Acta Agron Sin ›› 2014, Vol. 40 ›› Issue (02): 283-300.doi: 10.3724/SP.J.1006.2014.00283
• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles Next Articles
ZHANG Hong-Cheng1,XU Ke1,ZHANG Jun1,LI Guo-Ye1,DONG Xiao-Bo1,HUA Jin1,ZHOU Pei-Jian2,CHENG Fei-Hu2,HUANG Da-Shan1,CHEN Zhong-Ping2,CHEN Guo-Liang4,FANG Ming-Zhen4,DAI Qi-Gen1,HUO Zhong-Yang1,WEI Hai-Yan1,GAO Hui1
[1]Horie T, Shiraiwa T, Homma K, Katsura K, Maeda Y. Can yields of lowland rice resume the increases that they showed in the 1980s? Plant Prod Sci, 2005, 8: 259–274[2]凌启鸿. 作物群体质量. 上海: 上海科学技术出版社, 2000Ling Q H. Quality of Crop Population. Shanghai: Shanghai Scientific and Technical Publishers, 2000 (in Chinese)[3]FAO. Statistical Databases. Food and Agriculture Organization (FAO) of the United Nations, 2004 [4]陈温福, 潘文博, 徐正进. 我国粳稻生产现状及发展趋势. 沈阳农业大学学报, 2006, 37: 801–805Chen W F, Pan W B, Xu Z J. Current situation and trends in production of japonica rice in China. J Shenyang Agric Univ, 2006, 37: 801–805 (in Chinese with English abstract) [5]陈温福, 张龙步, 徐正进, 杨守仁. 北粳南引研究的进展与前景. 沈阳农业大学学报, 1994, 25: 131–135Chen W F, Zhang L B, Xu Z J, Yang S R. The research advances of introducing japonica rice from the north to the south of China. J Shenyang Agric Univ, 1994, 25: 131–135 (in Chinese with English abstract) [6]孙广朝, 李金岐, 董县中, 郑明范, 齐浩然, 张宗保. 籼改粳低产原因与技术对策. 安徽农学通报, 2011,17(2): 68-69Sun G C, Li J Q, Dong X Z, Zheng M F, Qi H R, Zhang Z B. The reason for low yield of indica to japonica modification and technical countermeasures. Anhui Agric Sci Bull, 2011, 17(2): 68-69 (in Chinese)[7]李成荃. 南方杂交粳稻的增产优势与合理利用. 杂交水稻, 1991, (增刊): 6–9Li C Q. South of hybrid japonica rice in yield advantage and reasonable using. Hybrid Rice, 1991, (suppl): 6–9 (in Chinese)[8]黄发松, 王延春. 湘、鄂、赣发展晚粳稻生产的条件与建议. 中国稻米, 2010,16(6): 67–68Huang F S, Wang Y C. The rice production and proposal about developing late japonica rice in Hunan, Hubei and Jiangxi. Chin Rice, 2010, 16(6): 67–68 (in Chinese)[9]张洪程, 戴其根, 霍中洋, 许轲, 薛云龙, 吕贞龙.偏迟熟水稻北移及配套高产栽培技术的研究. 江苏农学院学报, 1996, 17(3): 51–56Zhang H C, Dai Q G, Huo Z Y, Xu K, Xue Y L, Lü Z L. Studies on the techniques for north toward acclimatization and high yielding of rice with rather late maturation in Jiangsu. J Jiangsu Agric Coll, 1996, 17(3): 51–56 (in Chinese with English abstract)[10]张淑梅, 张建明, 李丁鲁, 李茂柏, 王 慧, 朴钟泽, 邹德堂. 高抗性淀粉粳稻新品系稻米淀粉链长分布与主要品质特征差异. 中国农业 科学, 2009, 42: 2237–2243Zhang S M, Zhang J M, Li D R, Li M B, Wang H, Piao Z Z, Zou D T. The difference between starch chain length distribution and main quality characteristics of high resistant starch lines of japonica rice. Sci Agric Sin, 2009, 42: 2237–2243 (in Chinese with English abstract)[11]马 均, 马文波, 田彦华, 杨建昌, 周开达, 朱庆森. 重穗型水稻植株抗倒伏能力的研究. 