用户名: 密码: 验证码:
甘蔗抗旱性及抗旱育种研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Research Progress on Drought Resistance and Drought-Resistant Breeding of Sugarcane
  • 作者:李海碧 ; 桂意云 ; 张荣华 ; 韦金菊 ; 杨荣仲 ; 张小秋 ; 李杨瑞 ; 周会 ; 刘昔辉
  • 英文作者:Li Haibi;Gui Yiyun;Zhang Ronghua;Wei Jinju;Yang Rongzhong;Zhang Xiaoqiu;Li Yangrui;Zhou Hui;Liu Xihui;Key Laboratory of Sugarcane Biotechnology and Genetic Improvement (Guangxi), Ministry of Agriculture, Guangxi Key laboratory of Sugarcane Genetic Improvement, Sugarcane Research Center of Chinese Academy of Agricultural Sciences, Sugarcane Research Institute of Guangxi Academy of Agricultural Sciences;College of Agriculture, Guangxi University;
  • 关键词:甘蔗 ; 干旱胁迫 ; 抗旱生理 ; 抗旱育种
  • 英文关键词:Sugarcane;;Drought stress;;Drought resistance physiology;;Drought resistance breeding
  • 中文刊名:FZZW
  • 英文刊名:Molecular Plant Breeding
  • 机构:广西农业科学院甘蔗研究所中国农业科学院甘蔗研究中心广西甘蔗遗传改良重点实验室农业部广西甘蔗生物技术与遗传改良重点实验室;广西大学农学院;
  • 出版日期:2018-08-28 15:51
  • 出版单位:分子植物育种
  • 年:2019
  • 期:v.17
  • 基金:国家糖料产业技术体系(CARS-170105);; 广西创新团队专项(gjnytxgxcxtd-03-01);; 广西创新驱动项目(桂科AA17202042-6);; 广西农科院基金项目(桂农科2018YT02; 2018YM01; 2017NZ01)共同资助
  • 语种:中文;
  • 页:FZZW201910041
  • 页数:10
  • CN:10
  • ISSN:46-1068/S
  • 分类号:302-311
摘要
甘蔗(Saccharum officinarum)是主要的糖料作物,具有重大的经济价值。世界各国在甘蔗种植面积相对稳定的情况下,通过遗传改良来选育和推广优良甘蔗新品种是保持甘蔗生产可持续发展的重要科技手段。甘蔗生产面临许多制约因素,干旱是影响甘蔗生产的主要非生物胁迫之一,对甘蔗的生长发育有重大影响,选育高产高糖抗旱新品种是甘蔗育种的主要目标之一。甘蔗抗旱性是由多种机理共同起作用的复杂过程,为了更好地了解甘蔗抗旱机制和抗旱育种进展,本研究主要从甘蔗的形态特征(叶片和根系的形态结构特征)、生理生化指标(质膜透性,渗透调节,抗氧化酶活性)、甘蔗抗旱相关基因、甘蔗抗旱相关蛋白以及抗旱种质资源鉴定评价等方面对甘蔗抗旱生理基础及其分子机制研究进展进行概述,以及对甘蔗传统抗旱育种和现代分子抗旱育种(转基因育种, DNA甲基化育种)进行概述,以期为中国甘蔗抗旱研究与抗旱遗传育种提供一些思路。
        Sugarcane is the major sugar crop with great economic value. Under the condition that the planting area of sugarcane is relatively stable all over the world, it is an important scientific and technological means to maintain the sustainable development of sugarcane production to breed and popularize new varieties of sugarcane through genetic improvement. Sugarcane production is facing many constraints. Drought is one of the main abiotic stresses affecting sugarcane production and has a significant impact on the growth and development of sugarcane.Breeding new sugarcane varieties with high yield, high sugar and drought resistance is one of the main objectives of sugarcane breeding. The drought resistance of sugarcane is a complex process in which multiple mechanisms work together. In order to better understand the mechanism of drought resistance and the progress of drought resistance breeding of sugarcane, the physiological basis and molecular mechanism of drought resistance of sugarcane were studied in the aspects of morphological characteristics(leaf and root morphological structure),physiological and biochemical indexes(plasma membrane permeability, osmotic regulation, antioxidant enzyme activity), sugarcane drought resistance related genes, sugarcane drought resistance related proteins and identification and evaluation of drought resistance germplasm resources in this paper. In addition, the traditional and modern molecular drought resistance breeding of sugarcane(genetically modified breeding, DNA methylation breeding) were summarized in order to provide some ideas for the research of drought resistance and drought resistance genetic breeding of sugarcane in China.
