Acta Agron Sin ›› 2011, Vol. 37 ›› Issue (08): 1415-1422.doi: 10.3724/SP.J.1006.2011.01415
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
FENG Han-Yu,WANG Zhi-Min,KONG Fan-Na,ZHANG Min-Jie,ZHOU Shun-Li*
[1]Reed A J, Singletary G W. Roles of carborhydrate supply and phytohormones in maize kernel abortion. Plant Physiol, 1989, 91: 986–921 [2]Mozafar A. Kernel abortion and distribution of mineral elements along the maize ear. Agron J, 1990, 82: 511–514 [3]Jonathan M H, Jones R J. Kernel abortion in maize. Plant Physiol, 1986, 81: 503–510 [4]Wang Z-X(王忠孝), Gao X-Z(高学曾), Xu J-F(许金芳), Liu Y-J(刘玉敬), Luo Y-N(罗瑶年). A study on the grain abortion of maize (Zea mays L.). Sci Agric Sin (中国农业科学), 1986, 19(6): 36–40 (in Chinese with English abstract) [5]Zhang F-L(张风路), Wang Z-M(王志敏), Zhao M(赵明), Wang S-A(王树安), Zhao J-R(赵久然), Guo J-L(郭景伦). Developing characteristic and changes in material of maize kernel abortion. J Maize Sci (玉米科学), 1999, 7(1): 59–61 (in Chinese with English abstract) [6]Boyle M G, Boyer J S, Morgan P W. Stem infusion of maize plants. Crop Sci, 1991, 31: 1241–1245 [7]Boyle M G, Boyer J S, Morgan P W. Stem infusion of liquid culture medium prevents reproductive failure of maize at low water potentials. Crop Sci, 1991, 31: 1246–1252 [8]Zinselmeier C, Lauer M J, Boyer J S. Reversing drought-induced losses in grain yield: sucrose maintains embryo growth in maize. Crop Sci, 1995, 35: 1390–1400 [9]Bewley J D, Black M. Seeds: Physiology of Development and Germination, 2nd edn. New York and London: Plenum Press, 1994 [10]Johnson D R, Tanner J W. Calculation of the rate and duration of grain filling in corn (Zea mays L.). Crop Sci, 1972, 12: 485–486 [11]Clore A M, Dannenhoffer J M, Larkins B A. EF-1α is associated with a cytoskeletal network surrounding protein bodies in maize endosperm cells. Plant Cell, 1996, 8: 2003–2014 [12]Schel J H N, Kieft N H, Van Lammeren A A M. Interactions between embryo and endosperm during early developmental stages of maize caryopses (Zea mays L.). Can J Bot, 1984, 62: 2842−2853 [13]Jones R J, Schreiber B M N, Roessler J A. Kernel sink capacity in maize: genotypic and maternal regulation. Crop Sci, 1996, 36: 301–306 [14]Reddy V M, Daynard T B. Endosperm characteristics associated with rate of grain filling and kernel size in corn. Maydica, 1983, 28: 339–355 [15]Douglas C D, Leslie J S, Edwin R D. Gene expression during maize kernel development. Seed Sci Res, 1994, 4: 299–305 [16]NeSmith D S, Ritchie J T. Effects of soil water-deficits during tassel emergence on development and yield components of maize (Zea mays L.). Field Crops Res, 1992, 28: 251–256 [17]Reed A J, Singletory G W, Schussler J R, Williamson D R, Christy A L. Shading effects on dry matter and nitrogen partitioning, kernel number, and yield of maize. Crop Sci, 1988, 28: 819–825 [18]Setter T L, Flannigan B A. Sugar and starch redistribution in maize in response to shade and ear temperature treatment. Crop Sci, 1986, 26: 575–579 [19]Hu Y-H(胡寅华). The effect of defolliar on ear character and yield of summer maize. J Maize Sci (玉米科学), 1996, 4(1): 46–50 (in Chinese with English abstract) [20]Egharevba P N, Horrocks R D, Zuber M S. Dry matter accumulation in maize in response to defoliation. Agron J, 1976, 68: 40–44 [21]Hashemi A M, Herbert S J, Putnam D H. Yield response of corn to crowding stress. Agron J, 2005, 97: 839–846 [22]Sun G-W(孙国伟), Zhang F-L(张凤路), Guo J(郭江), Zhao J-R(赵久然), Guo J-L(郭景伦). Discuss on the cause of maize kernel abotion. J Maize Sci (玉米科学), 2004, 12(S2): 35–37 (in Chinese with English abstract) [23]Ho L C. Metabolism and compartmentation of imported sugars in sink organs in relation to sink strength. Ann Rev Plant Physiol Plant Mol Biol, 1988, 39: 355–378 [24]Cheng C Y, Lur H S. Ethylene may be involved in abortion of the maize caryopsis. Physiol Plant, 1996, 98: 245–252 [25]Jonathan M H, Reed A J, Jones R J, McLaren J S. Effect of 1-aminocyclopropane-l-carboxylic acid on maize kernel development in vitro. J Plant Growth Regul, 1990, 9: 89–94 |