作物学报, 2004, 30: 143–148Ma J, Ma W B, Tian Y H, Yang J C, Zhou K D, Zhu Q S. The culm lodging resistance of heavy panicle type of rice. Acta Agron Sin, 2004, 30: 143–148 (in Chinese with English abstract)[12]许德海, 王晓燕, 马荣荣, 禹盛苗, 朱练峰, 欧阳由男, 金千瑜. 重穗型籼粳杂交稻甬优6号超高产生理特性. 中国农业科学, 2010, 43: 4796–4804Xu D H, Wang X Y, Ma R R, Yu S M, Zhu L F, Ou Yang Y N, Jin Q Y. Analysis on physiological properties of the heavy panicle type of indica-japonica inter-subspecific hybrid rice Yongyou 6. Sci Agric Sin, 2010, 43: 4796–4804 (in Chinese with English abstract)[13]Prasad P V V, Boote K J, Allen L H, Sheehy J E, Thomas J M G. Species, ecotype and cultivar differences in spikelet fertility and harvest index of rice in response to high temperature stress. Field Crops Res, 2006, 95: 398–411[14]Matsui T, Kobayasi K M, Hasegawa T. Stability of rice pollination in the field under hot and dry conditions in the Riverina Region of New South Wales, Australia. Plant Prod Sci, 2007, 10: 57–64[15]曹云英, 段骅, 杨立年, 王志琴, 周少川, 杨建昌. 减数分裂期高温胁迫对耐热性不同水稻品种产量的影响及其生理原因. 作物学报, 2008, 34: 2134–2142Cao Y Y, Duan H, Yang L N, Wang Z Q, Zhou S C, Yang J C. Effect of heat-stress during meiosis on grain yield of rice cultivars differing in heat-tolerance and its physiological mechanism. Acta Agron Sin, 2008, 34: 2134–2142 (in Chinese with English abstract)[16]王静, 张成军, 陈国祥, 王萍, 施大伟, 吕川根. 低温对灌浆期水稻剑叶光合色素和类囊体膜脂肪酸的影响. 中国水稻科学, 2006, 20: 177–182Wang J, Zhang C J, Chen G X, Wang P, Shi D W, Lü C G. Effect of low temperature on photosynthetic pigments and thylakoid membrane fatty acid in flag leaves of rice at the milky stage. Chin J Rice Sci, 2006, 20: 177–182 (in Chinese with English abstract)[17]李霞, 戴传超, 程睿, 陈婷, 焦德茂. 不同生育期水稻耐冷性的鉴定及耐冷性差异的生理机制. 作物学报, 2006, 32: 76–83L Li X, Dai C C, Chen R, Chen T, Jiao D M. Identification for cold tolerance at different growth stages in rice (Oryza sativa L.) and physiological mechanism of differential cold tolerance. Acta Agron Sin, 2006, 32: 76–83 (in Chinese with English abstract)[18]李 桦, 宋成艳, 丛万彪, 王桂玲. 粳稻品种抗纹枯病性鉴定与筛选. 植物保护, 2000, 26(1): 19–21Li H, Song C Y, Cong W B, Wang G L. Japonica rice variety screening and identification of resistance to rice sheath blight. Plant Prot, 2000, 26(1): 19–21 (in Chinese with English abstract)[19]李余生, 朱 镇, 张亚东, 赵 凌, 王才林. 水稻稻曲病抗性的主基因+多基因混合遗传模型分析. 作物学报, 2008, 34: 1728–1733Li Y S, Zhu Z, Zhang Y D, Zhao L, Wang C L. Genetic analysis of rice false smut resistance using major gene plus polygene mixed genetic model. Acta Agron Sin, 2008, 34: 1728–1733 (in Chinese with English abstract)[20]瀬古秀生, 佐本啓智, 鈴木嘉一郎. 水稲の倒伏に及ぼす二, 三栽培条件の影響(II). 日本作物学会紀事, 1959, 27: 173–176Seko H, Samoto K, Suzuki K. Lodging of rice plant in relation to several different cultural conditions (II). Jpn J Crop Sci, 1959, 27: 173–176 (in Japanese)[21]李 杰, 张洪程, 龚金龙, 常 勇, 戴其根, 霍中洋, 许 轲, 魏海燕. 不同种植方式对超级稻植株抗倒伏能力的影响. 