花生对水分胁迫的响应研究进展

姚珍珠,夏桂敏*,王淑君,迟道才

中国油料作物学报 ›› 2016, Vol. 38 ›› Issue (5) : 699.

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中国油料作物学报 ›› 2016, Vol. 38 ›› Issue (5) : 699. DOI: 10.7505/j.issn.1007-9084.2016.05.022
综述与专论

花生对水分胁迫的响应研究进展

  • 姚珍珠(1990-),女,硕士研究生,主要从事节水灌溉理论与技术研究。E-mail:shuibao102102@163.com
作者信息 +

Research progress of the effects of water stress on peanut

Author information +
文章历史 +

摘要

花生是我国主要的油料作物和重要的经济作物,干旱对其生长发育、代谢生理、产量、品质及水分利用效率均有一定的影响。本文分析了水分胁迫及复水后,花生生长、代谢生理的调节动态;总结了花生品质的变化规律;综述了花生水分利用效率因其受水分胁迫及复水后的响应,水分胁迫及复水对花生生长、代谢生理、产量、品质及水分利用效率的影响,为进一步实施花生的节水栽培技术和确定花生的调亏灌溉制度提供参考。

Abstract

Peanut is a major oil crop and an important economical crop in China. Drought is one of the most important environmental stresses affecting the productivity and quality of peanut. The paper analyzed the regulation dynamics of peanut growth and metabolic physiology, concluded the changes of peanut quality, and summarized the response of peanut water use efficiency to water stress and re-water. Elucidation of the complex mechanism will provide a theoretical basis for further implement of peanut water-saving cultivation techniques and choice of peanut deficit irrigation regime.

关键词

花生 / 水分胁迫 / 生理生态性状 / 产量 / 水分利用效率

Key words

Peanut / Water stress / Ecophysiological traits / Yield / Water use efficiency

引用本文

导出引用
姚珍珠,夏桂敏*,王淑君,迟道才 . 花生对水分胁迫的响应研究进展[J]. 中国油料作物学报, 2016, 38(5): 699 https://doi.org/10.7505/j.issn.1007-9084.2016.05.022
YAO Zhen-zhu, XIA Gui-min*, WANG Shu-jun, HU Jia-qi, CHI Dao-cai . Research progress of the effects of water stress on peanut[J]. CHINESE JOURNAL OF OIL CROP SCIENCES, 2016, 38(5): 699 https://doi.org/10.7505/j.issn.1007-9084.2016.05.022

参考文献

[1]苗锦山,王铭伦.水分胁迫对花生生长发育影响的研究进展[J].花生学报,2003,32(增刊):368-371.

[2]张俊,刘娟,臧秀旺,等.不同生育时期干旱胁迫对花生产量及代谢调节的影响[J] .核农学报,2015,29(6):1190-1197.

[3] Jha B, Mishra A, Chaturvedi A K. Engineering Stress Tolerance in Peanut (Arachis hypogaea L.)[A]. Genetically Modified Organisms in Food: Production, Safety, Regulation and Public Health[M]. 2016.

[4] Savage G P, Keenan J I. The composition and nutritive value of groundnut kernels[A].The Groundnut Crop[M]. 1994:173-213.

[5]张 俊 ,刘 娟,臧秀旺,等. 不同生育时期水分胁迫对花生生长发育和产量的影响[J].中国农学通报,2015,31(24): 93-98.

[6]张 怡. 中国花生生产布局变动解析[J].中国农村经济, 2014, 8(3): 09-11.

[7] Wan X R, Li L. Regulation of ABA level and water-stress tolerance of Arabidopsis, by ectopic expression of a peanut 9- cis -epoxycarotenoid dioxygenase gene[J]. Biochemical & Biophysical Research Communications, 2006, 347(4):1030-1038. [8] Cunha A P M, Alvalá R C, Nobre C A, et al. Monitoring vegetative drought dynamics in the Brazilian semiarid region[J]. Agricultural & Forest Meteorology, 2015, 214-215:494-505.

[9] Aninbon C, Jogloy S, Vorasoot N, et al. Effect of end of season water deficit on phenolic compounds in peanut genotypes with different levels of resistance to drought.[J]. Food Chemistry, 2016, 196:123-129.

