作物学报 ›› 2013, Vol. 39 ›› Issue (09): 1652-1667.doi: 10.3724/SP.J.1006.2013.01652
许轲1,郭保卫1,张洪程1,周兴涛1,陈厚存2,张军1,陈京都1,朱聪聪1,李桂云2,吴中华2,戴其根1,霍中洋1,魏海燕1,高辉1,曹利强1,李明银1
XU Ke1,GUO Bao-Wei1,ZHANG Hong-Cheng1,*,ZHOU Xing-Tao1,CHEN Hou-Cun2,ZHANG Jun1,CHEN Jing-Du1,ZHU Cong-Cong1,LI Gui-Yun2,WU Zhong-Hua2,DAI Qi-Gen1,HUO Zhong-Yang1,WEI Hai-Yan1,GAO Hui1,CAO Li-Qiang1,LI Min-Ying1
摘要:
抛秧是一项水稻轻简化栽培技术,有序化栽插是抛秧稻稳定高产和进一步超高产的基础。本试验通过摆栽、点抛、撒抛3种抛栽方式以及新型秧盘培育稻株的光合物质积累特性的比较,旨在研明水稻有序化栽插超高产的光合物质积累特性,并探索水稻超高产新模式。有序摆栽和点抛群体起点质量高,发棵快,各生育时期群体叶面积、粒叶比、光合势、物质生产、积累、后期剑叶光合速率和物质转运均优于撒抛,后期通风透光性好,仍能保持较强的物质生产和抗倒伏能力,最终产量高。二连孔、三连孔栽插较单孔减少1/3~1/2,提高了栽插速度。三连孔稻苗前期活棵较快,二连孔稻株中、后期表现出较强的优势,能保持较强抗倒伏和群体物质生产能力,最终产量表现为二连孔稻株大于三连孔和单孔,三连孔和单孔稻株间差异不显著。有序摆抛栽稻群体起点质量高,活棵快,前期有着适宜的光合物质积累和叶面积,后期保持较强的光合物质生产、积累和转运能力,是实现超级稻稳定超高产的基础,二连孔稻株整个生育时期均表现出较强的物质生产和生长优势,三连孔稻株也具有一定优势,二连孔、三连孔有序摆抛栽是一种水稻省工超高产栽培新模式。
| [1]Zhang H-C(张洪程), Dai Q-G(戴其根), Zhong X-M(钟喜明), Su Z-F(苏祖芳), Huang W-T(黄务涛), Lu Y-T(陆永泰), Sun X-L(孙禧榴), Zhang D-Q(张定琪), He X-B(何小保), Chen Z-H(陈再华), Xu X-Z(许遐祯). Studies on the yield formation and ecological characteristics of scattered-transplantation rice. Sci Agric Sin (中国农业科学), 1993, 26(3): 39–49 (in Chinese with English abstract)[2]Dai Q-G(戴其根), Zhang H-C(张洪程), Su B-L(苏宝林), Qiu F(邱枫), Huo Z-Y(霍中洋), Xu K(许轲). The eco-physiological mechanism of growth, development and yield formation of broadcasted rice seedlings: I. Standing and establishment of rice seedlings and its eco-physiological characteristics. Acta Agron Sin (作物学报), 2001, 27(3): 278–285 (in Chinese with English abstract)[3]Wu J-F(吴建富), Pan X-H(潘晓华), Shi Q-H(石庆华). Seedling standing characteristics and technology of no-tillage and cast transplanting rice. Acta Agron Sin (作物学报), 2009, 35(5): 930–939 (in Chinese with English abstract)[4]Guo B-W(郭保卫), Zhang C-H(张春华), Wei H-Y(魏海燕), Zhang H-C(张洪程), Chen H-C(陈厚存), Dai Q-G(戴其根), Huo Z-Y(霍中洋), Xu K(许轲), Xing L(邢琳), Guan W-W(管文文), Huang X-F(黄幸福), Yang X(杨雄). Effects of different postures on growth of broadcasted rice and the regulating factors of physical standing of broadcasted seedlings. Sci Agric Sin (中国农业科学), 2010, 43(19): 3945–3953 (in Chinese with English abstract)[7]Pu H(蒲红), Liu Y-H(刘宇辉), Meng R(孟然). The present status and outlook of the rice planting mechanism in our country. J Jiamusi Univ (Nat Sci Edn)(佳木斯大学学报•自然科学版), 2003, 21(2): 208–211 (in Chinese with English abstract)[6]Yang H-J(杨惠杰), Li Y-Z(李义珍), Yang R-C(杨仁崔), Jiang Z-W(姜照伟), Zheng J-S(郑景生). Dry matter production characteristic of super high yielding rice. Chin J Rice Sci (中国水稻科学), 2001, 15(4): 265–270 (in Chinese with English abstract)[7]Xiao Y-H(肖应辉), Tang W-B(唐文邦), Fan K(范科), Pan Y(盘毅,), Deng