引文
Amudha J.,and Balasubramani G.,2011,Recent molecular advances to combat abiotic stress tolerance in crop plants,Biotechnol.Mol.Biol.Rev.,6(2):31-58
    Bhatnagar-Mathur P.,Vadez V.,and Sharma K.K.,2008,Transgenic approaches for abiotic stress tolerance in plants:retrospect and prospects,Plant Cell Rep.,27(3):411-424
    Bi L.M.,Liu W.L.,and Li Y.R.,2006,Advances and prospects in study on sugarcane drought resistance,Nanfang Nongye Xuebao(Journal of Southern Agriculture),37(5):522-527(毕黎明,刘伟丽,李杨瑞,2006,甘蔗抗旱性研究进展与展望,南方农业学报,37(5):522-527)
    Black K.G.,Huckett B.I.,and Botha F.C.,1995,Ability of pseudomonas fluorescens,engineered for insecticidal activity against sugarcane stalk borer,to colonise the surface of sugarcane plants,Proceedings of the Annual Congress South African Sugar Technologists Association,69:21-24
    Bower R.,and Birch R.G.,1992,Transgenic sugarcane plants via microprojectile bombardment,Plant J.,2(3):409-416
    Cai Q.,Wen J.C.,Fan Y.H.,Wang L.P.,and Ma L.,2002,Chromosome analysis of Saccharum L.and related plants,Xinan Nongye Xuebao(Southwest China Journal of Agricural Sciences),15(2):16-19(蔡青,文建成,范源洪,王丽萍,马丽,2002,甘蔗属及其近缘植物的染色体分析,西南农业学报,15(2):16-19)
    Chen Y.Q.,Deng Z.H.,Guo C.F.,Chen R.K.,and Zhang M.Q.,2007,Drought resistant evaluations of commonly used parents and their derived varieties,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),40(6):1108-1117(陈义强,邓祖湖,郭春芳,陈如凯,张木清,2007,甘蔗常用亲本及其衍生品种的抗旱性评价,中国农业科学,40(6):1108-1117)
    Do T.T.,Li J.,Zhang F.J.,Yang L.T.,Li Y.R.,and Xing Y.X.,2017,Analysis of differential proteome in relation to drought resistance in sugarcane,Zuowu Xuebao(Acta Agronomica Sinica),43(9):1337-1346(Do Thanh-Trung,李健,张风娟,杨丽涛,李杨瑞,邢永秀,2017,甘蔗与抗旱性相关差异蛋白质组分析,作物学报,43(9):1337-1346)
    Finnegan E.J.,Peacock W.J.,and Dennis E.S.,1996,Reduced DNA methylation in Arabidopsis thaliana results in abnormal plant development,Proc.Natl.Acad.Sci.USA,93(16):8449-8454
    Gao S.J.,Luo J.,Chen R.K.,Zhang M.Q.,and Pan D.R.,2002,Photosynthetic physiology indexes of the drought resistance of sugarcane and its comprehensive evaluation,Zuowu Xuebao(Acta Agronomica Sinica),28(1):94-98(高三基,罗俊,陈如凯,张木清,潘大仁,2002,甘蔗品种抗旱性光合生理指标及其综合评价,作物学报,28(1):94-98)
    Gui Y.Y.,Yang R.Z.,and Zhou H.,2009,Physiological response of sugarcane in different water stress and water recovery condition and drought-resistance identification,Guangdong Nongye Kexue(Guangdong Agricultural Sciences),(9):19-21(桂意云,杨荣仲,周会,2009,干旱及复水条件下甘蔗的生理响应与抗旱性简易鉴定,广东农业科学,(9):19-21)
    Guo Y.Y.,Luo H.B.,Cao H.Q.,He H.B.,Yang C.F.,Deng Z.N.,Wei Y.W.,and Li Y.R.,2012,Impact of natural soil drought stress on protective enzyme system in root system of sugarcane seedlings,Nanfang Nongye Xuebao(Journal of Southern Agriculture),43(9):1281-1286(郭元元,罗海斌,曹辉庆,何海波,杨翠芳,邓智年,魏源文,李杨瑞,2012,土壤自然干旱胁迫对甘蔗幼苗根系保护酶系统的影响,南方农业学报,43(9):1281-1286)
