首页 分享 花后高温干旱逆境对冬小麦光合特性和产量的影响

花后高温干旱逆境对冬小麦光合特性和产量的影响

来源:花匠小妙招 时间:2025-05-23 08:15
[1] 樊永惠, 葛婷, 杨咏, 李宇星, 武倩倩, 秦博雅, 杨文俊, 黄正来. 外源水杨酸对高温胁迫下小麦籽粒灌浆特性的影响. 麦类作物学报, 2022, 42: 835-845. Fan Y H, Ge T, Yang Y, Li Y X, Wu Q Q, Qin B Y, Yang W J, Huang Z L. Effect of exogenous salicylic acid on grain filling characteristics of wheat under high temperature stress. J Triticeae Crops, 2022, 42: 835-845 (in Chinese with English abstract).[2] Liu B, Asseng S, Müller C, Ewert F, Elliott J, Lobell D, Martre P, Ruane A, Wallach D, Jones J, et al. Similar estimates of temperature impacts on global wheat yield by three independent methods. Nat Clim Change, 2016, 6: 1130-1136.[3] 岳鹏莉, 王晨阳, 卢红芳, 刘卫星, 马耕, 王强, 胡阳阳. 灌浆期高温干旱胁迫对小麦籽粒淀粉积累的影响. 麦类作物学报, 2016, 36: 1489-1496. Yue P L, Wang C Y, Lu H F, Liu W X, Ma G, Wang Q, Hu Y Y. Effect of heat and drought stress on starch accumulation during grain filling stage. J Triticeae Crops, 2016, 36: 1489-1496 (in Chinese with English abstract).[4] Ru C, Hu X T, Wang W E. Nitrogen mitigates the negative effects of combined heat and drought stress on winter wheat by improving physiological characteristics. Physiol Plant, 2024, 176: e14236.[5] Tiryakioğlu M. Dry matter remobilization from different plant parts of six durum wheat genotypes under water-restricted conditions and its compensatory effects on grain yield. Cereal Res Commun, 2024, 52: 1527-1540.[6] 张振, 赵俊晔, 石玉, 张永丽, 于振文. 不同播幅对小麦花后叶片光合特性和产量的影响. 作物学报, 2024, 50: 981-990.
doi: 10.3724/SP.J.1006.2024.31042 Zhang Z, Zhao J Y, Shi Y, Zhang Y L, Yu Z W. Effects of different sowing space on photosynthetic characteristics after anthesis and grain yield of wheat. Acta Agron Sin, 2024, 50: 981-990 (in Chinese with English abstract).
doi: 10.3724/SP.J.1006.2024.31042[7] Hu J, Zhao X Y, Gu L M, Liu P, Zhao B, Zhang J W, Ren B Z. The effects of high temperature, drought, and their combined stresses on the photosynthesis and senescence of summer maize. Agric Water Manag, 2023, 289: 108525.[8] Posch B C, Kariyawasam B C, Bramley H, Coast O, Richards R A, Reynolds M P, Trethowan R, Atkin O K. Exploring high temperature responses of photosynthesis and respiration to improve heat tolerance in wheat. J Exp Bot, 2019, 70: 5051-5069.
doi: 10.1093/jxb/erz257pmid: 31145793[9] Farooq M, Hussain M, Siddique K H M. Drought stress in wheat during flowering and grain-filling periods. Crit Rev Plant Sci, 2014, 33: 331-349.[10] Urban O, Hlaváčová M, Klem K, Novotná K, Rapantová B, Smutná P, Horáková V, Hlavinka P, Škarpa P, Trnka M. Combined effects of drought and high temperature on photosynthetic characteristics in four winter wheat genotypes. Field Crops Res, 2018, 223: 137-149.[11] Kim J, Slafer G A, Savin R. Are portable polyethylene tents reliable for imposing heat treatments in field-grown wheat? Field Crops Res, 2021, 271: 108206.[12] 刘阿康. 播期及调控措施对小麦苗期生长的影响. 中国农业科学院硕士学位论文, 北京, 2021. Liu A K. Effects of Sowing Date and Regulation Measures on Wheat Seedling Growth. MS Thesis of Chinese Academy of Agricultural Sciences, Beijing, China, 2021 (in Chinese with English abstract).[13] Luo Y L, Pang D W, Jin M, Chen J, Kong X, Li W Q, Chang Y L, Li Y, Wang Z L. Identification of plant hormones and candidate hub genes regulating flag leaf senescence in wheat response to water deficit stress at the grain-filling stage. Plant Direct, 2019, 3: e00152.[14] 汝晨. 花后高温和干旱胁迫对冬小麦生长生理特性和产量的影响及氮肥调控机制研究. 西北农林科技大学博士学位论文, 陕西杨凌, 2023. Ru C. Effects of Post-anthesis Heat and Drought Stress on Growth, Physiological Characteristics and Yield of Winter Wheat and the Regulatory Mechanism of Nitrogen Fertilization. PhD Dissertation of Northwest A & F University, Yangling, Shaanxi, China, 2023 (in Chinese with English abstract).[15] 汝晨, 胡笑涛, 吕梦薇, 陈滇豫, 王文娥, 宋天媛. 花后高温干旱胁迫下氮素对冬小麦氮积累与代谢酶、蛋白质含量及水氮利用效率的影响. 中国农业科学, 2022, 55: 3303-3320.
