[1]王继玥,刘政宏,石登红,等.黄秋葵响应干旱胁迫研究进展[J].北方园艺,2021,(22):135-141.[doi:10.11937/bfyy.20210839]
 WANG Jiyue,LIU Zhenghong,SHI Denghong,et al.Research Progress on Response of Abelmoschus esculentus to Drought Stress[J].Northern Horticulture,2021,(22):135-141.[doi:10.11937/bfyy.20210839]
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黄秋葵响应干旱胁迫研究进展

参考文献/References:

[1]SUPRATIM B,VENKATEGOWDA R,ANUJ K,et al.Plant adaptation to drought stress[J].F1000 Research,2016(5):1554.[2]JONES M M,TURNER N C,OSMOND C B.Mechanisms of drought resistance[M].Berlin:Physiology & Biochemistry of Drought Resistance in Plants,1981.[3]LEVITT J.Responses of plants to environmental stresses[M].London:Academic Press,1980.[4]MORGAN J M.Osmoregulation and water stress in higher plants[J].Annual Review of Plant Physiology,1984,35:299-319.[5]OGUNGBENLE H N,AREKEMASE E F.Nutritional evaluation of nigerian dried okra (Abelmoschus esculentus) seeds[J].Pakistan Journal of Scientific & Industrial Research,2014,57(3):129-135.[6]王继玥,刘燕,谢文钢,等.黄秋葵的生物学特性和栽培育种研究进展[J].北方园艺,2016(22):194-197.[7]白禹,卯丹,王继玥.黄酮类物质的生物合成及对干旱胁迫响应的研究进展[J].安徽农业科学,2018,46(16):24-26.[8]刘志媛,党选民,曹振木.土壤水分对黄秋葵苗期生长及光合作用的影响[J].热带植物学报,2003,24(1):70-72.[9]付咪咪,李鲜花,李强.干旱胁迫对黄秋葵种子萌发的影响[J].山西农业科学,2018,46(3):350-353.[10]王继玥,陈俊峰,卯丹,等.干旱胁迫对黄秋葵幼苗生长以及叶片光合特性的影响[J].热带农业科学,2017,37(5):5-9.[11]EL-FATTAH B,HARIDY A G,ABBAS H S.Response to planting date,stress tolerance and genetic diversity analysis among okra (Abelmoschus esculentus (L.) Moench.) varieties[J].Genetic Resources and Crop Evolution,2020,67(3):831-851.[12]AL-HARBI A R,AL-OMRAN A M,EL-AAGHAM F I.Effect of drip irrigation levels and emitters depth on okra (Abelmoschus esculentus) growth[J].Journal of Applied Sciences,2008,8(15):2764-2769.[13]CHATURVEDI A K,SURENDRAN U,GOPINATH G,et al.Elucidation of stage specific physiological sensitivity of okra to drought stress through leaf gas exchange,spectral indices,growth and yield parameters[J].Agricultural Water Management,2019,222(8):92-104.[14]ANJUM S A,ASHRAF U,ZOHAIB A,et al.Growth and developmental responses of crop plants under drought stress:A review[J].Zemdirbyste,2017,104(3):267-276.[15]DEVECI M,CABI E,ARIN L,et al.The Effect of water deficit on some physiological properties of Abelmoschus esculentus (L.) Moench cv.‘Sultani’[J].Journal of Tekirdag Agricultural Faculty,2017(2):48-54.[16]FELLER U,ANDERS I,WEI S.Effects of PEG-induced water deficit in solanumnigrum on Zn and Ni uptake and translocation in split root systems[J].Plants,2015,4(3):284-297.[17]韦吉,黎军平,罗燕春.不同黄秋葵种质对干旱的生理生化反应[J].热带农业科学,2008,24(6):452-455.[18]SANKAR B,JALEEL C,MANIVANNAN P,et al.Drought-induced biochemical modifications and proline metabolism in Abelmoschus esculentus (L.) Moench[J].Acta Botanica Croatica,2007,66(1):43-56.[19]ADEJUMO S A,EZEH O S,MUR L A J,et al.Okra growth and drought tolerance when exposed to water regimes at different growth stages[J].International Journal of Vegetable Science,2019,25(3):1-33.[20]叶宝鉴,苏春连,曾钦朦,等.油茶干旱胁迫研究进展[J].福建农业学报,2020,35(3):351-358.[21]王继玥,石登红,白禹,等.PEG-6000模拟干旱胁迫对黄秋葵种子萌发和幼苗生理特性的影响[J].热带亚热带植物学报,2018,26(6):1-7.[22]BAJJI M,KINET J M,LUTTS S.The use of the electrolyte leakage method for assessing cell membrane stability as a water stress tolerance test in durum wheat[J].Plant Growth Regulation,2002,36(1):61-70.[23]DASGAN H Y,KUCUKKOMURCU S,COBAN G A,et al.Screening of okra genotypes for their resistance to salinity and drought[J].Acta Horticulturae,2019,1257:95-102.[24]EL-AFIFI S,IBRAHIM E,SALEM S.Effect of water stress and some anti-transpirants on growth,yield and quality of okra plants (Abelmoschus esculentus)[J].Journal of Plant Production,2018,9(7):619-625.[25]ZHANG Z F,LI Y Y,XIAO B Z.Comparative transcriptome analysis highlights the crucial roles of photosynthetic system in drought stress adaptation in upland rice[J].Scientific Reports,2016,6(1):19349.[26]沈少炎,吴玉香,郑郁善.植物干旱胁迫响应机制研究进展:从表型到分子[J].生物技术进展,2017,7(3):169-176.