    He P.,Yin Y.L.,He L.L.,and Li F.S.,2016,Comprehensive analysis and evaluation of drought resistance indices in ratoon sugarcane,Yunnan Nongye Daxue Xubao(Journal of Yunnan Agricultural University),31(1):22-29(何平,尹以龙,何丽莲,李富生,2016,宿根甘蔗抗旱指标的综合分析及评价,云南农业大学学报,31(1):22-29)
    Huang C.M.,2007,Proline accumulation,cloning and transformation of△1-pyrroline-s-carboxylate synthetase gene in sugarcane(Saccharum officinarum L.),Dissertation for Ph.D.,Guangxi University,Supervisor:Yang L.T.,pp.54-71(黄诚梅,2007,甘蔗脯氨酸积累与△1-吡咯啉-5-羧酸合成酶(ScP5CS)基因克隆及转化研究,博士学位论文,广西大学,导师:杨丽涛,pp.54-71)
    Huang C.M.,Bi L.M.,Yang L.T.,and Li Y.R.,2007,Effects of polyethylene glycol stress on proline accumulation and the activities of the key enzymes in leaves of sugarcane(Saccharum officinarum L.)at the elongation stage,Zhiwu Shengli Xuebao(Plant Physiology Journal),43(1):77-80(黄诚梅,毕黎明,杨丽涛,李杨瑞,2007,聚乙二醇胁迫对甘蔗伸长期间叶中脯氨酸积累及其代谢关键酶活性的影响,植物生理学报,43(1):77-80)
    Jain M.,Chengalrayan K.,Abouzid A.,and Gallo M.,2007,Prospecting the utility of a PMI/mannose selection system for the recovery of transgenic sugarcane(Saccharum spp.hybrid)plants,Plant Cell Rep.,26(5):581-590
    Jiang H.T.,Huang M.Y.,Guo Q.,Yan Y.P.,and Zhang M.Q.,2016,Effects of varied plant growth regulators on drought resistance of sugarcane under water stress,Xinan Nongye Xuebao(Southwest China Journal of Agricultural Sciences),29(9):2114-2120(蒋洪涛,黄梅燕,郭强,叶燕萍,张木清,2016,水分胁迫下不同植物生长调节剂对甘蔗伸长初期抗旱性的影响,西南农业学报,29(9):2114-2120)
    Koehler P.H.,Moore P.H.,Jones C.A.,Cruz A.D.,and Maretzki A.,1982,Response of drip-irrigated sugarcane to drought stress1,Agronomy J.,74(5):906-911
    Labra M.,Ghiani A.,Citterio S.,Sgorbati S.,Sala F.,Vannini C.,Ruffini C.M.,and Bracale M.,2002,Analysis of cytosine methylation pattern in response to water deficit in pea root tips,Plant Biology,4(6):694-699
    Lakshmanan P.,Geijskes R.J.,Aitken K.S.,Grof C.L.P.,Bonnett G.D.,and Smith G.R.,2005,Sugarcane biotechnology:the challenges and opportunities,In Vitro Cell.Dev.Biol.Plant,41(4):345-363
    Li F.S.,and He L.L.,2001,Plant's response to non-biological stress and advances in the research of sugarcane resistance to drought and low temperature,Yaredai Nongye Yanjiu(Subtropical Agriculture Research),11(1):31-37(李富生,何丽莲,2004,植物对非生物胁迫的生理响应及甘蔗抗旱抗寒性研究进展,亚热带农业研究,11(1):31-37)
    Li J.,Du C.Z.,Wang L.R.,Xing Y.X.,Li Y.R.,and Yang L.T.,2017,Analysis of drought resistance function of sugarcane△1-pyrroline-5-carboxylate synthase gene(SoP5CS),Dissertation for Ph.D.,Guangxi University,Supervisor:Yang L.T.,pp.45-50(李健,杜成忠,王露蓉,邢永秀,李杨瑞,杨丽涛,2017,甘蔗△1-吡咯啉-5-羧酸合成酶基因(SoP5CS)的抗旱功能分析,博士学位论文,广西大学,导师:杨丽涛,pp.45-50)