[10]王 瑾,李玉荣,张嘉楠,等. 中国花生主载品种抗旱性鉴定及其遗传多样性分析[J].中国农业科技导报,2015,17(1):57-64

[11]姜慧芳,任小平. 干旱胁迫对花生叶片 HD. 活性和蛋白质的影响[J].作物学报,2004,30(2):169-174.

[12]丁 红,张智猛,戴良香,等.干旱胁迫对花生生育后期根系生长特征的影响[J].中国生态农业学报, 2013,21(12):1477-1483.

[13]Wison J B. Shoot competition and root competition[J]. Journal of Applied Ecology,1988,25(1):279-296.

[14] Hund A, Liedgens M. Rooting depth and water use efficiency of tropical maize inbred lines, differing in drought tolerance[J]. Plant & Soil, 2009, 318(1-2):311-325.

[15]李俊庆.不同生育时期干旱处理对下花生生长发育的影响[J].花生学报,2004,33(3):33-35.

[16]薛慧勤,孙兰珍.水分胁迫对不同抗旱性花生品种生理特性的影响[J].干旱地区农业研究,1997,15(4):83-85.

[17]顾学花,孙莲强,高 波,等.施钙岁干旱胁迫下书生生理特性、产量和品质的影响[J]. 应用生态学报,2015,26(5):1433-1439.

[18] Rowland D L, Faircloth W H, Payton P, et al. Primed acclimation of cultivated peanut ( Arachis hypogaea, L.) through the use of deficit irrigation timed to crop developmental periods ☆[J]. Agricultural Water Management, 2012, 113(10):85-95.

[19] Jongrungklang N, Toomsan B, Vorasoot N, et al. Classification of root distribution patterns and their contributions to yield in peanut genotypes under mid-season drought stress[J]. Field Crops Research, 2012, 127(1):181-190.

[20]赵长星,程 曦,王月福,等. 不同生育时期干旱胁迫对花生生长发育和复水后补偿效应的影响[J].中国油料作物学报,2012,34(6):627-632.

[21] 张智猛,万书波,戴良香,等. 不同花生品种对干旱胁迫的响应[J] 中国生态农业学报,2011,19(3):631-638.

[22] 刘吉利,赵长星,吴 娜,等.苗期干旱及复水对花生光合特性及水分利用效率的影响[J].中国农业科学,2011,44(3):469-476.

[23]厉广辉,张 昆,刘凤珍,等.不同抗旱性花生品种的叶片形态及生理特性[J].中国农业科学,2014,47(4):644-654.

[24]曹铁华,梁煊赫,张 磊,等 开花后水分胁迫对花生产量形成过程的影响[J] 吉林农业大学学报,2011,33(1):9-13.

[25] Dramé K N, Clavel D, Repellin A, et al. Water deficit induces variation in expression of stress-responsive genes in two peanut ( Arachis hypogaea L.) cultivars with different tolerance to drought[J]. Plant Physiology & Biochemistry Ppb, 2007, 45(3-4):236-243.

[26]张智猛,戴良香,宋文武,等. 干旱处理对花生品种叶片保护酶活性和渗透物质含量的影响[J].作物学报, 2013, 39(1): 133-141.

[27]张艳侠.外源甜菜碱改善花生抗旱性的研究[D].泰安:山东农业大学, 2006.

[28] Arunyanark A, Jogloy S, Akkasaeng C, et al. Chlorophyll Stability is an Indicator of Drought Tolerance in Peanut[J]. Journal of Agronomy & Crop Science, 2008, 194(194):113-125.

[29]孙爱清,万勇善,刘凤珍,等.干旱胁迫对不同花生品种光合特性和产量的影响[J].山东农业科学 2010(10):32-38.

[30] Amako K, Chen G X, Asada K. Separate assays specific for ascorbate peroxidase and guaiacol peroxidase and for the chloroplastic and cytosolic isozymes of ascorbate peroxidase in plants[J]. Plant & Cell Physiology, 1994, 35(3):497-504.

[31]薛慧勤, 孙兰珍, 甘信民, 等. 花生品种抗旱性综合评价及其抗旱机理的数量分析[J]. 干旱地区农业研究, 1999, 17(4): 82–85.

