 (3): 199-206.
     tion to the study of rutin stability in the achenes of tartary  PAN Fꎬ SHI TXꎬ CHEN QJꎬ et al.ꎬ 2015. Variation in major
     buckwheat (Fagopyrum tataricum) [J]. Food Chemꎬ 258:  agronomic traits and its contribution to grain weight per plant
     314-320.                                           in tartary buckwheat germplasm [J]. Plant Sci Jꎬ 33(6):
   LI CHꎬ RYO Oꎬ KIWA Kꎬ et al.ꎬ 2015. Study on selecting  829-839. [潘凡ꎬ 石桃雄ꎬ 陈其皎ꎬ 等ꎬ 2015. 苦荞种质主
     method for excellent offspring lines of tartary buckwheat  要农艺性状的变异及其对单株粒重的贡献研究 [J]. 植
     [J]. J Plant Genet Resourcꎬ 16(1): 168-172. [李春花ꎬ  物科学学报ꎬ 33(6):829-839.]
     大泽良ꎬ 小林喜和ꎬ 等ꎬ 2015. 苦荞杂交后代优良株系筛                 PAN JFꎬ CUI KHꎬ XIANG Jꎬ et al.ꎬ 2015. Characteristics of
     选研究 [J]. 植物遗传资源学报ꎬ16(1):168-172.]                  non ̄structural carbohydrate accumulation and translocation in
   LI JCꎬ ZHAO XHꎬ ZHAO JCꎬ et al.ꎬ 2017. Physical characte ̄  rice genotypes with various sink ̄capacity [J]. J Huazhong
     ristics of tartary buckwheat [ Fagopyrum tataricum ( L.)  Agric Univꎬ 34(1): 9-15. [潘俊峰ꎬ 崔克辉ꎬ 向镜ꎬ 等ꎬ
     Gaertn.] seeds [J]. Cereal Feed Indꎬ (10): 8-12. [李进  2015. 不同库容量类型基因型水稻茎鞘非结构性碳水化
     才ꎬ 赵习姮ꎬ 赵建城ꎬ 等ꎬ 2017. 苦荞麦籽粒的物理学特                   合物积累转运特征 [J]. 华中农业大学学报ꎬ 34(1):
     性研究 [J]. 粮食与饲料工业ꎬ(10):8-12.]                       9-15.]
   LI Sꎬ SI ZYꎬ SHEN XJꎬ et al.ꎬ 2018. Effect of different water  SHI TXꎬ LI RYꎬ LIANG LBꎬ et al.ꎬ 2018. Analysis of
     and nitrogen levels on starch synthesis enzyme activity in  agronomic traits in recombinant inbred line population of tar ̄
     wheat grains during grain filling stage and wheat yield [J]. J  tary buckwheat (Fagopyrm tataricum) [J]. J S Chin Agric
     Triticeae Cropsꎬ 38(4): 460-468. [李双ꎬ 司转运ꎬ 申孝      Univꎬ 39(1): 18- 24. [石桃雄ꎬ 黎瑞源ꎬ 梁龙兵ꎬ 等ꎬ
     军ꎬ 等ꎬ 2018. 水氮供应对灌浆期冬小麦籽粒淀粉合成相                     2018. 苦荞重组自交系群体农艺性状分析) [J]. 华南农
     关酶活性及产量的影响 [J]. 麦类作物学报ꎬ 38(4):                     业大学学报ꎬ 39(1):18-24.]
     460-468.]                                       TANG Lꎬ LIANG CGꎬ LIANG LBꎬ et al.ꎬ 2016. Genetic correla ̄
   LI YJꎬ XIONG Yꎬ LUO BSꎬ 2006. Comparison among three  tion analysis of plant height and main stem branching number
     wheat varieties with different gluten types in carbohydrate  of tartary buckwheat [J]. Jiangsu Agric Sciꎬ 44(9): 129-
     metabolism and the enzymes activities in the kernel during  132. [唐链ꎬ 梁成刚ꎬ 梁龙兵ꎬ 等ꎬ 2016. 苦荞株高及主茎分
     grain filling [J]. J NW A & F Univ (Nat Sci Ed)ꎬ 34(1):  枝数的 遗 传 相 关 分 析 [J]. 江 苏 农 业 科 学ꎬ 44 (9):
     13-19. [李友军ꎬ 熊瑛ꎬ 骆炳山ꎬ 2006. 不同类型小麦籽                129-132.]
     粒灌浆期碳水化合物代谢及相关酶活性研究 [J]. 西北                     TSUKAGUCHI Tꎬ MURAKAMI Kꎬ MICHIMOTO Tꎬ 2016. A
     农林科技大学学报(自然科学版)ꎬ 34(1):13-19.]                     quantitative measure for assimilate partitioning efficiency in
   LIANG CGꎬ SONG YXꎬ GUO Xꎬ et al.ꎬ 2016. Characteristics  rice (Oryza sativa L.) [J]. Field Crop Resꎬ 198: 122-130.
     of the grain ̄filling process and starch accumulation of high ̄  WANG AHꎬ CAI GZꎬ ZHAO Gꎬ et al.ꎬ 2010. Producing rice
     yield common buckwheat ‘cv. Fengtian 1’ and tartary buck ̄  bitter buckwheat Miqiao No. 1 and its cultival technology
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