绿洲棉田UV-B辐射增强对棉花生长发育的影响
The Effect of Enhanced UV-B Radiation on the Growth of Cotton in Oasis Cotton Field
DOI: 10.12677/HJAS.2015.53017, PDF, HTML, XML, 下载: 2,451  浏览: 6,855  国家自然科学基金支持
作者: 王 进, 白 丽:石河子大学生命科学学院,新疆 石河子;杨明凤:乌兰乌苏农业气象试验站,新疆 石河子
关键词: UV-B辐射棉花形态产量品质UV-B Radiation Cotton Physiological Indicator Yield Quality
摘要: 在大田试验条件下,研究UV-B辐射增强对棉花生长发育的影响。通过人工增加对棉花UV-B辐射,设置4个处理,每个处理的辐射剂量分别为0 W/m2 (R0)、0.5 W/m2 (R1)、1.0 W/m2 (R2) 和1.5 W/m2 (R3),研究了UV-B辐射增强对棉花株高、茎粗、叶面积、叶片表观伤害、产量和品质的影响。结果表明:随着UV-B辐射增强,R1、R2和R3处理组的株高、茎粗、叶面积分别与对照达到了极显著水平(P < 0.01),R3与各个处理之间差异均达到了极显著水平(P < 0.01);棉花叶片可见伤害症状越来越严重,各个处理的棉花产量和品质显著低于对照。UV-B辐射增强使棉花形态、产量和品质之间存在密切的直接关系,UV-B辐射强度越大对棉花的影响就越大。
Abstract: The objectives of this research were to study the influences of enhanced ultraviolet radiation (UV-B, 280 - 320 nm) on physiological indicator, yield and quality of cotton. We set four treatments of 0 w/m2 (R0), 0.5w/m2 (R1), 1w/m2 (R2), 1.5 w/m2 (R3) by increasing artificial UV-B radiation and studied the effect of enhanced Ultraviolet-B radiation on plant height, stem diameter, leaf area index (LAI), apparent injure in leaf, yield and quality of cotton. The results showed that the plant height, stem diameter and LAI had significant correlation with the increasing Ultraviolet- B radiation (P < 0.01), and the difference between R3 and other treatments also had statistically significance (P < 0.01). The apparent injury in leaf of cotton became more serious and the quantity and quality was also at the lowest level as followed. The relationship between UV-B radiation and cotton growth was closer. The higher intensity of UV-B radiation would have more negative effects on cotton growth.
文章引用:王进, 白丽, 杨明凤. 绿洲棉田UV-B辐射增强对棉花生长发育的影响[J]. 农业科学, 2015, 5(3): 112-118. http://dx.doi.org/10.12677/HJAS.2015.53017

参考文献

[1] Teramura, A.H. (1983) Effect of ultraviolet-B radiation on the growth and yield of crop plants. Physiologia Plantarum, 58, 415-427.
[2] 郑有飞, 颜景义, 万长建, 等 (1996) 紫外辐射增加对农作物的影响及其对策. 中国农业气象, 4, 51-53.
[3] 林文雄, 梁康迳, 梁义元, 等 (2002) 水稻对紫外线B辐射增强的抗性遗传分析. 作物学报, 5, 686-692.
[4] 杨志敏, 颜景义, 郑有飞 (1996) 紫外辐射增加对大豆光合作用和生长的影响. 生态学报, 4, 154-159.
[5] Biggs, R.H. and Kouthus, S.V. (1978) UV-B biological and climate effects research final report U.S. Department of Agriculture. University of Florida Press, Gainesville, 77.
[6] Sullivan, J.H. and Teramura, A.H. (1988) Effects of ultraviolet-B ration on seeding growth in the pinacease. American Journal of Botany, 75, 225-230.
[7] 郑有飞, 杨志敏, 颜景义, 等 (1996) 作物对太阳紫外辐射增加的生物效应及其评估. 应用生态学报, 1, 107-109.
[8] 刘荣绅, 胡艳, 李永政 (1998) 沈阳陨石山森林公园SO2污染现状与植物反应的研究. 生态学杂志, 2, 26-31.
[9] Dai, Q.J., Peng, S.B., Chavez, A.Q. and Vergara, B.S. (1994) Intra-specific responses of 188 rice cultivars to enhanced UV-B radiation. Environmental and Experimental Botany, 34, 433-442.
[10] 李亚敏, 岳明 (2005) 补充UV-B辐射对浙贝母生长和光合作用的影响. 西北植物学报, 4, 740-744.
[11] 王传海, 郑有飞, 何都良, 等 (2003) 小麦不同指标对紫外辐射UV-B增加反应敏感性差异的比较. 中国农学通报, 6, 43-45.
[12] 杨志敏, 颜景义, 郑有飞 (1996) 紫外线辐射增加对大豆光合作用和生长的影响. 生态学报, 2, 154-159.
[13] 郑有飞, 简慰民, 李秀芬, 等 (1998) 紫外辐射增强对大豆影响的进一步分析. 环境科学学报, 5, 549-552.