[32]杨晓康. 干旱胁迫对不同抗旱花生品种生理特性、产量和品质的影响[D].泰安:山东农业大学,2012.

[33]严美玲,李向东,林英杰,等. 苗期干旱胁迫对不同抗旱花生品种生理特性、产量和品质的影响[J].作物学报, 2007, 33(1): 113-119.

[34] Singh D, Collakova E, Isleib T G, et al. Differential physiological and metabolic responses to drought stress of peanut cultivars and breeding lines[J]. Crop Science, 2014, 54(5):2262-2274.

[35]戴俊英,沈秀瑛,徐世昌,等.水分胁迫对玉米光合性能及产量的影响[J].作物学报,1995,21(3): 356-363.

[36] Haro R J, Dardanelli J L, Otegui M E, et al. Seed yield determination of peanut crops under water deficit: Soil strength effects on pod set, the source–sink ratio and radiation use efficiency[J]. Field Crops Research, 2008, 109(1–3):24-33.

[37] Collino D J, Dardanelli J L, Sereno R, et al. Physiological responses of argentine peanut varieties to water stress.: Light interception, radiation use efficiency and partitioning of assimilates[J]. Field Crops Research, 2001, 70(3):177–184.

[38]侯 敏,侯 刚,刘学良,等. 水分胁迫下氮素水平对花生产量和品质的生理生态影响[J].安徽农学通报,2010,16(15):8-16.

[39]姚君平,罗瑶年. 早、中熟花生不同生育阶段土壤水分亏缺对植株生育和产量的影响[J]. 花生科技 1985(20):1-8.

[40]程 曦,赵长星,王铭伦,等 不同生育时期干旱胁迫对花生抗旱指标及产量的影响[J] 青岛农业大学学报(自然科学版),2010(27):282-284.

[41]姚君平,罗瑶年,杨新道,等. 早、中熟花生不同生育阶段土壤水分亏缺对植株生育和产量的影响[J]. 花生科技, 1985, 24(3): 18-22.

[42] Girdthai T, Jogloy S, Vorasoot N, et al. Associations between physiological traits for drought tolerance and aflatoxin contamination in peanut genotypes under terminal drought[J]. Plant Breeding, 2010, 129(6):693-699.

[43]刘吉利,王铭伦,吴娜,等. 苗期水分胁迫对花生产量、品质和水分利用效率的影响[J].中国农业科技导报, 2009, 11(2): 114-118.

[44] Flexas J, Bota J, Galmés J, et al. Keeping a positive carbon balance under adverse conditions: responses of photosynthesis and respiration to water stress[J]. Physiologia Plantarum, 2006, 127(3):343–352.

[45] Jongrungklang N, Toomsan B, Vorasoot N, et al. Drought tolerance mechanisms for yield responses to pre-flowering drought stress of peanut genotypes with different drought tolerant levels[J]. Field Crops Research, 2013, 144(144):34-42.

[46]李冀南,李朴芳,孔海燕,等.干旱胁迫下植物根源化学信号研究进展[J].生态学报,2011,31(9) : 2610-2620.

[47] Kheira A A A. Macromanagement of deficit-irrigated peanut with sprinkler irrigation[J]. Agricultural Water Management, 2009, 96(10):1409-1420.

[48] Collino D J, Dardanelli J L, Sereno R, et al. Physiological responses of argentine peanut varieties to water stress. Water uptake and water use efficiency[J]. Field Crops Research, 2000, 68(00):133–142.

[49] Mullen J D, Yu Y, Hoogenboom G. Estimating the demand for irrigation water in a humid climate: A case study from the southeastern United States[J]. Agricultural Water Management, 2009, 96(10):1421-1428.

[50] Rowland D L, Faircloth W H, Payton P, et al. Primed acclimation of cultivated peanut ( Arachis hypogaea, L.) through the use of deficit irrigation timed to crop developmental periods ☆[J]. Agricultural Water Management, 2012, 113(10):85-95. [51] Zhang D, Guo P. Integrated agriculture water management optimization model for water saving potential analysis[J]. Agricultural Water Management, 2016, 170: 5-19.

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国家公益性行业(农业)科研专项项目(201303125)

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