研究报告

Effects of Mulching Mode on Canopy Physiological, Ecological Characteristics and Yield of Rice under Dry Cultivation

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  • 1College of Agriculture, Hunan Agricultural University, Changsha 410128, China; 2 Hunan Rice Research Institute, Changsha 410125, China; *Corresponding author, E-mail: yuzhuzhang@hotmail.com

Received date: 1900-01-01

  Revised date: 1900-01-01

  Online published: 2010-09-10

Abstract

The effect of mulching mode on leaf physiological and population ecological characteristics of rice was studied by using super hybrid rice combination P88S/1128 as material under three mulching cultivation modes and bare cultivation (control). The results showed that mulching mode had a significant effect on micrometeorological factors and individual growth of rice.There was a significant reduction of rice canopy temperature in hot season, especially in hightemperature periods. Under mulching cultivation, relative humidity increased, creating good microclimatic conditions. At the same time, leaf transpiration increased, leaf temperature decreased under mulching cultivation, which improved the tolerance of rice to high temperature stress, thereby significantly enhanced photosynthetic rate. The yield components under mulching cultivation were obviously improved. With the highest grain number per paincle and seed setting rate, the yield under plastic film mulching cultivation was increased by 1681% compared to the control. Under straw mulching cultivation, the number of effective panicles increased, leading to a yield increase of 959%. However, the rice yield under the liquid film mulching had no significant difference with that of the control.

Cite this article

ZHANG Yu-zhu,LIU Yang ,ZENG Xiang ,CHEN Kai-lin,HUANG Ze-hui ,XIE Hong-ke . Effects of Mulching Mode on Canopy Physiological, Ecological Characteristics and Yield of Rice under Dry Cultivation [J]. Chinese Journal OF Rice Science, 2010 , 24(5) : 487 -492 . DOI: 10.3969/j.issn.1001-7216.2010.05.007

References

[1]张家团, 屈艳萍.近30年来中国干旱灾害演变规律及抗旱减灾对策探讨.中国防汛抗旱, 2008, 18(5): 47-52.
[2]王晗生, 王青宁.保水剂农用抗旱增效研究现状.干旱地区农业研究, 2001, 19(4): 38-45.
[3]Albritton D L, Meir Filho L G, Cubasch U, et al. Technical summary//Houghton J T, Ding Y, Griggs D J, et al. Climate Change 2001: Scientific Basis. Cambridge, UK: Cambridge University Press, 2001: 25-28.
[4]Peng S B, Huang J L, Sheehy J E. Rice yield decline with higher night temperature from global warming. Proc Natl Acad Sci USA, 2004, 101: 9971-9975.
[5]Folland C K, Karl T R, Christy R A. Observed climate variability and change//Houghton J T, Ding Y, Griggs D J, et al. Climate Change 2001: The Scientific Basis. Cambridge, UK: Cambridge University Press, 2001: 101-125.
[6]朱咏莉, 吴金水, 童成立, 等.稻田CO2通量对光强和温度变化的响应特征.环境科学, 2008, 29(4): 1040-1044.
[7]许轲, 张洪程, 戴其根, 等. 稻田套播麦共生期农田生态环境特征及对小麦生长的影响.中国农业科学, 2008, 41(8): 2263-2270.
[8]吕川根, 宗寿余, 胡凝, 等.两系杂交稻两优培九粒重因子的环境模型解析及生态特征分析.作物学报, 2008, 34(12): 2202-2209.
[9]闫川, 丁艳锋, 王强盛, 等.行株距配置对水稻茎秆形态生理与群体生态的影响.中国水稻科学, 2007, 21(5): 530-536.
[10]朱自玺, 赵国强, 邓天宏, 等.秸秆覆盖麦田水分动态及水分利用效率研究.生态农业研究, 2000, 8(1): 34-37.
[11]史宝成, 刘钰, 蔡甲冰.冠层温度指导冬小麦灌溉的试验研究.节水灌溉, 2008(4): 11-14.
[12]樊廷录, 宋尚有, 徐银萍, 等.旱地冬小麦灌浆期冠层温度与产量和水分利用效率的关系.生态学报, 2007, 27(11): 4491-4497.
[13]刘云, 宇振荣, 孙丹峰, 等.冬小麦遥感冠层温度监测土壤含水量的试验研究.水科学进展, 2004, 15(3): 352-356.
[14]Mackill D J, Coffmam W R. Inheritance of high temperature tolerance and pollen shedding in a rice cross. Z Pflanzenzuecht, 1983, 91: 61-69.
[15]许为钢, 盖钧镒. 小麦耐热性研究.华北农学报, 1999, 14(2): 20-24.
[16]Prasad P V V, Boote K J, Allen L H, et al. 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.
[17]Tumer N C, O′Toole J C, Cruz R T. Response of seven diverse rice cultivars to water deficits: Ⅰ. Stress development, canopy temperature, leaf rolling and growth. Field Crops Res,1986, 13: 257-271.
[18]夏冰, 阳树英, 刘清波. 生态因子对水稻叶片光合生理功能的影响综述.作物研究, 2008(2): 140-142.
[19]王友贞, 袁先江, 许浒, 等. 水稻旱作覆膜的增温保墒效果及其对生育状况影响研究.农业工程学报, 2002, 18 (2): 29.
[20]沈康荣, 汪晓春, 刘军, 等. 水稻地膜湿润栽培试验示范.湖北农业科学, 1997 (5): 18-22.
[21]盛海君, 沈其荣, 封克. 覆盖旱作水稻群体发育特征分析.应用生态学报, 2004, 15(1): 59-62.
[22]张文忠, 韩亚东, 杜宏绢, 等. 水稻开花期冠层温度与土壤水分及产量结构的关系.中国水稻科学, 2007, 21(1): 99-102.
[23]Garrity D P, O′Toole J C. Selection for reproductive stage drought avoidance in rice, using infrared thermometry. Agron J, 1995, 87: 773-779.
[24]Chauham J S, Moya T B, Singh R K, et al. Influence of soil moisture stress during reproductive stage on physiological parameters and grain yield in upland rice. Oryza, 1999, 36: 130-135.
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