Xinjiang Agricultural Sciences ›› 2022, Vol. 59 ›› Issue (3): 558-566.DOI: 10.6048/j.issn.1001-4330.2022.03.005
• Crop Genetics and Breeding·Molecular Genetics·Cultivation Physiology·Germplasm Resources • Previous Articles Next Articles
MENG Ajing1(), QI Yingying2, FU Yanbo2, WANG Zhiguo2, WANG Xinyong1, FENG Yaozu2(
)
Received:
2021-04-12
Online:
2022-03-20
Published:
2022-03-28
Correspondence author:
FENG Yaozu
Supported by:
孟阿静1(), 齐莹莹2, 付彦博2, 王治国2, 王新勇1, 冯耀祖2(
)
通讯作者:
冯耀祖
作者简介:
孟阿静(1989-),女,河南商丘人,助理研究员,硕士研究生,研究方向为植物生理生化,(E-mail) maj19890917@163.com
基金资助:
CLC Number:
MENG Ajing, QI Yingying, FU Yanbo, WANG Zhiguo, WANG Xinyong, FENG Yaozu. Effects of Warming Irrigation on Biomass, Nutrient Uptake and Yield of Cotton[J]. Xinjiang Agricultural Sciences, 2022, 59(3): 558-566.
孟阿静, 齐莹莹, 付彦博, 王治国, 王新勇, 冯耀祖. 增温水滴灌对棉花生物量、养分吸收及产量的影响[J]. 新疆农业科学, 2022, 59(3): 558-566.
土层深度 Soil depth (cm) | 速效氮 Available N (g/kg) | 速效磷 Available P2O5 (mg/kg) | 速效钾 Available K2O (mg/kg) | 有机质 Organic matter (g/kg) | 总盐 Total salt (g/kg) |
---|---|---|---|---|---|
0~20 | 99.41 | 30.14 | 252.00 | 10.89 | 1.80 |
20~40 | 69.46 | 7.82 | 102.67 | 8.68 | 0.83 |
Table 1 Nutrient content of experiment plot
土层深度 Soil depth (cm) | 速效氮 Available N (g/kg) | 速效磷 Available P2O5 (mg/kg) | 速效钾 Available K2O (mg/kg) | 有机质 Organic matter (g/kg) | 总盐 Total salt (g/kg) |
---|---|---|---|---|---|
0~20 | 99.41 | 30.14 | 252.00 | 10.89 | 1.80 |
20~40 | 69.46 | 7.82 | 102.67 | 8.68 | 0.83 |
Fig.2 The growth condition of cotton in different growth stage Note: Values followed by a different letter (a, b, c) are significantly different P<0.05;Values followed by a different letter (A,B,C) are significantly different P<0.01,the same as below
生育时期 Growth period | 处理 Treatment | 总生物量 Total biomass | 根生物量 Root biomass | 叶生物量 Leaf biomass | 茎生物量 Stem biomass | 蕾铃生物量 Bud and boll biomass |
---|---|---|---|---|---|---|
蕾期 | CK | 14.94±0.38a | 1.63±0.27a | 6.80±0.27A | 5.94±0.41A | 0.57±0.12a |
Bud stage | ZW | 21.31±1.24b | 2.07±0.28a | 9.45±0.63B | 9.00±0.49B | 0.79±0.03b |
初花期 | CK | 28.56±1.54A | 2.84±0.24A | 7.63±0.67A | 13.24±1.2a | 4.84±0.22a |
Initial bloom stage | ZW | 37.48±2.90B | 4.00±0.42B | 11.60±0.51B | 16.70±1.91a | 5.18±0.81a |
花铃期(7月25日) | CK | 37.12±2.27a | 3.45±0.31a | 12.12±0.87a | 15.00±1.66a | 6.55±0.60a |
Flowering and boll setting period | ZW | 45.11±4.68b | 3.76±0.17a | 14.03±0.72b | 20.64±3.95a | 6.68±0.11a |
盛铃期(8月10日) | CK | 56.54±4.80a | 3.74±0.66a | 14.63±0.91a | 18.68±3.54a | 19.49±2.22a |
Full boll stage | ZW | 67.37±1.81b | 4.30±0.82a | 17.63±0.96b | 26.73±2.62b | 19.02±0.65a |
Table 2 Effect of warming drip irrigation on the biomass of cotton in different growth stages (g)