    Lin Z.T.,Li T.,Wang C.Y.,Zhang X.D.,and Li F.S.,2014,Researches of drought-resistance related genes in sugarcane,Hubei Nongye Kexue(Hubei Agricultural Sciences),53(2):249-254(林展图,李涛,王彩云,张晓东,李富生,2014,甘蔗抗旱基因研究进展,湖北农业科学,53(2):249-254)
    Liu J.X.,Que Y.X.,Guo J.L.,Xu L.P.,Xu J.S.,and Chen R.K.,2010,Molecular cloning of sugarcane s-adenosylmethionine decarboxylase gene(Sc-SAMDC)and its expression analysis,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),43(7):1448-1457(刘金仙,阙友雄,郭晋隆,许莉萍,徐景升,陈如凯,2010,甘蔗S-腺苷蛋氨酸脱羧酶基因Sc-SA-MDC的克隆和表达分析,中国农业科学,43(7):1448-1457)
    Liu J.X.,Que Y.X.,Zheng Y.F.,Xu L.P.,and Chen R.K.,2009,Molecular cloning of sugarcane zinc finger protein gene and its expression analysis,Nongye Shengwu Jishu Xuebao(Journal of Agricultural Biotechnology),17(4):707-712(刘金仙,阙友雄,郑益凤,许莉萍,陈如凯,2009,甘蔗锌指蛋白基因的克隆和表达分析,农业生物技术学报,17(4):707-712)
    Luo H.B.,2012,Research on the drought resistance physiology and relative genes of sugarcane seedling root,Thesis for M.S.,Guangxi Normal University,Supervisor:Qin X.M.,pp.21-26(罗海斌,2012,甘蔗苗期根系抗旱生理及相关基因研,硕士学位论文,广西师范大学,导师:秦新民,pp.21-26)
    Luo J.,Lin Y.Q.,LüJ.L.,Chen R.K.,and Zhang M.Q.,2000,Effects of water stress on the photosynthesis of sugarcane leaves,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),33(4):100-102(罗俊,林彦铨,吕建林,陈如凯,张木清,2000,水分胁迫对甘蔗叶片光合性能的影响,中国农业科学,33(4):100-102)
    Miura K.,Agetsuma M.,Kitano H.,Yoshimura A.,Matsuoka M.,Jacobsen S.E.,and Ashikar M.,2009,A metastable DWARF1epigenetic mutant affecting plant stature in rice,Proc.Natl.Acad.Sci.USA,106(27):11218-11223
    Niu J.Q.,Wang A.Q.,Huang J.L.,Zhu H.,Li Y.R.,and Yang L.T.,2013,Cloning and expression analysis of a soluble acid invertase gene(SoSAI1)of sugarcane,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),46(24):5248-5260(牛俊奇,王爱勤,黄静丽,朱惠,李杨瑞,杨丽涛,2013,甘蔗可溶性酸性转化酶(SoSAI1)基因的克隆及表达分析,中国农业科学,46(24):5248-5260)
    Pan S.M.,Chen Y.Q.,Wu S.J.,and Zhang M.Q.,2006,Screening and evaluation of the drought-resistant germplasms in sugarcane,Jiangxi Nongye Daxue Xuebao(Acta Agriculturae U-niversitatis Jiangxiensis),28(6):838-844(潘世明,陈义强,吴水金,张木清,2006,甘蔗抗旱种质资源的筛选与评价,江西农业大学学报,28(6):838-844)
    Pan Y.J.,Fu B.Y.,Wang D.,Zhu L.H.,and Li Z.K.,2009,Spatial and temporal profiling of DNA methylation induced by drought stress in rice,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),42(9):3009-3018(潘雅姣,傅彬英,王迪,朱苓华,黎志康,2009,水稻干旱胁迫诱导DNA甲基化时空变化特征分析,中国农业科学,42(9):3009-3018)
    Qin X.,Zhu J.J.,Guan X.Y.,Yu T.H.,and Cao K.F.,2017,The correlations of leaf anatomical characteristics with photosynthetic capacity and drought tolerance in seven sugarcane cultivars,Zhiwu Shengli Xuebao(Plant Physiology Journal),(4):705-712(秦茜,朱俊杰,关心怡,于天卉,曹坤芳,2017,七个甘蔗品种叶片解剖结构特征与光合能力和耐旱性的关联,植物生理学报,(4):705-712)