H-B(邓化冰), Chen L-Y(陈立云). Dry matter production and its relation to the yield of super hybrid rice C liangyou 396. Hybrid Rice (杂交水稻), 2009, 24(2): 62–66 (in Chinese with English abstract)[8]Yoshida S. Physiological analysis of rice yield. In: Fundamentals of Rice Crop Science. Los Banos: The International Rice Research Institute, 1981. pp 231–251[9]Ou Z-Y(欧志英), Peng C-L(彭长连), Yang C-W(阳成伟), Li G-Z(林桂珠), Duan J(段俊), Wen-X(温学). High efficiency photosynthetic characteristics in flag leaves of super high-yielding rice. J Trop Subtrop Bot (热带亚热带植物学报), 2003, 11(1): 1–6 (in Chinese with English abstract)[10]Zhang Y-H(张云华), Wang R-F(王荣富), Chen B-S(陈炳松), Yu J-L(于江龙), Qian L-S(钱立生), Sha S(沙莎). Light energy conversion efficiency and assimilate distribution of Indica-Japonica subspecies hybrid rice Liangyoupeijiu at late stage. J Anhui Agric Univ (安徽农业大学学报) , 2003, 30(3): 269–272 (in Chinese with English abstract)[11]Ren W-J(任万军). Mechanism of increasing production and key technology of rice in the optimized seedling-broadcasting technique. China Rice (中国稻米), 2008, (3): 54–56 (in Chinese)[12]Fei Z-J(费震江), Cheng J-P(程建平), Wu J-P(吴建平), Zhang J-W(张集文), Ke C-Y(柯传勇). Effect of different cast seedling methods on growth characteristics and yield formation of rice. Hubei Agric Sci (湖北农业科学), 2009, 48(7): 1565–1567 (in Chinese)[13]Shimazaki Y(島崎佳郎). Technology of Quality Rice Production in Hokkaido High. ATPA (日本. 農業技術普及協会刊行), 1986 (in Japanese) [14]Ren W-J(任万军), Yang W-Y(杨文钰), Liu D-Y(刘代银), Liu J-M(刘基敏). High yield and efficiency technique of the optimized seedling-broadcasting mid-season hybrid rice. Sichuan Agric Sci Technol (四川农业科技), 2010, (6): 15–16 (in Chinese)[15]Chen G-J(陈国建). Analysis of mechanism of high and stable yield in bowl-seedling transplanting rice. Reclaiming & Rice Cultivation (垦殖与稻作), 2004, (5): 28–30 (in Chinese)[16]Yuan Z-H(袁钊和), Chen Q-M(陈巧敏), Yang X-C(杨新春). Development of mechanization technology of cast-transplanting rice, transplanting rice and direct seeding rice. Trans Agric Machinery (农业机械学报), 1998, 29(3): 181–183 (in Chinese)[17]Song J-Q(宋建铨). Discussion of rice planting mechanization technology. Chin Agric Mech (中国农机化), 2005, (4): 19 (in Chinese)[18]Li J-F(李金峰), Zheng G-P(郑桂萍), Qian Y-D(钱永德). Studying on advances of growing rice in seedling in bottle(Ⅰ)-seedling quality. J Heilongjiang August First Land Reclamation Univ (黑龙江八一农垦大学学报), 2000, 12(2): 25–28 (in Chinese with English abstract)[19]Li W-X(林文雄), Wang S-L(王松良), Liang Y-Y(梁义元), Guo Y-C(郭玉春), He S-L(何水林), Zheng F-D(郑履端), Weng D-H(翁定河), Hong L-S(洪来水), Pan Z-X(潘铮铣). Physioecological study on high yielding cultivation of rice