中国农业科学, 2011, 44: 2234–2243Li J, Zhang H C, Gong J L, Chang Y, Dai Q G, Huo Z Y, Xu K, Wei H Y. Effects of different planting methods on the culm lodging resistance of super rice. Sci Agric Sin, 2011, 44: 2234–2243 (in Chinese with English abstract)[22]王晓玲, 周治宝, 余传元, 雷建国, 王智权, 肖宇龙, 李马忠. 籼粳稻米食味品质差异的相关研究. 江西农业大学学报, 2011, 33: 643–649Wang X L, Zhou Z B, Yu C Y, Lei J G, Wang Z Q, Xiao Y L, Li M Z. A study on eating quality difference between indica and japonica rice. Acta Agric Univ Jiangxiensis, 2011, 33: 643–649 (in Chinese with English abstract)[23]邵世志. N肥水平对不同类型水稻品种(组合)产量形成与吸N特性的若干影响的初步研究. 扬州大学硕士学位论文, 2001. p 5 Shao S Z. Preliminary Studies on Some Effects of Applying Level of N-Fertilizer on Yield Formation and N-Absorbing Character of Different Types Varieties of Rice. MS Thesis of Yangzhou University, 2001. p 5 (in Chinese)[24]叶全宝. 不同水稻基因型对氮肥反应的差异及氮素利用效率的研究. 扬州大学博士学位论文, 2005. p 5Ye Q B. Study on Differences in Response of Rice Genotypes to Nitrogen Fertilization and Nitrogen Use Efficiency. PhD Dissertation of Yangzhou University, 2005. p 5 (in Chinese)[25]李旭毅, 池忠志, 姜心禄, 郑家国. 成都平原两熟区籼粳稻品种籽粒灌浆特性. 中国农业科学, 2012, 45: 3256–3264Li X Y, Chi Z Z, Jiang X L, Zheng J G. Analysis on grain filling characteristics of indica and japonica rice in rapeseed (wheat)—rice planting area in Chengdu Basin. Sci Agric Sin, 2012, 45: 3256–3264 (in Chinese with English abstract)[26]黄大山, 曹开蔚, 程飞虎, 张洪程, 张 军, 张 强. 一季粳稻作双季晚稻高产栽培技术. 中国稻米, 2010, 16(4): 40–42Huang D S, Cao K W, Cheng F H, Zhang H C, Zhang J, Zhang Q. The high-yielding cultivation techniques for single-cropping japonica rice as double-cropping late rice. Chin Rice, 2010, 16(4): 40–42 (in Chinese)[27]董啸波, 霍中洋, 张洪程, 李国业, 曹开蔚, 程飞虎, 戴其根, 许轲, 魏海燕. 南方双季晚稻籼改粳优势及技术关键. 中国稻米, 2012, 18(1): 25–28Dong X B, Huo Z Y, Zhang H C, Li G Y, Cao K W, Cheng F H, Dai Q G, Xu K, Wei H Y. The advantages and key technology of indica rice to japonica rice in southern double-cropping late rice area. Chin Rice, 2012, 18(1): 25–28 (in Chinese)[28]张洪程, 郭保卫, 陈厚存, 周兴涛, 张 军, 朱聪聪, 陈京都, 李桂云, 吴中华, 戴其根, 霍中洋, 许 轲, 魏海燕, 高 辉, 杨 雄. 水稻有序摆、抛栽的生理生态特征及超高产形成机制. 中国农业科学, 2013, 46: 463–475 Zhang H C, Guo B W, Chen H C, Zhou X T, Zhang J, Zhu C C, Chen J D, Li G Y, Wu Z H, Dai Q G, Huo Z Y, Xu K, Wei H Y, Gao H, Yang X. Eco-physiological characteristics and super high yield formation mechanism of ordered transplanting and optimized broadcasting rice. Sci Agric Sin, 2013, 46: 463-475 (in Chinese with English abstract)[29]顾伟, 李刚华, 杨从党, 王绍华, 凌启鸿, 丁艳锋. 特殊生态区水稻超高产生态特征研究. 南京农业大学学报, 2009, 32(4): 1–6Gu W, Li G H, Yang C D, Wang S H, Ling Q H, Ding Y F. Studies on ecological traits of super high-yield rice in special eco-site. J Nanjing Agric Univ, 2009, 32(4): 1–6 (in Chinese with English abstract)[30]Horie T, Ohnishi M, Augus J F, Lewin L G, Tsukaguchi T, Matano T. Physiological charac-teristics of high-yielding rice inferred from cross-location experiments. Field Crops Res, 1997, 52: 55–67[31]黄山, 何虎, 张卫星, 王志刚, 章秀福, 廖西元, 潘晓华. 