生育时期 Growth period | 处理 Treatment | 总生物量 Total biomass | 根生物量 Root biomass | 叶生物量 Leaf biomass | 茎生物量 Stem biomass | 蕾铃生物量 Bud and boll biomass |
---|---|---|---|---|---|---|
蕾期 | CK | 14.94±0.38a | 1.63±0.27a | 6.80±0.27A | 5.94±0.41A | 0.57±0.12a |
Bud stage | ZW | 21.31±1.24b | 2.07±0.28a | 9.45±0.63B | 9.00±0.49B | 0.79±0.03b |
初花期 | CK | 28.56±1.54A | 2.84±0.24A | 7.63±0.67A | 13.24±1.2a | 4.84±0.22a |
Initial bloom stage | ZW | 37.48±2.90B | 4.00±0.42B | 11.60±0.51B | 16.70±1.91a | 5.18±0.81a |
花铃期(7月25日) | CK | 37.12±2.27a | 3.45±0.31a | 12.12±0.87a | 15.00±1.66a | 6.55±0.60a |
Flowering and boll setting period | ZW | 45.11±4.68b | 3.76±0.17a | 14.03±0.72b | 20.64±3.95a | 6.68±0.11a |
盛铃期(8月10日) | CK | 56.54±4.80a | 3.74±0.66a | 14.63±0.91a | 18.68±3.54a | 19.49±2.22a |
Full boll stage | ZW | 67.37±1.81b | 4.30±0.82a | 17.63±0.96b | 26.73±2.62b | 19.02±0.65a |
生育时期 Growth stage | 处理 Treatment | 根重比 Root weight ratio | 叶重比 Leaf weight ratio | 茎重比 Stem weight ratio | 根叶比 Genyevi | 根冠比 Root shoot ratio | 蕾铃重比 Bud and boll weight ratio |
---|---|---|---|---|---|---|---|
蕾期 Bud stage | CK | 0.12±0.02a | 0.46±0.02a | 0.40±0.03a | 0.26±0.03a | 0.13±0.02a | 0.02±0.00a |
ZW | 0.09±0.01b | 0.44±0.03a | 0.42±0.02a | 0.21±0.02a | 0.10±0.01b | 0.04±0.00b | |
初花期 Initial bloom stage | CK | 0.10±0.01a | 0.27±0.02a | 0.47±0.04a | 0.38±0.04a | 0.11±0.01a | 0.16±0.01a |
ZW | 0.11±0.01a | 0.31±0.03a | 0.45±0.05a | 0.35±0.05a | 0.12±0.02a | 0.13±0.01a | |
花铃期 Flowering and boll setting period | CK | 0.09±0.01a | 0.33±0.02a | 0.40±0.04a | 0.29±0.04a | 0.10±0.01a | 0.18±0.02a |
ZW | 0.08±0.00a | 0.31±0.02a | 0.46±0.08a | 0.27±0.08a | 0.09±0.01a | 0.15±0.01a | |
盛铃期 Full boll stage | CK | 0.07±0.01a | 0.26±0.02a | 0.33±0.06a | 0.26±0.06a | 0.07±0.01a | 0.34±0.04A |
ZW | 0.07±0.01a | 0.28±0.02a | 0.43±0.04b | 0.24±0.04a | 0.07±0.01a | 0.28±0.01B |
Table 3 Effect of warming drip irrigation on the biomass allocation of cotton in different growth stages
生育时期 Growth stage | 处理 Treatment | 根重比 Root weight ratio | 叶重比 Leaf weight ratio | 茎重比 Stem weight ratio | 根叶比 Genyevi | 根冠比 Root shoot ratio | 蕾铃重比 Bud and boll weight ratio |
---|---|---|---|---|---|---|---|
蕾期 Bud stage | CK | 0.12±0.02a | 0.46±0.02a | 0.40±0.03a | 0.26±0.03a | 0.13±0.02a | 0.02±0.00a |
ZW | 0.09±0.01b | 0.44±0.03a | 0.42±0.02a | 0.21±0.02a | 0.10±0.01b | 0.04±0.00b | |
初花期 Initial bloom stage | CK | 0.10±0.01a | 0.27±0.02a | 0.47±0.04a | 0.38±0.04a | 0.11±0.01a | 0.16±0.01a |
ZW | 0.11±0.01a | 0.31±0.03a | 0.45±0.05a | 0.35±0.05a | 0.12±0.02a | 0.13±0.01a | |
花铃期 Flowering and boll setting period | CK | 0.09±0.01a | 0.33±0.02a | 0.40±0.04a | 0.29±0.04a | 0.10±0.01a | 0.18±0.02a |
ZW | 0.08±0.00a | 0.31±0.02a | 0.46±0.08a | 0.27±0.08a | 0.09±0.01a | 0.15±0.01a | |
盛铃期 Full boll stage | CK | 0.07±0.01a | 0.26±0.02a | 0.33±0.06a | 0.26±0.06a | 0.07±0.01a | 0.34±0.04A |