doi: 10.3864/j.issn.0578-1752.2022.17.004 Ru C, Hu X T, Lyu M W, Chen D Y, Wang W E, Song T Y. Effects of nitrogen on nitrogen accumulation and distribution, nitrogen metabolizing enzymes, protein content, and water and nitrogen use efficiency in winter wheat under heat and drought stress after anthesis. Sci Agric Sin, 2022, 55: 3303-3320 (in Chinese with English abstract).
doi: 10.3864/j.issn.0578-1752.2022.17.004[16] Lobell D B, Banziger M, Magorokosho C, Vivek B. Nonlinear heat effects on African maize as evidenced by historical yield trials. Nat Clim Change, 2011, 1: 42-45.[17] Zaveri E, Lobell D B. The role of irrigation in changing wheat yields and heat sensitivity in India. Nat Commun, 2019, 10: 4144.
doi: 10.1038/s41467-019-12183-9pmid: 31515485[18] 刘希伟, 王德梅, 王艳杰, 杨玉双, 赵广才, 常旭虹. 小麦生育中后期干旱高温对籽粒产量形成过程的影响机制及缓解措施. 作物杂志, 2023, (6): 17-25. Liu X W, Wang D M, Wang Y J, Yang Y S, Zhao G C, Chang X H. Impacts mechanism of drought and heat stress in the middle and late growing period on wheat grain yield formation process and mitigation measures. Crops, 2023, (6): 17-25 (in Chinese with English abstract).[19] Mahrookashani A, Siebert S, Hüging H, Ewert F. Independent and combined effects of high temperature and drought stress around anthesis on wheat. J Agron Crop Sci, 2017, 203: 453-463.[20] Semenov M A, Stratonovitch P, Alghabari F, Gooding M J. Adapting wheat in Europe for climate change. J Cereal Sci, 2014, 59: 245-256.
pmid: 24882934[21] Girousse C, Inchboard L, Deswarte J C, Chenu K. How does post-flowering heat impact grain growth and its determining processes in wheat? J Exp Bot, 2021, 72: 6596-6610.
doi: 10.1093/jxb/erab282pmid: 34125876[22] Brugiere N, Jiao S P, Hantke S, Zinselmeier C, Roessler J A, Niu X M, Jones R J, Habben J E. Cytokinin oxidase gene expression in maize is localized to the vasculature, and is induced by cytokinins, abscisic acid, and abiotic stress. Plant Physiol, 2003, 132: 1228-1240.
pmid: 12857805[23] Veselova S V, Farhutdinov R G, Veselov S Y, Kudoyarova G R, Veselov D S, Hartung W. The effect of root cooling on hormone content, leaf conductance and root hydraulic conductivity of durum wheat seedlings (Triticum durum L.). J Plant Physiol, 2005, 162: 21-26.[24] Sattar A, Sher A, Ijaz M, Ullah M S, Ahmad N, Umar U U D. Individual and combined effect of terminal drought and heat stress on allometric growth, grain yield and quality of bread wheat. Pak J Bot, 2020, 52: 405-412.[25] Kunz K, Hu Y C, Boincean B, Postolatii A, Schmidhalter U. Evaluating the impact of a 2.5-3℃ increase in temperature on drought-stressed German wheat cultivars under natural stress conditions. Agric For Meteor, 2023, 332: 109378.[26] Chaves M M, Flexas J, Pinheiro C. Photosynthesis under drought and salt stress: regulation mechanisms from whole plant to cell. Ann Bot, 2009, 103: 551-560.[27] Hlaváčová M, Klem K, Rapantová B, Novotná K, Urban O, Hlavinka P, Smutná P, Horáková V, Škarpa P, Pohanková E, et al. Interactive effects of high temperature and drought stress during stem elongation, anthesis and early grain filling on the yield formation and photosynthesis of winter wheat. Field Crops Res, 2018, 221: 182-195.