|本期目录/Table of Contents|

[1]赖金莉,李欣欣,薛磊,等.植物抗旱性研究进展[J].江苏农业科学,2018,46(17):23-27.
 Lai Jinli,et al.Research progress on drought resistance of plants[J].Jiangsu Agricultural Sciences,2018,46(17):23-27.
点击复制

植物抗旱性研究进展(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第46卷
期数:
2018年第17期
页码:
23-27
栏目:
专论与综述
出版日期:
2018-09-05

文章信息/Info

Title:
Research progress on drought resistance of plants
作者:
赖金莉1 李欣欣2 薛磊1 陈凌艳1 荣俊冬2 何天友1 郑郁善12
1.福建农林大学园林学院,福建福州 350002; 2.福建农林大学林学院,福建福州 350002
Author(s):
Lai Jinliet al
关键词:
植物干旱胁迫耐旱性生理生化耐旱基因
Keywords:
-
分类号:
Q945.78
DOI:
-
文献标志码:
A
摘要:
干旱作为制约农林业发展的主要因素,不仅影响植物的生长代谢过程,还影响经济作物的产量及再生产,严重的干旱胁迫会导致植物死亡,因此,对植物的抗旱性研究具有非常重要的意义。根据国内外对植物干旱胁迫的研究现状,从植物形态结构、生理生化及抗旱基因方面对植物的抗旱机制进行综述,并对今后植物抗旱性的发展方向进行展望,旨在深入理解植物的耐旱机制,为进一步研究植物的耐旱机制及培育耐旱植物新品种提供理论基础。
Abstract:
-

参考文献/References:

[1]顾菁. 菊属野生种抗旱生理机理及抗旱蛋白质组学研究[D]. 南京:南京农业大学,2013.
[2]Fang Y J,Xiong L Z. General mechanisms of drought response and their application in drought resistance improvement in plants[J]. Cellular and Molecular Life Sciences,2015,72(4):673-689.
[3]Jaleel C A,Gopi R,Sanklar B A,et al. Differential responses in water use efficiency in two varieties of Catharanthus roseus under drought stress[J]. Comptes Rendus Biologies,2008,331(1):42-47.
[4]史刚荣,程雪莲,刘蕾,等. 扁担木叶片和次生木质部解剖和水分生理特征的可塑性[J]. 应用生态学报,2006,17(10):1801-1806.
[5]张盼盼,慕芳,宋慧,等. 糜子叶片解剖结构与其抗旱性关联研究[J]. 农业机械学报,2013,44(5):119-126.
[6]Xu Z,Zhou G. Responses of leaf stomatal density to water status and its relationship with photosynthesis in a grass[J]. Journal of Experimental Botany,2008,59(12):3317-3325.
[7]Habibi G,Hajiboland R. Alleviation of drought stress by silicon supplementation in pistachio(Pistacia vera L.)plants[J]. Folia Horticulturae,2013,25(1):21-29.
[8]Khoyerdi F F,Shamshiri M H,Estaji A. Changes in some physiological and osmotic parameters of several pistachio genotypes under drought stress[J]. Scientia Horticulturae,2016,198:44-51.
[9]Esmaeilpour A,van Labeke M C,Samson R A,et al. Variation in biochemical characteristics,water status,stomata features,leaf carbon isotope composition and its relationship to water use efficiency in pistachio (Pistacia vera L.) cultivars under drought stress condition[J]. Scientia Horticulturae,2016,211:158-166.
[10]邓雅楠,严俊鑫,杨慧颖,等. 草本园林植物抗旱性研究进展[J]. 种子,2017,36(5):51-54.
[11]王艺陶,周宇飞,李丰先,等. 干旱胁迫下高粱叶温与叶片水分状况的关系[J]. 干旱地区农业研究,2013,31(6):146-151.
[12]胡宏远,王振平. 干旱胁迫对赤霞珠葡萄叶片水分及叶绿素荧光参数的影响[J]. 干旱区资源与环境,2017,31 (4):124-130.
[13]赵兰. 4种地被观赏竹抗旱性研究[D]. 重庆:西南大学,2010.
[14]唐洪辉,魏丹,赵庆,等. 干旱胁迫对宫粉羊蹄甲生理指标的影响[J]. 中南林业科技大学学报,2017,37(4):7-13.
[15]孙铁军,苏日古嘎,马万里,等. 10种禾草苗期抗旱性的比较研究[J]. 草业学报,2008,17(4):42-49.
[16]宋海鹏,刘君,李秀玲,等. 干旱胁迫对5种景天属植物生理指标的影响[J]. 草业科学,2010,27(1):11-15.
[17]季杨,张新全,彭燕,等. 干旱胁迫对鸭茅根、叶保护酶活性、渗透物质含量及膜质过氧化作用的影响[J]. 草业学报,2014,23(3):144-151.
[18]肖姣娣. 合欢幼苗对干旱胁迫的生理生化响应[J]. 干旱区资源与环境,2015,29(8):156-160.
[19]刘珊,何茜,李吉跃,等. 石漠化树种圆叶乌桕对干旱胁迫的生理响应[J]. 华南农业大学学报,2016,37(2):96-100.
[20]武燕奇,郭素娟. 5个板栗品种(系)对持续干旱胁迫和复水的生理响应[J]. 中南林业科技大学学报,2017,37(10):67-74.
[21]迟琳琳. 科尔沁沙地4种灌木对干旱胁迫的生理响应[J]. 干旱区资源与环境,2017,31(5):158-162.
[22]任磊,赵夏陆,许靖,等. 4种茶菊对干旱胁迫的形态和生理响应[J]. 生态学报,2015,35(15):5131-5139.
[23]可静,李进,李永洁. 干旱胁迫下黑果枸杞幼苗对外源水杨酸的生理响应[J]. 植物生理学报,2016(4):497-504.
[24]赵阳,赵曼利,焦润安,等. 陇南油橄榄主栽品种对干旱胁迫的生理响应及抗性综合评价[J]. 热带作物学报,2017,38(9):1620-1627.
[25]Ghotbi-Ravandi A A,Shahbazi M,Shariati M,et al. Effects of mild and severe drought stress on photosynthetic efficiency in tolerant and susceptible barley(Hordeum vulgare L.) genotypes[J]. Journal of Agronomy and Crop Science,2014,200(6):403-415.