ZW | 0.07±0.01a | 0.28±0.02a | 0.43±0.04b | 0.24±0.04a | 0.07±0.01a | 0.28±0.01B |
处理 Treatment | 单株结铃数 Boll number per plant (个) | 单铃重 Single boll weight (g) | 籽棉产量 Seed cotton yield (kg/hm2) |
---|---|---|---|
CK | 5.50±1.30a | 4.40±0.29a | 4 789±389a |
ZW | 6.52±1.64a | 4.01±0.27a | 5 138±286a |
Table 4 Effect of warming drip irrigation on the yield of cotton
处理 Treatment | 单株结铃数 Boll number per plant (个) | 单铃重 Single boll weight (g) | 籽棉产量 Seed cotton yield (kg/hm2) |
---|---|---|---|
CK | 5.50±1.30a | 4.40±0.29a | 4 789±389a |
ZW | 6.52±1.64a | 4.01±0.27a | 5 138±286a |
[1] | Wang H L, Gan Y T, Wang R Y, et al. Phenological trends in winter wheat and spring cotton in response to climate changes in northwest China[J]. Agricultural & Forest Meteorology, 2008, 148(8-9): 1242-1251. |
[2] | Singh , Rishi P. Influence of High Temperature and Breeding for Heat Tolerance in Cotton: A Review[J]. Advances in Agronomy, 2007, (93): 313-385. |
[3] | 王鹤龄, 王润元, 赵鸿雁, 等. 中国西北冬小麦和棉花生长对气候变暖的响应[J]. 干旱地区农业研究, 2009, 27(1): 258-264. |
WANG Heling, WANG Runyuan, ZHAO Hongyan. Response of winter wheat and cotton to climate warming in north West China[J]. Agric Res Arid Areas, 2009, 27(1): 258-263. | |
[4] | Bgatt J G. Growth and flowering of cotton (Gossypium hirsutumL.) as affected by day length and temperature[J]. Agric Sci, 1977, (89): 583-587. |
[5] | 武辉, 张巨松, 石俊毅, 等. 棉花幼苗对不同程度低温逆境的生理响应[J]. 西北植物学报, 2013, 33(1): 74-82. |
WU Hui, ZHANG Jusong, SHI Junyi, et al. Physiological Responses of cotton seeding under low temperature Stress[J]. Acta Botanica Boreali-Occidentalia Sinica, 2013, 33(1): 74-82. | |
[6] | 于江海, 周和平. 农业灌溉水温研究[J]. 现代农业科技, 2008,(8): 123-125. |
YU Jianghai, ZHOU Heping. Study on water temperature of agricultural irrigation[J]. Modern Agricultural Science and Technology, 2008,(8): 123-125. | |
[7] | 冯玉龙, 刘恩举, 孟庆超. 根系温度对植物的影响[J]. 东北林业大学学报, 1995, 23(4): 94-99. |
FENG Yulong, LIU Enju, MENG Qinchao. Influence of temperature of root system of plant[J]. Journal of Northeast Forestry University, 1995, 23(4): 94-99. | |
[8] | 陈先根, 陈小荣, 黄国红, 等. 灌溉水温对二季晚稻产量影响的探讨[J]. 江西农业学报, 2008, 20(7): 114-115. |
CHEN Xiangen, CHEN Xiaorong, HUANG Guohong, et al. Study on the effects of irrigation water temperature on the two quarter Rice Yield[J]. Acta Agriculturae Jiangxi, 2008, 20(7): 114-115. | |
[9] | 刘盈茹, 张晓军, 王月福, 等. 低温水灌溉对花生植株生长动态的影响[J]. 棉花学报, 2015, 44(1): 1-5. |
LIU Yinrong, ZHANG Xiaojun, WANG Yuefu, et al. Effect of irrigation with low temperature water on plant growth of peanut[J]. Cotton Science, 2015, 44(1): 1-5. | |
[10] | 吴佳鹏, 黄玉胜, 陈凯麒. 水库低温水灌溉对小麦生长的影响评价[J]. 中国农村水利水电, 2008,(3): 68-71. |
WU Jiapeng, HUANG Yusheng, CHEN Kaiqi. Assessment of the effect of Low-temperature water in reservior on the growth of wheat In Chinese)[J]. China Rural Water and Hydropower, 2008,(3): 68-71. | |