    Riddle N.C.,and Richards E.J.,2002,The control of natural variation in cytosine methylation in Arabidopsis,Genetics,162(1):355-363
    Scandalios J.G.,1993,Oxygen stress and superoxide dismutases,Plant Physiol.,101(1):7-12
    Shi X.K.,2010,Assessment of the drought resistance and genetic stability in sugarcane mediated with DREB gene,Thesis for M.S.,Fujian Agriculture and Forest University,Supervisor:Zhang M.Q.,pp.18-33(施肖堃,2010,转DREB基因甘蔗的抗旱性评价及其遗传稳定性分析,硕士学位论文,福建农林大学,导师:张木清,pp.18-33)
    Su R.B.,Wang S.Q.,and Ma Q.,2012,The new progress of breeding for drought resistance varieties of crop,Gansu Nongye Keji(Gansu Agricultural Science and Technology),(5):33-37(苏瑞波,王四清,马庆,2012,农作物抗旱育种新进展,甘肃农业科技,(5):33-37)
    Sugiharto B.,Ermawati N.,Mori H.,Aoki K.,Yonekura-sakakibara K.,Yamaya T.,Sugiyama T.,and Sakakibara H.,2002,Identification and characterization of a gene encoding drought-inducible protein localizing in the bundle sheath cell of sugarcane,Plant Cell Physiol.,43(3):350-354
    Tan Q.L.,Li C.N.,Yang L.T.,and Li Y.R.,2013,Cloning and expression analysis of abscisic acid signal transduction key enzyme gene SoSnRK2.1 from sugarcane,Zuowu Xuebao(Acta Agronomica Sinica),39(12):2162-2170(谭秦亮,李长宁,杨丽涛,李杨瑞,2013,甘蔗ABA信号转导关键酶SoSnRK2.1基因的克隆与表达分析,作物学报,39(12):2162-2170)
    Tan X.H.,2011,54 Guangxi regional trial sugarcane varieties of the drought and drought resistance gene analysis of the separation,Dissertation for Ph.D.,Guangxi University,Supervisor:Wang A.Q.,pp.5(檀小辉,2011,54个广西区试甘蔗品种的抗旱性评价及甘蔗抗旱基因的分离,博士学位论文,广西大学,导师:王爱勤,pp.5)
    Tan Y.M.,1988,A study on membrane fatty acids and perweability in sugarcane leaves related to drought resistance,Fujian Nonglin Daxue Xuebao(Journal of Fujian Agricultural College(Natural Science Edition)),17(3):29-33(谭裕模,1988,甘蔗叶片脂肪酸及透性与抗旱性的关系,福建农林大学学报(自然科学版),17(3):29-33)
    Tao L.A.,Yang L.H.,Jing Y.F.,Duan H.F.,Dong L.H.,An R.D.,Zhou Q.M.,and Zhu J.R.,2011,Comprehensive evaluation of drought resistance for descendant F2of Saccharum spotaneum in Yunnan by subjection function,Xinan Nongye Xuebao(Southwest China Journal of Agricultural Sciences),24(5):1676-1680(桃联安,杨李和,经艳芬,段慧芬,董立华,安汝东,周清明,朱建荣,2011,云南割手密血缘F2代抗旱性隶属函数法综合评价,西南农业学报,24(5):1676-1680)
    Vázquez R.I.,Prieto D.,Riva G.A.D.L.,and Selman-Housein G.,1996,Development of an immunoradiometric assay for quantitative determination of cryla(b)protein in transgenic sugarcane plants,J.Immunol.Methods.,196(1):33-39
    Venkataramana S.,Rao P.N.G.,and Naidu K.M.,1986,The effects of water stress during the formative phase on stomatal resistance and leaf water potential and its relationship with yield in ten sugarcane varieties,Field Crops Res.,13(4):345-353