不同粳稻品种在江西的生态适应性研究. 江西农业大学学报, 2013, 35: 25–32Huang S, He H, Zhang W X, Wang Z G, Zhang X F, Liao X Y, Pan X H. Agronomic performance of different japonica rice varieties in different eco-regions in Jiangxi Province. Acta Agric Univ Jiangxiensis, 2013, 35: 25–32 (in Chinese with English abstract)[32]张洪程, 张军, 龚金龙, 常勇, 李敏, 高辉, 戴其根, 霍中洋, 许轲, 魏海燕. “籼改粳”的生产优势及其形成机理. 中国农业科学, 2013, 46: 686–704Zhang H C, Zhang J, Gong J L, Chang Y, Li M, Gao H, Dai Q G, Huo Z Y, Xu K, Wei H Y. The productive advantages and formation mechanisms of “indica rice to japonica rice”. Sci Agric Sin, 2013, 46: 686–704 (in Chinese with English abstract)[33]凌启鸿, 张洪程, 丁艳锋, 张益彬. 水稻高产技术的新发展——精确定量栽培. 中国稻米, 2005, (1): 3–7Ling Q H, Zhang H C, Ding Y F, Zhang Y B. Development of rice high-yielding techniques-precise and quantitative cultivation. Chin Rice, 2005, (1): 3–7 (in Chinese)[34]张洪程, 吴桂成, 吴文革, 戴其根, 霍中洋, 许轲, 高辉, 魏海燕, 黄幸福, 龚金龙. 水稻“精苗稳前、控蘖优中、大穗强后”超高产定量化栽培模式. 中国农业科学, 2010, 43: 2645–2660Zhang H C, Wu G C, Wu W G, Dai Q G, Huo Z Y, Xu K, Gao H, Wei H Y, Huang X F , Gong J L. The SOI model of quantitative cultivation of super-high yielding rice. Sci Agric Sin, 2010, 43: 2645–2660 (in Chinese with English abstract) |
[1] | WEI Huan-He,GE Jia-Lin,ZHANG Xu-Bin,MENG Tian-Yao,LU Yu,LI Xin-Yue,TAO Yuan,DING En-Hao,CHEN Ying-Long,DAI Qi-Gen. Tillering characteristics and its relationships with population productivity of japonica rice Nanjing 9108 under salinity stress [J]. Acta Agronomica Sinica, 2020, 46(8): 1238-1247. |
[2] | WU Yu-Hong,HAO Xing-Shun,TIAN Xiao-Hong,CHEN Hao,ZHANG Chun-Hui,CUI Yue-Zhen,QIN Yu-Hang. Effect of straw returning combined with NPK fertilization on soil carbon sequestration and economic benefits under rice-wheat rotation in Hanzhong basin [J]. Acta Agronomica Sinica, 2020, 46(02): 259-268. |
[3] | Hong-Liang SHI,Qing-Qing YAN,Ju-Song ZHANG,Chun-Yan LI,Hai-Tao DOU. Compensation Effect of Nitrogen Fertilizer on Photosynthetic Characteristics and Yield during Cotton Flowering Boll-setting Stage under Non-sufficient Drip Irrigation [J]. Acta Agronomica Sinica, 2018, 44(8): 1196-1204. |
[4] | Cai ZHAO,Qiao-Mei WANG,Yao GUO,Wen YIN,Zhi-Long FAN,Fa-Long HU,Ai-Zhong YU,Qiang CHAI. Effects of Water-Nitrogen Coupling Patterns on Dry Matter Accumulation and Yield of Wheat under No-tillage with Previous Plastic Mulched Maize [J]. Acta Agronomica Sinica, 2018, 44(11): 1694-1703. |
[5] | LIANG Jian,REN Hong-Ru,XIA Min,LI Xiao-Feng,CHEN Meng-Yun,LI Jun,ZHANG Hong-Cheng,HUO Zhong-Yang*?. Potassium Absorption and Utilization Characteristics of Rice Varieties with the Highest Population Productivity under corresponding Nitrogen Fertilization in Huaibei Area [J]. Acta Agron Sin, 2017, 43(04): 558-570. |