[26]王继玥,石登红,杜斌,等. 水分胁迫对黄秋葵生理以及光合特性的影响[J]. 热带作物学报,2017,38(9):1614-1619.
[27]张栋. 干旱胁迫对苹果光合作用和叶绿素荧光的影响及叶片衰老特性研究[D]. 杨凌:西北农林科技大学,2011.
[28]冯淑华. 三叶草对干旱胁迫的反应及适应性研究[D]. 哈尔滨:东北农业大学,2012.
[29]季杨,张新全,彭燕,等. 干旱胁迫对鸭茅幼苗根系生长及光合特性的影响[J]. 应用生态学报,2013,24(10):2763-2769.
[30]张仁和,郑友军,马国胜,等. 干旱胁迫对玉米苗期叶片光合作用和保护酶的影响[J]. 生态学报,2011,31(5):1303-1311.
[31]李志军,罗青红,伍维模,等. 干旱胁迫对胡杨和灰叶胡杨光合作用及叶绿素荧光特性的影响[J]. 干旱区研究,2009,26(1):45-52.
[32]王萍,张希吏,石磊. 干旱胁迫下沙芥幼苗叶片光合特性和叶绿素荧光参数的变化[J]. 干旱地区农业研究,2017,35(3):159-163.
[33]郭有燕,刘宏军,孔东升,等. 干旱胁迫对黑果枸杞幼苗光合特性的影响[J]. 西北植物学报,2016,36(1):124-130.
[34]杨晓宇. 沙芥属蔬菜幼苗光合特性及其对干旱胁迫响应的研究[D]. 呼和浩特:内蒙古农业大学,2009.
[35]李磊,李向义,林丽莎,等. 两种生境条件下6种牧草叶绿素含量及荧光参数的比较[J]. 植物生态学报,2011,35(6):672-680.
[36]耿东梅,单立山,李毅,等. 土壤水分胁迫对红砂幼苗叶绿素荧光和抗氧化酶活性的影响[J]. 植物学报,2014,49(3):282-291.
[37]吴敏,张文辉,周建云,等. 干旱胁迫对栓皮栎幼苗细根的生长与生理生化指标的影响[J]. 生态学报,2014,34(15):4223-4233.
[38]Kaur G,Asthir B. Molecular responses to drought stress in plants[J]. Biologia Plantarum,2017,61(2):201-209.
[39]刘艳,陈贵林,蔡贵芳,等. 干旱胁迫对甘草幼苗生长和渗透调节物质含量的影响[J]. 西北植物学报,2011,31(11):2259-2264.
[40]冯淑华,陈雅君,周阳,等. 干旱胁迫下三叶草渗透调节物质动态及与叶片水分的相关性[J]. 中国草地学报,2011,33(6):70-74.
[41]安玉艳,梁宗锁,郝文芳. 杠柳幼苗对不同强度干旱胁迫的生长与生理响应[J]. 生态学报,2011,31(3):716-725.
[42]潘昕,邱权,李吉跃,等. 干旱胁迫下华南地区3种苗木渗透调节物质的动态变化[J]. 华南农业大学学报,2012,33(4):519-523.
[43]刘爱荣,张远兵,谭志静,等. 模拟干旱对佛甲草生长和渗透调节物质积累的影响[J]. 草业学报,2012,21(3):156-162.
[44]李永洁,李进,徐萍,等. 黑果枸杞幼苗对干旱胁迫的生理响应[J]. 干旱区研究,2014,31(4):756-762.
[45]韩忠明,胥苗苗,王云贺,等. 干旱胁迫对防风叶片保护酶活性、渗透调节物质含量及药材品质的影响[J]. 华南农业大学学报,2016,37(6):91-97.
[46]牛素贞,宋勤飞,樊卫国,等. 干旱胁迫对喀斯特地区野生茶树幼苗生理特性及根系生长的影响[J]. 生态学报,2017,37(21):7333-7341.
[47]Carvalho M H. Drought stress and reactive oxygen species:production,scavenging and signaling[J]. Plant Signaling & Behavior,2008,3(3):156-165.
[48]Harb A,Awad D,Samarah N. Gene expression and activity of antioxidant enzymes in barley(Hordeum vulgare L.) under controlled severe drought[J]. Journal of Plant Interactions,2015,10(1):109-116.
[49]Chakraborty U,Pradhan B. Oxidative stress in five wheat varieties(Triticum aestivum L.)exposed to water stress and study of their antioxidant enzyme defense system,water stress responsive metabolites and H2O2 accumulation[J]. Brazilian Journal of Plant Physiology,2012,24(2):117-130.
[50]Marok M A,Tarrago L,Ksas B,et al. A drought-sensitive barley variety displays oxidative stress and strongly increased contents in low-molecular weight antioxidant compounds during water deficit compared to a tolerant variety[J]. Journal of Plant Physiology,2013,170(7):633-645.
[51]刘晓纳,徐媛媛,朱世平,等. 不同柑橘砧木的耐旱性评价[J]. 果树学报,2016(10):1230-1240.
[52]井瑾,王方贞,张瑜,等. 干旱胁迫下火棘种子萌发过程及其抗氧化酶活性变化[J]. 干旱区资源与环境,2017,31(9):135-139.
[53]李国龙,孙亚卿,邵世勤,等. 甜菜幼苗叶片抗氧化系统对干旱胁迫的响应[J]. 作物杂志,2017(5):73-79.