[11] | 蔡焕杰, 邵光成, 张振华. 棉花膜下滴灌毛管布置方式的试验研究[J]. 农业工程学报, 2002, 18(1): 45-48. |
CAI Huangjie, SHAO Guangchen, ZHANG Zhenhua. Lateral layout of drip irrigation under plastic mulch for Cotton[J]. Transactions of the CSAE, 2002, 18(1): 45-48. | |
[12] | 刘新永, 田长彦, 马英杰, 等. 南疆膜下滴灌棉花耗水规律以及灌溉制度研究[J]. 干旱地区农业研究, 2006, 24(1): 108-112. |
LIU Xinyong, TIAN Changyan, MA Yingjie, et al. Water consumption characteristics and scheduling of drip irrigation under plastic film for cotton in south Xinjiang[J]. Agricultural Research in the Arid Areas, 2006, 24(1): 108-112. | |
[13] | 戴翠荣, 姜益娟, 郑德明. 膜下滴灌和地下滴灌棉田土壤N-NH 4空间分布特征研究[J]. 新疆农业科学, 2007, 44(5): 608-612. |
DAI Cuirong, JIANG Yijuan, ZHENG Deming. Research on the spatial distribution characteristic of N-NH4 in cotton field soil under membrane drip irrigation and subsurface drip irrigation[J]. Xinjiang Agricultural Sciences, 2007, 44(5): 608-612. | |
[14] | 侯振安, 李品芳, 吕新, 等. 不同滴灌施肥方式下棉花根区的水、盐和氮素分布[J]. 中国农业科学, 2007, 40(3): 549-557. |
HOU Zhenan, LI Pingfang, LÜ Xin, et al. Distributions of Water, Salinity, and Nitrogen in Cotton Root Zone by Different Fertigation Strategies[J]. Scientia Agricultura Sinica, 2007, 40(3): 549-557. | |
[15] | 何雨江, 汪丙国, 王在敏, 等. 棉花微咸水膜下滴灌灌溉制度的研究[J]. 农业工程学报, 2010, 26(7): 14-20. |
HE Yujiang, WANG Binguo, WANG Zaiming, et al. Study on irrigation scheduling of cotton under mulch drip irrigation with brackish water[J]. Transactions of the CSAE, 2010, 26(7): 14-20. | |
[16] | 张伟, 吕新, 李鲁华, 等. 新疆棉田膜下滴灌盐分运移规律[J]. 农业工程学报, 2008, 24(8): 15-19. |
ZHANG Wei, LÜ Xin, LI Luhua, et al. Salt transfer law for cotton field with drip irrigation under the plastic mulch in Xinjiang Region[J]. Transactions of the CSAE, 2008, 24(8): 15-19. | |
[17] | 郑丕尧. 作物生理学导论[M]. 北京: 北京农业大学出版社, 1992:469-471. |
ZHENG Peiyao. Introduction to Crop Physiology [M]. Beijing: Beijing Agricultural University Press, 1992:469-471. | |
[18] | 张朝勇, 蔡焕杰. 膜下滴灌棉花土壤温度的动态变化规律[J]. 干旱地区农业研究, 2005, 23(2): 11-15. |
ZHANG Chaoyong, CAI Huanjie. Dynamic patterns of soil temperature in the drip irrigation under mulching film[J]. Agricultural Research in the Arid Areas, 2005, 23(2): 11-15. | |
[19] | 姚源松. 新疆棉花高产优质高效理论与实践[M]. 乌鲁木齐: 新疆科学技术出版社, 2004. |
YAO Yuansong. Theory and practice of high yield and quality of cotton in Xinjiang [M]. Urumqi: Xinjiang Science and Technology Press, 2004. | |
[20] | 李志博, 韩强, 曹连蒲, 等. 低温弱光对棉花幼苗生长及某些光合特性的影响[J]. 中国棉花, 2009,(4): 13-16. |
LI Zhibo, HAN Qiang, CAO Lianpu, et al. The effects of low temperature and poor light on the growth physiological characteristics of photosynjournal in cotton[J]. China Cotton, 2009,(4): 13-16. | |
[21] | 杨兵, 王进闯, 张远彬. 长期模拟增温对岷江冷杉幼苗生长与生物量分配的影响[J]. 生态学报, 2010,(30): 5994-6000. |