    Wang H.,Feng Q.,Zhang M.,Yang C.,Sha W.,and Liu B.,2010,Alteration of DNA methylation level and pattern in sorghum(Sorghum bicolor L.)pure-lines and inter-line F1hybrids following low-dose laser irradiation,J.Photochem.Photobiol.B.,99(3):150-153
    Wang S.,Zhang B.Q.,Huang X.,Fan Y.J.,Yang L.T.,and Li Y.R.,2013,Molecular cloning of sugarcane Cu/Zn superoxide dismutase(Cu/Zn-SOD)and its expression analysis,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),46(15):3277-3284(王盛,张保青,黄杏,樊艳姣,杨丽涛,李杨瑞,2013,甘蔗Cu/Zn-SOD的克隆和表达分析,中国农业科学,46(15):3277-3284)
    Wang W.S.,Pan Y.J.,Zhao X.Q.,Dwivedi D.,Zhu L.H.,Ali J.,Fu B.Y.,and Li Z.K.,2011,Drought-induced site-specific DNA methylation and its association with drought tolerance in rice(Oryza sativa L.),J.Exp.Bot.,62(6):1951-1960
    Wang Z.X.,and Zhang S.Z.,2014,Research progress of drought resistance and drought-resistant improvement in crop,Zuowu Zazhi(Crops),(2):26-31(王尊欣,张树珍,2014,作物抗旱性及抗旱育种研究进展,作物杂志,(2):26-31)
    Wei L.J.,2014,Study on morphological structure and physiological mechanism in sugarcane under drought stress,Dissertation for Ph.D.,Hunan Agricultural University,Supervisor:Chen J.X.,pp.41-47(韦丽君,2014,甘蔗干旱胁迫的形态结构及生理机制研究,博士学位论文,湖南农业大学,导师:陈金湘,pp.41-47)
    Wu C.W.,Fan Y.H.,Chen X.K.,Liu J.Y.,Zhao J.,Zhao P.F.,Xia H.M.,and Yang K.,2012,Breeding of drought-resistant sugarcane varieties in Yunnan,Zhongguo Tangliao(Sugar Crops of China),(4):37-39(吴才文,范源洪,陈学宽,刘家勇,赵俊,赵培方,夏红明,杨昆,2012,云南抗旱甘蔗品种的选育及效果,中国糖料,(4):37-39)
    Wu K.C.,2013,Cloning and expression of specific gene induced under drought and re-watering in sugarcane(Saccharum spp.L.),Dissertation for Ph.D.,Guangxi University,Supervisor:Yang L.T.,pp.24-32(吴凯朝,2013,干旱和复水条件下甘蔗特异基因诱导表达及其克隆的研究,博士学位论文,广西大学,导师:杨丽涛,pp.24-32)
    Xing S.L.,Yao Y.L.,Xu L.,Hu X.W.,and Liu Y.,2014,Advances of drought-resistant genes and drought-resistant transgenic of main crops of Gramineae plants,Zhongguo Nongxue Tongbao(Chinese Agricultural Science Bulletin),30(18):251-258(邢淑莲,姚艳丽,徐磊,胡小文,刘洋,2014,禾本科主要作物抗旱相关基因及转基因研究进展,中国农学通报,30(18):251-258)
    Xu Y.S.,and Mo J.R.,1988,Physiological responses of callus of sugarcane cultivars and their to hypertonic culture solution drought-resistance,Jiyinzuxue Yu Yingyong Shengwuxue(Genomics and Applied Biology),7(2):14-20(徐永胜,莫家让,1988,甘蔗愈伤织组对高渗溶液的生理反应及其抗旱性,基因组学与应用生物学,7(2):14-20)
    Yao W.,Yu A.L.,Xu J.S.,Geng G.L.,Zhang M.Q.,and Chen R.K.,2004,Analysis and identification for transgenic sugarcane of ScMV-CP gene,Fenzi Zhiwu Yuzhong(Molecular Plant Breeding),2(1):13-18(姚伟,余爱丽,徐景升,耿广良,张木清,陈如凯,2004,转ScMV-CP基因甘蔗的分子生物学分析与鉴定,分子植物育种,2(1):13-18)
    Yao Y.L.,Xing S.L.,Xu L.,Hu X.W.,and Liu Y.,2013,The effect of water stress on activity of antioxidant system in Saccharum L.,S.spontaneum and E.arundinaceus(Retz.)Jeswiet,Ganzhe Tangye(Sugarcane and Canesugar),(6):1-4(姚艳丽,邢淑莲,徐磊,胡小文,刘洋,2013,水分胁迫对甘蔗,割手密和斑茅抗氧化酶活性的影响,甘蔗糖业,(6):1-4)