[54]Peleg Z,Blumwald E. Hormone balance and abiotic stress tolerance in crop plants[J]. Current Opinion in Plant Biology,2011,14(3):290-295.
[55]Sauter A,Davies W J,Hartung W. The long-distance abscisic acid signal in the droughted plant:the fate of the hormone on its way from root to shoot[J]. Journal of Experimental Botany,2001,52(363):1991-1997.
[56]潘根生,吴伯千. 水分胁迫过程中茶树新梢内源激素水平的消长及其与耐旱性的关系[J]. 中国农业科学,1996,29(5):9-15.
[57]贾瑞丰,杨曾奖,徐大平,等. 干旱胁迫对降香黄檀幼苗生长及内源激素含量的影响[J]. 生态环境学报,2013,22(7):1136-1140.
[58]丁少净,钟秋平,袁婷婷,等. 干旱胁迫对油茶叶片内源激素及果实生长的影响[J]. 林业科学研究,2016,29(6):933-939.
[59]满达,宛涛,蔡萍,等. 干旱胁迫对差巴嘎蒿苗期内源激素含量的影响[J]. 中国草地学报,2017,39(3):44-48.
[60]俞玲,马晖玲. 甘肃几种早熟禾内源激素水平及干旱适应性[J]. 中国沙漠,2015,35(1):182-188.
[61]张海燕,段文学,解备涛,等. 不同时期干旱胁迫对甘薯内源激素的影响及其与块根产量的关系[J]. 作物学报,2018,44(1):126-136.
[62]Wang R K,Li L L,Cao Z H,et al. Molecular cloning and functional characterization of a novel apple MdCIPK6L gene reveals its involvement in multiple abiotic stress tolerance in transgenic plants[J]. Plant Molecular Biology,2012,79(1/2):123-135.
[63]Zhang Z,Quick M K,Kanelakis K C,et al. Characterization of a plant homolog of hop,a cochaperone of hsp90[J]. Plant Physiology,2003,131(2):525-535.
[64]Bernier J,Atlin G N,Serraj R,et al. Breeding upland rice for drought resistance[J]. Journal of the Science of Food and Agriculture,2008,88(6):927-939.
[65]Guo C,Ge X,Ma H. The rice OsDIL gene plays a role in drought tolerance at vegetative and reproductive stages[J]. Plant Molecular Biology,2013,82(3):239-253.
[66]Hu H,Xiong L. Genetic engineering and breeding of drought-resistant crops[J]. Annual Review of Plant Biology,2014,65(1):715-741.
[67]Mun B G,Lee S U,Park E J,et al. Analysis of transcription factors among differentially expressed genes induced by drought stress in Populus davidiana[J]. Biotech,2017,7(3):209.
[68]李国龙,吴海霞,孙亚卿,等. 甜菜叶片应答干旱胁迫的差异蛋白质组学分析[J]. 作物杂志,2015(5):63-68.
[69]陆许可,张德超,阴祖军,等. 干旱胁迫下不同抗旱水平陆地棉的叶片蛋白质组学比较研究[J]. 西北植物学报,2013,33(12):2401-2409.
[70]Reddy K S,Sekhar K M,Reddy A R. Genotypic variation in tolerance to drought stress is highly coordinated with hydraulic conductivity-photosynthesis interplay and aquaporin expression in field-grown mulberry (Morus spp.)[J]. Tree Physiology,2017,37(7):926-937.
[71]Zupin M,Sedlar A,Kidria M,et al. Drought-induced expression of aquaporin genes in leaves of two common bean cultivars differing in tolerance to drought stress[J]. Journal of Plant Research,2017,130(4):735-745.
[72]康凌艳,芦清水,邵宏波,等. 干旱对滨州灌区冬小麦归一化植被指数(NDVI)的影响[J]. 江苏农业学报,2017,33(1):87-93.
[73]李欣欣,黄萍,庄义庆,等. 能源作物甜高粱抗逆性的研究进展[J]. 江苏农业学报,2016,32(6):1429-1433.
[74]周军,武金翠,杜宝明,等. 4种藤本植物的抗旱性比较[J]. 江苏农业学报,2016,32(3):674-679.