[28] 刘霞, 尹燕枰, 姜春明, 贺明荣, 王振林. 花后不同时期弱光和高温胁迫对小麦旗叶荧光特性及籽粒灌浆进程的影响. 应用生态学报, 2005, 16: 2117-2121. Liu X, Yin Y P, Jiang C M, He M R, Wang Z L. Effects of weak light and high temperature stress after anthesis on flag leaf fluorescence characteristics and grain fill of wheat. Chin J Appl Ecol, 2005, 16: 2117-2121 (in Chinese with English abstract).[29] Yang J C, Zhang J H, Wang Z Q, Zhu Q S, Liu L J. Water deficit-induced senescence and its relationship to the remobilization of pre-stored carbon in wheat during grain filling. Agron J, 2001, 93: 196-206.[30] Ristic Z, Bukovnik U, Vara Prasad P V. Correlation between heat stability of thylakoid membranes and loss of chlorophyll in winter wheat under heat stress. Crop Sci, 2007, 47: 2067-2073.[31] Djanaguiraman M, Prasad P V V, Seppanen M. Selenium protects sorghum leaves from oxidative damage under high temperature stress by enhancing antioxidant defense system. Plant Physiol Biochem, 2010, 48: 999-1007.[32] Liu X Z, Huang B R. Heat stress injury in relation to membrane lipid peroxidation in creeping bentgrass. Crop Sci, 2000, 40: 503-510.[33] Lu Y Z, Li R Q, Wang R C, Wang X M, Zheng W J, Sun Q X, Tong S M, Dai S J, Xu S B. Comparative proteomic analysis of flag leaves reveals new insight into wheat heat adaptation. Front Plant Sci, 2017, 8: 1086.
doi: 10.3389/fpls.2017.01086pmid: 28676819[34] Zandalinas S I, Mittler R, Balfagón D, Arbona V, Gómez- Cadenas A. Plant adaptations to the combination of drought and high temperatures. Physiol Plant, 2018, 162: 2-12.
doi: 10.1111/ppl.12540pmid: 28042678[35] Shah N H, Paulsen G M. Interaction of drought and high temperature on photosynthesis and grain-filling of wheat. Plant Soil, 2003, 257: 219-226.[36] Feng B L, Yu H, Hu Y G, Gao X L, Gao J F, Gao D L, Zhang S W. The physiological characteristics of the low canopy temperature wheat (Triticum aestivum L.) genotypes under simulated drought condition. Acta Physiol Plant, 2009, 31: 1229-1235.[37] Farooq M, Bramley H, Palta J A, Siddique K H M. Heat stress in wheat during reproductive and grain-filling phases. Crit Rev Plant Sci, 2011, 30: 491-507.[38] Zivcak M, Brestic M, Balatova Z, Drevenakova P, Olsovska K, Kalaji H M, Yang X H, Allakhverdiev S I. Photosynthetic electron transport and specific photoprotective responses in wheat leaves under drought stress. Photosynth Res, 2013, 117: 529-546.[39] Efeoğlu B, Ekmekçi Y, Çiçek N. Physiological responses of three maize cultivars to drought stress and recovery. South Afric J Bot, 2009, 75: 34-42.[40] Hassan I A. Effects of water stress and high temperature on gas exchange and chlorophyll fluorescence in Triticum aestivum L. Photosynthetica, 2006, 44: 312-315.[41] Li X N, Kristiansen K, Rosenqvist E, Liu F L. Elevated CO2 modulates the effects of drought and heat stress on plant water relations and grain yield in wheat. J Agron Crop Sci, 2019, 205: 362-371.

相关知识

施氮对滴灌冬小麦花后光合生理、灌浆特性及产量品质的影响
高温及干旱胁迫对花生光合系统的影响机制
水肥耦合对冬小麦产量和品质的调控效应
花针期膜下滴灌追肥量对花生光合特性和产量的影响
花后喷施KH2PO4对灌浆期高温胁迫下小麦旗叶光合及茎秆特性调控效应研究
不同浇灌次数对花生光合、品质和产量的影响
冬小麦对花前干旱复水的响应规律研究
花后干旱或渍水下氮素供应对小麦光合和籽粒淀粉积累的影响
干旱胁迫对花生根系生长发育和生理特性的影响
花铃期短期渍水和高温对棉花叶片光合特性、膜脂过氧化代谢及产量的影响

网址: 花后高温干旱逆境对冬小麦光合特性和产量的影响 https://www.huajiangbk.com/newsview2013675.html

所属分类:花卉
上一篇: 高中生物教学素材影响光合作用的因
下一篇: 【学习笔记】温度对植物生长的影响

推荐分享