YANG Bing, WANG Jinchuang, ZHANG Yuanbin. Effect of long-term warming on growth and biomass allocation of Abies faxoniana seedings[J]. Acta Ecologica Sinica, 2010,(30): 5994-6000. | |
[22] | Shibu J, Ssra M, Craig L, et al. Growth, nutrition, photosynjournal and transpiration responses of Long leaf pine seedlings to light, water and nitrogen[J]. Forest Ecology and Management, 2003,(180): 335-344. |
[23] | 陈德华, 陈源, 周桂生, 等. 长江流域棉区高产棉花干物质生产与产量及群体构成的关系[J]. 中国棉花, 2001, 28(10): 9-11. |
CHEN Dehua, CHEN Yuan, ZHOU Guisheng. Relationships between dry matter production and yield, population structure of high yield cotton in the Yangtze valley[J]. China Cotton, 2001, 28(10): 9-11 | |
[24] | 苏永中, 杨荣, 杨晓, 等. 不同土壤条件下节水灌溉对棉花产量和灌溉水生产力的影响[J]. 土壤学报, 2014, 51(6): 1193-1201. |
SU Yongzhong, YANG Rong, YANG Xiao. Effects of water-saving irrigation on cotton yield and irrigation water pr-oductivity relative to soil conditions[J]. Acta Pedologica Sinica, 2014, 51(6): 1193-1201. | |
[25] |
Kudermatsch T, Fischera A, Bernhardt-R , et al. Short-term effects of temperature enhance-ment on growth and reproduction of alpine grassland species[J]. Basic and Applied Ecology, 2008, 9(3): 263-274.
DOI URL |
[26] | 张学昕, 刘淑英, 王平, 等. 不同氮磷钾配施对棉花干物质积累、养分吸收及产量的影响[J]. 西北农业学报, 2012, 21(8): 107-113. |
ZHANG Xuexin, LIU Shuying, WANG Ping, et al. effects of different fertilizations on cotton dry matter accumulation,nutrients,uptake and yield[J]. Acta Agriculturae Boreali-occidentalis Sinica, 2012, 21(8): 107-113. | |
[27] | 戴婷婷, 盛建东, 陈波浪. 磷肥不同用量对棉花干物质及氮磷钾吸收分配的影响[J]. 棉花学报, 2010, 22(5): 466-470. |
DAI Tingting, SHENG Jiandong, CHEN Bolang. Effect of different phosphorus fertilizer rate on dry matter accumulation and the absorption and distribution of nitrogen, phosphorous, potassium of cotton[J]. Cotton Science, 2010, 22(5): 466-470. | |
[28] | 胡明芳, 田长彦, 马英杰. 不同水肥条件下棉花苗期的生长、养分吸收与水分利用状况[J]. 干旱地区农业研究, 2002, 20(3): 35-37. |
HU Mingfan, TIAN Changyan, MA Yingjie. The effects of water and fertilizer on cotton growth, nutrition absorption and water utilization[J]. Agricultural Research in the Arid Areas, 2002, 20(3): 357. | |
[29] | 张旺锋, 李蒙春, 勾玲, 等. 北疆高产棉花养分吸收特性的研究[J]. 棉花学报, 1998, 10(2): 88-95. |
ZHANG Wangfeng, LI Mengchun, GOU Ling, et al. Study on the Nutrient Absorption Characters of Cotton with Higher Productivity in North Xinjiang[J]. Cotton Science, 1998, 10(2): 88-95. | |
[30] |
贺新颖, 周治国, 戴艳娇, 等. 铃期增温对棉花产量、品质的影响及其生理机制[J]. 应用生态学报, 2013, 24(12): 3501-3507.
PMID |
HE Xinying, ZHOU Ziguo, DAI Yanjiao, et al. Effect of increased temperature in boll period on fiber yield and quality of cotton and its physiological mechanism[J]. Chinese Journal of Applied Ecology, 2013, 24(12): 3501-3507.
PMID |
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