相似文献/References:

[1]张金然,缑艳霞,孙丽鹏.固氮螺菌157对玉米、向日葵的促生长作用[J].江苏农业科学,2014,42(12):116.
 Zhang Jinran,et al.Effects of Azospirillum 157 on growth of maize and sunflower[J].Jiangsu Agricultural Sciences,2014,42(17):116.
[2]李光,龚宁.干旱胁迫对金线兰POD活性及同工酶酶谱的影响[J].江苏农业科学,2014,42(11):208.
 Li Guang,et al(08).Effects of drought stress on activity and isoenzyme zymogram of POD in Anoectochilus roxburghii[J].Jiangsu Agricultural Sciences,2014,42(17):208.
[3]陈莹,钟理,赵丽丽,等.截叶铁扫帚种子萌发期对岩溶生境高钙干旱的生理生化反应[J].江苏农业科学,2014,42(09):335.
 Chen Ying,et al.Physiological and biochemical responses of Lespedeza cuneata seedlings to different calcium and drought stresses in karst habitats[J].Jiangsu Agricultural Sciences,2014,42(17):335.
[4]岳莉然,孙妙婷.紫叶酢浆草光合特性及耐旱性研究[J].江苏农业科学,2013,41(08):169.
 Yue Liran,et al.Study on photosynthetic characteristics and drought tolerance of Oxalis triangularis cv. purpurea[J].Jiangsu Agricultural Sciences,2013,41(17):169.
[5]李鹏,刘济明,颜强,等.干旱胁迫对小蓬竹繁殖和某些生理特性的影响[J].江苏农业科学,2014,42(08):181.
 Li Peng,et al.Effects of drought stress on reproduction and some physiological characteristics of Drepanostachyum luodianense[J].Jiangsu Agricultural Sciences,2014,42(17):181.
[6]程小毛,罗翠芹.不同土壤水分处理对香樟幼苗生理特性的影响[J].江苏农业科学,2013,41(09):171.
 Cheng Xiaomao,et al.Effects of different soil water treatments on physiological characteristics of Cinnamomum camphora seedlings[J].Jiangsu Agricultural Sciences,2013,41(17):171.
[7]李红,唐永金,曾峰.高浓度锶、铯胁迫对植物叶绿素荧光特性的影响[J].江苏农业科学,2013,41(09):349.
 Li Hong,et al.Effects of high concentrations of strontium and cesium on chlorophyll fluorescence characteristics of plants[J].Jiangsu Agricultural Sciences,2013,41(17):349.
[8]巩子路,田童童,朱新荣,等.植物铁蛋白钙复合物的制备[J].江苏农业科学,2013,41(11):292.
 Gong Zilu,et al.Preparation of plant ferritin-calcium complexes[J].Jiangsu Agricultural Sciences,2013,41(17):292.
[9]赵妍,王旭和,韩春刚,等.8种观赏植物净化污水中总氮、总磷效果及景观配置[J].江苏农业科学,2013,41(12):348.
 Zhao Yan,et al.Purification effect of eight kinds of ornamental plants on total nitrogen and total phosphorus in domestic sewage and their landscape design[J].Jiangsu Agricultural Sciences,2013,41(17):348.
[10]杨阳,刘秉儒,贾倩民,等.赤霉素对干旱胁迫下沙冬青种子萌发的影响[J].江苏农业科学,2014,42(05):271.
 Yang Yang,et al.Effect of gibberellin on seed germination of Ammopiptanthus mongolicus under drought stress[J].Jiangsu Agricultural Sciences,2014,42(17):271.
[11]余莉琳,裴宗平,常晓华,等.干旱胁迫及复水对4种矿区生态修复草本植物生理特性的影响[J].江苏农业科学,2013,41(07):362.
 Yu Lilin,et al.Effects of drought stress and rewatering on physiological characteristics of several herbaceous plants with ecological restoration function[J].Jiangsu Agricultural Sciences,2013,41(17):362.
[12]温琦,赵文博,张幽静,等.植物干旱胁迫响应的研究进展[J].江苏农业科学,2020,48(12):11.
 Wen Qi,et al.Research progress of plant response to drought stress[J].Jiangsu Agricultural Sciences,2020,48(17):11.

备注/Memo

备注/Memo:
收稿日期:2018-01-10
基金项目:福建省区域发展项目(编号:2015N3015);福建农林大学科技创新发展基金(编号:CXZX2017089)。
作者简介:赖金莉(1992—),女,江西赣州人,硕士研究生,主要从事植物(竹子)抗逆性研究。E-mail:kimly2017@163.com。
通信作者:郑郁善,教授,主要从事森林培育和园林植物研究。E-mail:zys1960@163.com。
更新日期/Last Update: 2018-09-05