参考文献/References:
[1]CHAPMAN S C, EDMEADES G O. Selection improves drought tolerance in trop-ical maize populations: II. Direct and correlated responses among secondary traits[J]. Crop Sci,1999,39:1315-1324.
[2]徐云姬,顾道健,张博博,等. 玉米果穗不同部位籽粒激素含量及其与胚乳发育和子粒灌浆的关系[J]. 作物学报,2013,39(8):1452-1461.
[3]CHEN Y J, HOOGENBOOM G, MA Y T,et al. Maize kernel growth at different floret positions of the ear[J]. Field Crops Res, 2013, 149:177-186.
[4]TOLLENAAR M, DAYNARD T B. Dry weight, soluble sugar content, and starch content of maize kernels during the early postsilking period[J]. Can J Plant Sci,1978,58:199-206.
[5]WANG Y. Effectiveness of supplied nitrogen at the primordial panicle stage on rice characteristics and yields[J]. Int Rice Res Newsl, 1981, 6:23-24.
[6]MURTY P S S, MURTY K S. Spikelet sterility in relation to nitrogen and carbohydrate contents in rice[J]. Indian J Plant Physiol, 1982, 25: 40-48.
[7]KATO T. Effect of spikelet removal on the grain filling of Akenohoshi, a rice cultivar with numerous spikelets in a panicle[J].J Agric Sci, 2004, 142: 177-181.
[8]YANG J, ZHANG J, WANG Z,et al. Post-anthesis development of inferior and superior spikelets in rice in relation to abscisic acid and ethylene[J].Exp Bot, 2006, 57: 149-160.
[9]NAKAMURA Y, YUKI K, PARK S Y. Carbohydrate metabolism in the developing endosperm of rice grains[J]. Plant Cell Physiol, 1989, 30: 833-839.
[10]ISHIMARU T, HIROSE T, MATSUDA T, et al. Expression patterns of genes encoding carbohydrate-metabolizing enzymes and their relationship to grain filling in rice (Oryza sativa L.): comparison of caryopses located at different positions in a panicle[J]. Plant Cell Physiol, 2005, 46: 620-628.
[11]黄升谋 ,邹应斌 ,刘春林. 杂交水稻两优培九强、弱势粒结实生理研究[J]. 作物学报, 2005,31(1):102-107.
[12]XIAO D X, PAN X H, SHI Q H. A preliminary study on the vascular bundle characters and its relation to the filled-grain rate in two lines hybrid rice (F1)[J]. Acta Agric Univ Jiangxiensis, 1993, 15(S2): 50-55.
[13]TOLLENAAR M,DAYNARD T B. Kernel growth and development at two positions on the ear of maize (Zea mays)[J]. Canadian Journal of Plant Sience, 1978,58:189-197.
[14]申丽霞,王璞,张红芳,等. 施氮对夏玉米不同部位籽粒灌浆的影响[J].作物学报,2005,31(4):532-534.
[15]吕静瑶,申丽霞,晁晓乐.施氮对不同氮效率玉米籽粒碳代谢的影响[J].江苏农业科学,2017,45(16):64-68.
[16]杨升辉,杨恒山,李洪杰,等. 不同氮肥运筹下春玉米籽粒灌浆特性的分析[J].玉米科学,2014, 22(1): 91-95.
[17]张丽,张吉旺,周伟,等. 玉米不同粒位籽粒容重与籽粒物理性状的相关分析[J].玉米科学,2015,23(2):64-68.
[18]李东,郑殿峰,冯乃杰,等. 植物生长调节剂对玉米籽粒形态及鲜重产量的影响[J].南方农业学报,2016,47(8):1285-1289.
[19]王晓燕,张洪生,盖伟玲,等. 种植密度对不同玉米品种产量及籽粒灌浆的影响[J]. 山东农业科学,2011(4):36-38.
[20]刘娟,董树亭,刘鹏,等. 增密与施氮对不同耐密型玉米产量及籽粒灌浆特性的影响[J].山东农业科学,2017,49(1):38-47.
[21]张海艳,董树亭,高荣岐. 不同类型玉米籽粒灌浆特性分析[J]. 玉米科学,2007,15(3):67-70.
[22]岳海旺,陈淑萍,彭海成,等. 玉米籽粒灌浆特性品种间比较[J].江苏农业学报,2016,32(5):1043-1048.
[23]BIAN Y L, YAZAKI S J, INOUE M K,et al. QTLs for sugar content of stalk in sweet sorghum(sorghum bicolor L. moench)[J]. Agricultural Sciences In China,2006, 5(10):736-744.
[24]史建国,崔海岩,赵斌,等. 花粒期光照对夏玉米产量和籽粒灌浆特性的影响[J].中国农业科学, 2013, 46(21):4427-4434.
[25]JOHNSON D R, TANNER J W. Comparisons of corn (Zea mays L.) inbreds and hybrids grown at equal leaf area index, light penetration and population[J].Crop Sci, 1972, 12: 482-485.
[26]ENGLEDOW L, WADHAM M. Investigation on yield in the cereal, Part I [J]. J Agric Sci (Camb), 1923, 13(1): 390-439.
[27]曹承富,汪芝寿,孔令聪. 氮肥运筹对夏玉米产量及籽粒灌浆的影响[J].安徽农业科学, 1993, 21(3): 236-240.
[28]王云奇,陶洪斌,王璞,等. 施氮模式对夏玉米产量和籽粒灌浆的影响[J].中国生态农业学报, 2012, 20(12): 1594-1598.
[29]乔江方,李川,刘京宝,等. 夏玉米籽粒含水率和籽粒灌浆的粒位差异及其关系研究[J].玉米科学,2016,24(1):56-62.
[30]闫淑琴,苏俊,李春霞,等. 玉米籽粒灌浆、脱水速率的相关与通径分析[J]. 黑龙江农业科学,2007(4):1-4.
[31]OTEGUI M E, ANDRADE F H, SUERO E E. Growth, water use and kernel abortion of maize subjected to drought at silking[J]. Field Crops Res, 1995, 40:87-94.
[32]JORGELINA C,MARTíN U,LUCAS B,et al. Synchronous pollination within and between ears improves kernel set in maize[J]. Crop Sci, 2000, 40:1056-1061.
[33]华鹤良,赵青,周宇,等. 玉米棒三叶光合性状对茎秆糖含量的影响[J]. 玉米科学,2016,24(3):92-98.
[34]BORRS L, SLAFER G A, OTEGUI M E. Seed dry weight response to source-sink manipulations in wheat, maize and soybean: a quantitative reappraisal[J]. Field Crops Res,2004,86:131-146.
[35]宋朝玉,朱丕生,高峻岭,等. 玉米籽粒脱水评价指标与收获期判断标准的辨析[J]. 山东农业科学, 2015,47(8):20-24.
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