[1] | ZHENG Xiao-Long, ZHOU Jing-Qing, BAI Yang, SHAO Ya-Fang, ZHANG Lin-Ping, HU Pei-Song, WEI Xiang-Jin. Difference and molecular mechanism of soluble sugar metabolism and quality of different rice panicle in japonica rice [J]. Acta Agronomica Sinica, 2022, 48(6): 1425-1436. |
[2] | WANG Dan, ZHOU Bao-Yuan, MA Wei, GE Jun-Zhu, DING Zai-Song, LI Cong-Feng, ZHAO Ming. Characteristics of the annual distribution and utilization of climate resource for double maize cropping system in the middle reaches of Yangtze River [J]. Acta Agronomica Sinica, 2022, 48(6): 1437-1450. |
[3] | YANG Huan, ZHOU Ying, CHEN Ping, DU Qing, ZHENG Ben-Chuan, PU Tian, WEN Jing, YANG Wen-Yu, YONG Tai-Wen. Effects of nutrient uptake and utilization on yield of maize-legume strip intercropping system [J]. Acta Agronomica Sinica, 2022, 48(6): 1476-1487. |
[4] | QIN Lu, HAN Pei-Pei, CHANG Hai-Bin, GU Chi-Ming, HUANG Wei, LI Yin-Shui, LIAO Xiang-Sheng, XIE Li-Hua, LIAO Xing. Screening of rapeseed germplasms with low nitrogen tolerance and the evaluation of its potential application as green manure [J]. Acta Agronomica Sinica, 2022, 48(6): 1488-1501. |
[5] | CHEN Jing, REN Bai-Zhao, ZHAO Bin, LIU Peng, ZHANG Ji-Wang. Regulation of leaf-spraying glycine betaine on yield formation and antioxidation of summer maize sowed in different dates [J]. Acta Agronomica Sinica, 2022, 48(6): 1502-1515. |
[6] | GUO Xing-Yu, LIU Peng-Zhao, WANG Rui, WANG Xiao-Li, LI Jun. Response of winter wheat yield, nitrogen use efficiency and soil nitrogen balance to rainfall types and nitrogen application rate in dryland [J]. Acta Agronomica Sinica, 2022, 48(5): 1262-1272. |
[7] | SHAN Lu-Ying, LI Jun, LI Liang, ZHANG Li, WANG Hao-Qian, GAO Jia-Qi, WU Gang, WU Yu-Hua, ZHANG Xiu-Jie. Development of genetically modified maize (Zea mays L.) NK603 matrix reference materials [J]. Acta Agronomica Sinica, 2022, 48(5): 1059-1070. |
[8] | PENG Xi-Hong, CHEN Ping, DU Qing, YANG Xue-Li, REN Jun-Bo, ZHENG Ben-Chuan, LUO Kai, XIE Chen, LEI Lu, YONG Tai-Wen, YANG Wen-Yu. Effects of reduced nitrogen application on soil aeration and root nodule growth of relay strip intercropping soybean [J]. Acta Agronomica Sinica, 2022, 48(5): 1199-1209. |
[9] | XU Jing, GAO Jing-Yang, LI Cheng-Cheng, SONG Yun-Xia, DONG Chao-Pei, WANG Zhao, LI Yun-Meng, LUAN Yi-Fan, CHEN Jia-Fa, ZHOU Zi-Jian, WU Jian-Yu. Overexpression of ZmCIPKHT enhances heat tolerance in plant [J]. Acta Agronomica Sinica, 2022, 48(4): 851-859. |
[10] | LIU Lei, ZHAN Wei-Min, DING Wu-Si, LIU Tong, CUI Lian-Hua, JIANG Liang-Liang, ZHANG Yan-Pei, YANG Jian-Ping. Genetic analysis and molecular characterization of dwarf mutant gad39 in maize [J]. Acta Agronomica Sinica, 2022, 48(4): 886-895. |
[11] | YAN Yu-Ting, SONG Qiu-Lai, YAN Chao, LIU Shuang, ZHANG Yu-Hui, TIAN Jing-Fen, DENG Yu-Xuan, MA Chun-Mei. Nitrogen accumulation and nitrogen substitution effect of maize under straw returning with continuous cropping [J]. Acta Agronomica Sinica, 2022, 48(4): 962-974. |
[12] | LI Xin-Ge, GAO Yang, LIU Xiao-Jun, TIAN Yong-Chao, ZHU Yan, CAO Wei-Xing, CAO Qiang. Effects of sowing dates, sowing rates, and nitrogen rates on growth and spectral indices in winter wheat [J]. Acta Agronomica Sinica, 2022, 48(4): 975-987. |
[13] | XU Ning-Kun, LI Bing, CHEN Xiao-Yan, WEI Ya-Kang, LIU Zi-Long, XUE Yong-Kang, CHEN Hong-Yu, WANG Gui-Feng. Genetic analysis and molecular characterization of a novel maize Bt2 gene mutant [J]. Acta Agronomica Sinica, 2022, 48(3): 572-579. |
[14] | YUAN Jia-Qi, LIU Yan-Yang, XU Ke, LI Guo-Hui, CHEN Tian-Ye, ZHOU Hu-Yi, GUO Bao-Wei, HUO Zhong-Yang, DAI Qi-Gen, ZHANG Hong-Cheng. Nitrogen and density treatment to improve resource utilization and yield in late sowing japonica rice [J]. Acta Agronomica Sinica, 2022, 48(3): 667-681. |
[15] | DING Hong, XU Yang, ZHANG Guan-Chu, QIN Fei-Fei, DAI Liang-Xiang, ZHANG Zhi-Meng. Effects of drought at different growth stages and nitrogen application on nitrogen absorption and utilization in peanut [J]. Acta Agronomica Sinica, 2022, 48(3): 695-703. |
|