by dry raising seedling and thin spacing transplanting techniques: Ⅱ. High yielding formation and its physiobiochemical properties of early rice. Chin J Appl Ecol (应用生态学报), 1998, 9(4): 395–399 (in Chinese with English abstract)[20]Zhang H-C(张洪程), Dai Q-G(戴其根), Qiu F(邱枫), Huo Z-Y(霍中洋), Xu K(许轲), Dong M-H(董明辉), Yang H-S(杨海生). Studies on the biological superiority of yield formation of broadcasting-seedling rice and its high-yield cultured way. J Jiangsu Agric Coll (江苏农学院学报), 1998, 19(3): 11–17 (in Chinese with English abstract)[21]Dai Q-G(戴其根), Zhang H-C(张洪程), Zhong M-X(钟明喜), Huo Z-Y(霍中洋), Yuan Y(袁勇), Zhang H-Q(张宏泉). Preliminary study on uniformity of seedling broadcasting rice. J Jiangsu Agric Coll (江苏农学院学报), 1996, 17(1): 21–24 (in Chinese with English abstract)[22]Guo B-W(郭保卫), Chen H-C(陈厚存), Zhang C-H(张春华), Wei H-Y(魏海燕), Zhang H-C(张洪程), Dai Q-G(戴其根), Huo Z-Y(霍中洋), Xu K(许轲), Xing L(邢琳), Guan W-W(管文文), Huang X-F(黄幸福), Yang X(杨雄). Morphological and physiological changes in seedling standing and establishment of broadcasted rice seedlings. Acta Agron Sin (作物学报), 2010, 36(10): 1715–1724 (in Chinese with English abstract)[23]zuo B-W(郭保卫), Zhang C-H(张春华), Chen H-C(陈厚存), Zhang H-C(张洪程), Zhou X-T(周兴涛), Zhang J(张军), Li J(李杰), Chen J-D(陈京都), Xu K(许轲), Wei H-Y(魏海燕), Dai Q-G(戴其根), Huo Z-Y(霍中洋), Xing L(邢琳), Zhu C-C(朱聪聪). Root characteristics of broadcasted rice seedlings during seedling standing and its effect on plant growth. Chin J Rice Sci (中国水稻科学), 2011, 25(5): 623–630 (in Chinese with English abstract)[24]Ren W-J(任万军), Yang W-Y(杨文钰), Liu D-Y(刘代银), Zeng B-R(曾必荣). The optimized seedling-broadcasting technique rice. Sichuan Agric Sci Technol (四川农业科技) , 2008, (1): 22–23 (in Chinese)[26]Guo B-W(郭保卫), Zhang H-C(张洪程), Zhang C-H(张春华), Chen H-C(陈厚存), Xu K(许轲), Zhou X-T (周兴涛), Zhang J(张军), Chen J-D(陈京都), Wei H-Y(魏海燕), Dai Q-G(戴其根), Huo Z-Y(霍中洋), Gao H(高辉), Zhu C-C(朱聪聪), Xing L(邢琳), Huang X-F (黄幸福). Effect of seedling standing and establishment on photosynthetic characteristics and matter production of broadcasted rice. Chin J Rice Sci (中国水稻科学), 2012, 26(3): 311–319 (in Chinese with English abstract)[27]Zhang H-C(张洪程), Wu G-C(吴桂成), Li D-J(李德剑), Xiao Y-C(肖跃成), Gong J-L(龚金龙), Li J(李杰), Dai Q-G(戴其根), Huo Z-Y(霍中洋), Xu K(许轲), Gao H(高辉), Wei H-Y(魏海燕), Sha A-Q(沙安勤), Zhou Y-Y(周有炎), Wang J-B(王宝金), Wu A-G(吴爱国). Population characteristics and formation mechanism for super-high-yielding hybrid japonica rice (13.5 t ha−1). Acta Agron Sin (作物学报), 2010, 36(9): 1547–1558[28]Wang S-L(王松良), Lin W-X(林文雄), Liang Y-Y(梁义元), Yu G-J(余高镜). The mechanism of high-yielding in rice under dry-raising seedling and thin-planting and its