[27]SHI D H,WANG J Y,BAI Y,et al.Transcriptome sequencing of okra (Abelmoschus esculentus L.Moench) uncovers differently expressed genes responding to drought stress[J].Journal of Plant Biochemistry and Biotechnology,2020,29(2):155-170.[28]PRAVISYA P,JAYARAM K M,YUSUF A.Biotic priming with pseudomonas fluorescens induce drought stress tolerance in Abelmoschus esculentus (L.) Moench (Okra)[J].Physiology and Molecular Biology of Plants,2019,25:100-112.[29]MULLER A,ELTIGANI A,GEORGE E.The abundance of arbuscular mycorrhizal fungal species in symbiosis with okra plants is affected by induced drought conditions in a calcareous substrate[J].Rhizosphere,2019(10):1-7.[30]ALAM M,HAYAT K,ULLAH I,et al.Improving okra growth and yield by mitigating drought through exogeneous applycation of salicylic acid[J].Fresenius Enironment Bulletin,2020,29(1):529-535.[31]BARZEGAR T,MORADI P,NIKBAKHT J,et al.Physiological response of Okra cv.Kano to foliar application of putrescine and humic acid under water deficit stress[J].International Journal of Horticultural Science and Technology,2016,3(2):187-197.[32]JINDAL S K,ARORA D,GHAI T R.Heterobeltiosis and combining ability for earliness in okra (Abelmoschus esculentus L.Moench)[J].Crop Improve,2009,36(1):1-5.[33]GUAN Y J,JIN H,WANG X J,et al.Seed priming with chitosan improves maize germination and seedling growth in relation to physiological changes under low temperature stress[J].Journal of Zhejiang University (Science B:An International Biomedicine & Biotechnology Journal),2009,10(6):427-433.[34]CHIBU H,SHIBAYAMA H.Effects of chitosan applications on the growth of several crops[M].Yamaguchi:Journal of Chitin and Chitosan Science,2001.[35]KHAN W M,PRITHIVIRAJ B,SMITH D L.Effect of foliar application of chitin and chitosan oligosaccharides on photosynthesis of maize and soybean[J].Photosynthetica,2002,40(4):621-624.[36]RAGAB M E,HELAL N A S,SAWAN O M,et al.Foliar application of glycine betaine for alleviating water stress of tomato plants grown under sandy soil conditions[J].International Journal of Chem Tech Research,2015,8(12):52-67.[37]ALI J,JAN I U,ULLAH H.Selenium supplementation affects vegetative and yield Attributes to Escalate drought tolerance in okra[J].Sarhad Journal of Agriculture,2020,36(1):120-129.[38]LEVIDOW L,ZACCARIA D,MAIA R,et al.Improving water-efficient irrigation:Prospects and difficulties of innovative practices[J].Agricultural Water Management,2014,146:84-94.[39]FARIAS D,SILVA P,LUCAS A,et al.Physiological and productive parameters of the okra under irrigation levels[J].Scientia Horticulturae,2019,252:1-6.[40]SAIFULLAH M,RABBANI M G.Evaluation and characterization of okra (Abelmoschus esculentus L.Moench.) genotypes[J].Saarc Journal of Agriculture,2009(7):92-99.[41]REDDY M T,HARIBABU K,GANESH M,et al.Combining ability analysis for growth,earliness and yield attributes in okra (Abelmoschus esculentus (L.) Moench)[J].Thai Journal of Agricultural Ence,2011,44(3):207-218.[42]REDDY M T,HARIBABU K,GANESH M,et al.Genetic analysis for yield and its components in okra (Abelmoschus esculentus (L.) Moench)[J].Chilean Journal of Agricultural Research,2012,72(3):133-141.[43]ABED M,IBRAHIM E,EL-SHOURA A.Development of okra (Abelmoschus esculentus L.Moench) hybrids derived from selected inbreds under drought stress[J].Journal of Plant Production,2020,11(1):61-69.[44]AZEEM A,WU Y,JAVED Q,et al.Response of okra based on electrophysiological modeling under salt stress and re-watering[J].Bioscience Journal,2017,33(5):1219-1229.[45]ZHAN Y,WU Q,CHEN Y,et al.Comparative proteomic analysis of okra (Abelmoschus esculentus L.) seedlings under salt stress[J].BMC Genomics,2019,20(1):1-12.

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备注/Memo

第一作者简介:王继玥(1984-),男,博士,副教授,现主要从事植物分子育种等研究工作。E-mail:acute2803764@163.com.基金项目:国家留学基金委资助项目(留金法[2017]50863号);贵州省区域内一流培育建设学科资助项目(黔教科研发[2017]85号);贵州省一流师资团队资助项目(2017158322);贵州省教育厅教改资助项目(GZJG20200205);贵阳市财政支持贵阳学院学科建设与研究生教育共同资助项目(2021-xk05)。收稿日期:2021-02-26

更新日期/Last Update: 2022-02-21