Citation: | Zheng Jiangping, Wang Chunyi, Chinese Academy, et al. Impact of chilling temperature and drought on corn physiological process in seedling stage. J Appl Meteor Sci, 2006, 17(1): 119-123. DOI: 10.11898/1001-7313.20060118 |
Northeast China is a frequently occurring area of agricultural meteorological disasters, where chilling temperature and drought frequently happen simultaneously, which brings about a greater impact on the growing up process and grain yield of corn and other crops. Therefore, they are paid more attention to. However, the researches in the past are mostly of the single weather disaster of either chilling damage or drought, seldom considering their combining impacts on corn growing up process. From this view point, combining impacts of chilling damage and drought on corn physiological process are undertaken with its growing up process in seeding stages.The experiment is carried out in the artificial weather laboratory of crops cultivating institute of Heilongjiang Agricultural Academy in 2004, where the mode of cultivating corn in a pot is adopted and the corn being cultivated is treated with chilling damage and drought respectively in its seeding stages. Through artificial simulation experiment, the impact of chilling damage, drought and their combining on corn physiological process, growing up process in seeding stages are quantitatively studied. Results are as follows:the impacts of chilling damage on photosynthesis and transpiration rate are both negative effects; photosynthesis rate assumes a conic section correlation with temperature. Transpiration rate assumes a cublic section corvelation. When the field water capacity is 80% and the temperature drops from 20 ℃ to 16 ℃, photosynthesis rate decreases by 22.4% and transpiration rate decreases by 44.0%; impacts of drought on photosynthesis and transpiration rate are also negative effect; both photosynthesis rate and transpiration rate assumes a conic section correlation with soil moisture. when the temperature is 20 ℃, the photosynthesis rate decreases by 11.5% from 80% of field water capacity to 50% and transpiration rate decreases by 2.7% from 60% of field water capacity to 50%; the combining impacts of chilling damage and drought are far greater than the impacts of single factor of chilling damage or drought; the photosynthesis rate decreases by 32.1% and the transpiration rate decreases by 52.7% when the temperature drops from 20 ℃ to 16 ℃ accompanied by the soil moisture decreases from 80% of field water capacity to 50%.
[1] |
徐祥德, 王馥棠, 萧永生, 等.农业气象防灾调控工程与技术系统.北京:气象出版社, 2002:5-46.
|
[2] |
王春乙, 郭建平.农作物低温冷害综合防御技术研究.北京:气象出版社, 1999:149-211.
|
[3] |
王书裕.农作物冷害研究.北京:气象出版社, 1995:97-107.
|
[4] |
孙玉亭, 杨永歧.东北地区作物冷害研究.气象学报, 1983, 41 (3):313-321. http://www.cnki.com.cn/Article/CJFDTOTAL-QXXB198303006.htm
|
[5] |
高素华, 郭建平, 张国民.低温对玉米幼苗出现反应的影响.应用气象学报, 1999, 10(2):238-242. http://qikan.camscma.cn/jams/ch/reader/view_abstract.aspx?file_no=19990263&flag=1
|
[6] |
刘布春, 王石立, 庄立伟, 等.基于东北玉米区域动力模型的低温冷害预报应用研究.应用气象学报, 2003, 14(5):616-625. http://qikan.camscma.cn/jams/ch/reader/view_abstract.aspx?file_no=20030576&flag=1
|
[7] |
苏正淑, 张毅, 郑波.低温对玉米光合作用及叶面积和籽粒产量的影响.辽宁农业科学, 1990, (5):22-24.
|
[8] |
高素华.灰色关联函数在椰子产量与气象条件分析中的应用.热带作物学报, 1986, 7(2):57-59. http://www.cnki.com.cn/Article/CJFDTOTAL-RDZX198602006.htm
|