    Yi Z.B.,Sun Y.,Niu T.T.,Liang X.H.,Liu L.L.,Zhao W.J.,and Li B.L.,2005,Patterns of DNA cytosine methylation between hybrids and their parents in Sorghum genome,Zuowu Xuebao(Acta Agronomica Sinica),31(9):1138-1143(仪治本,孙毅,牛天堂,梁小红,刘龙龙,赵威军,李炳林,2005,高粱基因组DNA胞嘧啶甲基化在杂交种和亲本间差异研究,作物学报,31(9):1138-1143)
    Zhang F.J.,Li J.,Du C.Z.,Yang L.T.,Li Y.R.,and Xing Y.X.,2014,Stomatal response to water stress in leaves of different sugarcane cultivars,Guangxi Zhiwu(Guihaia),34(6):821-827(张风娟,李健,杜成忠,杨丽涛,李杨瑞,邢永秀,2014,不同甘蔗品种叶片气孔对水分胁迫的响应,广西植物,34(6):821-827)
    Zhang H.Y.,and Zhu Z.H.,2004,Research progress in drought-induced proteins in plants,Zhiwu Yichuan Ziyuan Xuebao(Journal of Plant Genetic Resource),5(3):268-270(张宏一,朱志华,2004,植物干旱诱导蛋白研究进展,植物遗传资源学报,5(3):268-270)
    Zhang J.S.,Guo C.F.,Wang B.M.,Zhang M.Q.,Chen Y.Q.,and Chen R.K.,2009,Cloning and expression analysis of a water stress-induced ALDH gene from sugarcane,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),42(8):2676-2685(张积森,郭春芳,王冰梅,张木清,陈由强,陈如凯,2009,甘蔗水分胁迫响应相关醛脱氢酶基因的克隆及其表达特征分析,中国农业科学,42(8):2676-2685)
    Zhang M.Q.,Chen R.K.,and Yu S.L.,1996,Mathematica analysis for the active oxygen metabolism in the drought-stressed leaves of sugreane,Zuowu Xuebao(Acta Agronomica Sinica),22(6):729-735(张木清,陈如凯,余松烈,1996,水分胁迫下蔗叶活性氧代谢的数学分析,作物学报,22(6):729-735)
    Zhang M.Q.,Chen R.K.,Gao S.J.,LüJ.L.,Fang H.,and Xu L.N.,1997,Morphophysiological responses of sugarcane genotypes to water stresses,Zhongguo Nongye Kexue(Scientia Agricultura Sinica),30(6):72-77(张木清,陈如凯,高三基,吕建林,方辉,徐良年,1997,甘蔗基因型对水分胁迫的形态生理响应,中国农业科学,30(6):72-77)
    Zhang S.Z.,Zheng X.Q.,Lin J.F.,Guo L.Q.,and Zan L.M.,2000,Cloning of trehalose synthase gene and ttransformation into sugarcane,Nongye Shengwu Jishu Xuebao(Journal of Agricultural Biotechnology),8(4):385-388(张树珍,郑学勤,林俊芳,郭丽琼,昝丽梅,2000,海藻糖合酶基因的克隆及转化甘蔗的研究,农业生物技术学报,8(4):385-388)
    Zhao Y.L.,Ye W.W.,Wang J.J.,Fan B.X.,and Song L.Y.,2009,Review of DNA methylation and plant stress-tolerance,Xibei Zhiwu Xuebao(Acta Botanica Boreali-Occidentalia Sinica),29(7):1479-1489(赵云雷,叶武威,王俊娟,樊保香,宋丽艳,2009,DNA甲基化与植物抗逆性研究进展,西北植物学报,29(7):1479-1489)
    Zhong X.Q.,and Ye Z.B.,1992,Ultrastructural changes of sugarcne leaves under water stress,Huanan Nongye Daxue Xuebao(Journal of South China Agricultural University),13(3):64-68(钟希琼,叶振邦,1992,甘蔗受旱后叶片超微结构的变化,华南农业大学学报,13(3):64-68)
    Zhou F.,Liu Z.,Zhang W.,Hu H.X.,Qiu Y.S.,Wang Q.N.,and Liu S.M.,2018,Preliminary study on drought-resistance capacity about sugarcane variety Haizhe 22 and its parents,Ganzhe Tangye(Sugarcane and Canesugar),(1):7-11(周峰,刘壮,张伟,胡后祥,邱永生,王勤南,刘少谋,2018,海蔗22号及其亲本抗旱性初探,甘蔗糖业,(1):7-11)

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700