regulating technique II. Ecological mechanism of high-yielding in rice under dry-raising and thin-planting. J Fujian Agri Univ(福建农业大学学报), 1999, 28(2): 135–141 (in Chinese with English abstract)[29]Chen H-C(陈厚存), Wang S-L(王石麟), Yu B-F(于宝富), Ji J(吉剑), Li G-Y(李桂云), Sun Y-J(孙亚军). Studies on technologies of dry-raised seedlings of cattered-transplantation rice. Shanghai Agric Sci Technol (上海农业科技), 2005(4): 31–32 (in Chinese)[30]Ling Q-H(凌启鸿). Theory and Technology of Precise and Quan-titative Cultivation in Rice (水稻精确定量栽培理论与技术). Beijinig: China Agriculture Press, 2007. pp 99–125 (in Chinese)[31]Gao C-Q(高存启), Yu L-B(于良斌), Nie S-J(聂守军), Shi D-M(史冬梅), Liu P-Y(刘佩印), Lu B-R(卢柄仁), Hu W-H(胡文海). Studies on super-high yield cultivation based on single rice plant transplantation per hill in cold region. Heilongjiang Agric Sci (黑龙江农业科学), 2000, (2): 8–11 (in Chinese with English Abstract)[32]Lin L-Y(林丽英). Development of transplanting mechanization from disordered broadcasting to ordered transplanting. Fujian Agric Mach (福建农机), 2000, (3): 5–6 (in Chinese)[33]Zhang R-L(王瑞丽), Li B-F(李宝筏), Zhang S-B(张树彬), Fu Y-W(付玉武), Wang L-X(王立新), Liu Y(刘颖). Rice pot seedling systematically transplanting and the analysis of parameters. J Shenyang Agric Univ (沈阳农业大学学报), 2000, 31(2): 212–213 (in Chinese with English Abstract)[34]Hu G-Q(胡官庆), Wang D G(王东贵), Zhu D-W(朱敦文), Xue J-B(薛家斌). High yield population of dry raising seedling and sparsely fixed broadcast rice. Hybrid Rice (杂交水稻), 1998, 13(suppl): 47–48 (in Chinese)[35]Hu W-H(胡文河), Qi Y-J(齐义杰), Sun M-C(孙明春), Guan S-Y(关淑艳). Photosynthetic characters of sparsely populated rice. J Jilin Agric Univ (吉林农业大学学报), 2000, 22(4): 11–14 (in Chinese with English Abstract)[36]Yao Y-M(姚月明), Shen M-X(沈明星), Sun H(孙华), Feng R-X(冯瑞兴), Zhu M-G(朱美根). Effect of pot seedling transplanting on single late rice’ growth characteristics and yield. J Jiangsu Agri Sci (江苏农业科学), 2010, (1): 13–15 (in Chinese)[37]Guan S-P(关术平), Zhou S-X(周世兴), Wang H-Y(王海英). Application of high yield technology in supper wide spacing planting rice. Inner Mongolia Agric Sci Tech (内蒙古农业科技), 2010, (4): 113–114 (in Chinese)[38]Zhuang S-D(庄水锻), Chen Y-S(陈艺生). Preliminary analysis of mechanism of increasing production and supporting technology of dry-raising seedling and thin spacing transplanting techniques rice. Fujian Sci Tech Rice Wheat (福建稻麦科技), 1999, (4): 19–21[39]Wang L-H(王兰辉), Wang F-M(王方明), Guo J-Q(郭建全), He W-G(何伟国), He T-W(何天伟). Integration and Application of super high yield technology in Yingshan County. Sichuan Agric Sci Technol (四川农业科技) , 2008, (2): 30–31 (in Chinese) |
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