[6] | ZHOU Pei-Lu,REN Hong,QI Hua,ZHAO Ming,LI Cong-Feng. Effects of Nitrogen Application Rates on Dry Matter Productivity and Nitrogen Utilization of Different Type Maize Hybrids [J]. Acta Agron Sin, 2017, 43(02): 263-276. |
[7] | LIANG Jian,Li Jun,LI Xiao-Feng,SHU Peng,ZHANG Hong-Cheng,HUO Zhong-Yang*,DAI Qi-Gen,XU Ke,WEI Hai-Yan,GUO Bao-Wei. Yield, Nitrogen Absorption and Utilization of Rice Varieties with the Highest Population Productivity of Nitrogen Fertilization in Huaibei Area [J]. Acta Agron Sin, 2016, 42(08): 1188-1200. |
[8] | MENG Tian-Yao,XU Jun-Wei,SHAO Zi-Bin,GE Meng-Jie2,ZHANG Hong-Cheng,WEI Hai-Yan,DAI Qi-Gen,HUO Zhong-Yang,XU Ke,GUO Bao-Wei,JING Pei-Pei. Advantages and Their Formation Characteristics of the Highest Population Productivity of Nitrogen Fertilization in Japonica/Indica Hybrid Rice of Yongyou Series [J]. Acta Agron Sin, 2015, 41(11): 1711-1725. |
[9] | XU Ke,YANG Hai-Sheng,ZHANG Hong-Cheng,GONG Jin-Long,SHEN Xin-Ping,TAO Xiao-Jun,DAI Qi-Gen,HUO Zhong-Yang,WEI Hai-Yan,GAO Hui. Latitudinal Difference of Rice Varieties Productivity in the Lower Yangtze and Huai Valleys and Its Rational Utilization [J]. Acta Agron Sin, 2014, 40(05): 871-890. |
[10] | WANG Hui-Zhen,ZHAO Hong-Liang,FENG Yong-Xiang,JIANG Le,NING Da-Ke,XIE Li-Yong,LIN Er-Da. Response of Soluble Substances Content in Flag Leaves during Late Growth Stage and Plant Productivity of Rice to Elevated CO2 in North China [J]. Acta Agron Sin, 2014, 40(02): 320-328. |
[11] | ZHU Cong-Hua,DAI Zou,YAN Feng-Jun,PENG Yu,XU Hui,SUN Yong-Jian,MA Jun. Effects of Different Paddy Field Drainage Degrees and Panicle Nitrogen Fertilizer Managements on Photosynthetic Productivity and Nitrogen Utilization of Rice under Triangle-Planted System of Rice Intensification [J]. Acta Agron Sin, 2013, 39(04): 735-743. |
[12] | SONG Zhen-Wei,QI Hua,ZHANG Zhen-Ping,QIAN Chun-Rong,GUO Jin-Rui,DENG Ai-Xing,ZHANG Wei-Jian. Effects of Plant Density on Agronomic Characters and Yield in Spring Maize Zhongdan 909 and Their Regional Differences in Northeast China [J]. Acta Agron Sin, 2012, 38(12): 2267-2277. |
[13] | HUO Zhong-Yang,GU Hai-Yong,MA Qun,YANG Xiong,LI Min,LI Guo-Ye,DAI Qi-Gen,XU Ke,WEI Hai-Yan,GAO Hui,LU Yan,ZHANG Hong-Cheng. Differences of Nitrogen Absorption and Utilization in Rice Varieties with Different Productivity Levels [J]. Acta Agron Sin, 2012, 38(11): 2061-2068. |
[14] | SHI Quan-Hong,LIU Jian-Gang,WANG Zhao-Hua,TAO Ting-Ting,CHEN Fu,CHU Qing-Quan. Change of Rice Yield Gaps and Influential Climatic Factors in Southern China [J]. Acta Agron Sin, 2012, 38(05): 896-903. |
[15] | ZHANG Hong-Cheng, MA Qun, YANG Xiong, LI Min, LI Guo-Ye, DAI Ji-Gen, HE Zhong-Xiang, HU Ke, WEI Hai-Yan, GAO Hui, LIU Yan-Yang. The Highest Population Productivity of Nitrogen Fertilization and Its Variation Rules in Rice Cultivars [J]. Acta Agron Sin, 2012, 38(01): 86-98. |
|