|本期目录/Table of Contents|

[1]胡露洁,杨再辉,周存宇,等.濒危水生植物莼菜茎叶的解剖与组织化学特征[J].江苏农业科学,2018,46(08):131-135.
 Hu Lujie,et al.Anatomical and histochemical characteristics of stems and leaves of endangered aquatic plant Brasenia schreberi[J].Jiangsu Agricultural Sciences,2018,46(08):131-135.
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《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第46卷
期数:
2018年08期
页码:
131-135
栏目:
园艺与林学
出版日期:
2018-04-20

文章信息/Info

Title:
Anatomical and histochemical characteristics of stems and leaves of endangered aquatic plant Brasenia schreberi
作者:
胡露洁1 杨再辉2 周存宇1 杨朝东1 张霞1
1.长江大学湿地生态与农业利用教育部工程研究中心,湖北荆州 434025; 2.湖北省利川市农业局,湖北利川 445400
Author(s):
Hu Lujieet al
关键词:
莼菜解剖结构屏障结构组织化学初生结构
Keywords:
-
分类号:
Q944.5
DOI:
-
文献标志码:
A
摘要:
通过组织化学染色,利用普通光学显微镜和荧光显微镜研究莼菜茎叶的解剖结构和屏障结构。结果表明:莼菜主茎、根茎、直立茎、花柄和叶为初生结构;主茎具有网状中柱,根茎、直立茎和花柄具有2个初生维管束,叶柄仅1个初生维管束,此外都具有扩大型通气组织、皮层、离层、表皮及黏液。屏障结构特征如下:表皮外有不连续角质层和黏液,有木质化皮层;离层和不定根基部及其周围皮层细胞壁具凯氏带、栓质层和木质层;维管束鞘细胞壁具有木质化凯氏带。研究结果为其他珍稀濒危植物的保护提供了新思路。
Abstract:
-

参考文献/References:

[1]APG Ⅲ. An update of the angiosperm phylogeny group classification for the orders and families of flowering plants:APG Ⅲ[J]. Botanical Journal of the Linnean Society,2009,161(2):105-121.
[2]Fu D,John H W. Flora of China[M]. St Louis:Missouri Botanical Garden Press,and Beijing:Science Press,2001,6:119-120.
[3]Legault J,Perron T,Mshvildadze V,et al. Antioxidant and anti-inammatory activities of quercetin 7-O-β-D- glucopyranoside from the leaves of Brasenia schreberi[J]. Journal of Medicinal Food,2011,14(10),1127-1134.
[4]Williamson P S,Schneider E L. Flowering plants:dicotyledons,Cabombaceae[M]//The families and genera of vascular plants. Berlin,Germany:Springer-Verlag,1993:157-161.
[5]董元火,雷刚,刘红艳. 利川绝迹莼菜种群原因分析[J]. 安徽农业科学,2010,38(11):6047-6048.
[6]张霞,姚兰,艾训儒,等. 湖北利川莼菜营养生长繁殖的形态特征调查[J]. 长江蔬菜,2014(12):43-46.
[7]丁春邦,周永红,王昌全. 莼菜的解剖学研究(简报)[J]. 四川农业大学学报,1997,15(2):289-292.
[8]徐国华,陈维培,魏锦城,等. 莼菜冬芽越冬阶段叶的解剖学和生理学研究[J]. 武汉植物学研究,1999,17(2):97-100.
[9]余昌均. 福宝山莼莱营养器官解剖研究[J]. 湖北大学学报,1996,18(2):181-184.
[10]张四美,陈维培. 莼菜(Brasenia schreberi Gmel.)冬芽的形态结构及其发育[J]. 武汉植物学研究,1988,6(1):25-30.
[11]吕家龙,祝全明,李敏. 莼菜腺细胞的观察及其泌胶机理的探讨[J]. 浙江农业大学学报,1995,21(3):314-318.
[12]施国新,徐祥生,王文,等. 莼菜腺毛的发育及其超微结构研究[J]. 西北植物学报,1991,11(1):29-35.
[13]王文. 莼菜(Brasenia schreberi)表皮腺毛细胞高尔基体中一种内含物的初步研究(简报)[J]. 实验生物学报,1989,22(1):129-133.
[14]周根余,陆时万. 纯菜黏液毛的初步观察[J]. 上海师范大学学报,1985(4):50-56.
[15]Schneider E L,Carlquist S. Vessels in Brasenia(Cabombaceae):new perspectives on vessel origin in primary xylem of angiosperms[J]. American Journal of Botany,1996,83(9):1236-1240.
[16]Seago J L. The root cortex of the Nymphaeaceae,Cabombaceae and Nelumbonaceae[J]. Journal of Torrey Botanical Society,2002,129(1):1-9.
[17]Armstrong J,Jones R E,Armstrong W. Rhizome phyllosphere oxygenation in Phragmites and other species in relation to redox potential,convective gas flow,submergence and aeration pathways[J]. New Phytologist,2006,172(4):719-731.
[18]Colmer T D,Gibberd M R,Wiengweera A,et al. The barrier to radial oxygen loss from roots of rice (Oryza sativa L.) is induced by growth in stagnant solution[J]. Journal of Experimental Botany,1998,49(325):1431-1436.
[19]Enstone D E,Peterson C A,Ma F. Root endodermis and exodermis:structure,function,and responses to the environment[J]. Journal of Plant Growth Regulation,2003,21(4):335-351.
[20]Greenway H,Armstrong W,Colmer T D. Conditions leading to high CO2(> 5 kPa) in waterlogged-flooded soils and possible effects on root growth and metabolism[J]. Annals of Botany,2006,98(1):9-32.
[21]Seago J L,Marsh L C,Stevens K J,et al. A re-examination of the root cortex in wetland flowering plants with respect to aerenchyma[J]. Annals of Botany,2005,96(4):565-579.
[22]杨朝东,张霞,刘国锋,等. 植物根中质外体屏障结构和生理功能研究进展[J]. 植物研究,2013,33(1):114-119.
[23]杨朝东,李守峰,邓仕明,等. 白茅解剖结构和屏障结构特征研究[J]. 草业学报,2015,24(3):213-218.
[24]杨朝东,李守峰,姚兰,等. 天胡荽的解剖和屏障结构特征研究[J]. 草业学报,2015,24(7):139-145.
[25]杨朝东,张霞. 双穗雀稗(Paspalum distichum)通透性生理和茎解剖结构补充研究[J]. 植物研究,2013,33(5):564-568.
[26]张霞,杨朝东,宁国贵. 狗牙根和双穗雀稗根中质外体屏障结构发育过程的比较研究[J]. 湖北农业科学,2013,52(20):4991-4994.
[27]Yang C D,Zhang X,Li J K,et al. Anatomy and histochemistry of roots and shoots in wild rice (Zizania latifolia Griseb.)[J]. Journal of Botany,2014,2014(1):1-9.
[28]Yang C D,Zhang X,Zhou C Y,et al. Root and stem anatomy and histochemistry of four grasses from the Jianghan Floodplain along the Yangtze River,China[J]. Flora,2011,206(7):653-661.
[29]Brundrett M C,Enstone D E,Peterson C A. A berberine-aniline blue fluorescent staining procedure for suberin,lignin and callose in plant tissue[J]. Protoplasma,1988,146(2/3):133-142.
[30]Seago J L,Peterson C A,Enstone D E,et al. Development of the endodermis and hypodermis of Typha glauca Godr. and Typha yphaangustifolia L. roots[J]. Canadian Journal of Botany,1999,77(1):122-134.
[31]Brundrett M C,Kendrick B,Peterson C A. Efficient lipid staining in plant material with Sudan red 7B or Fluorol yellow 088 in polyethylene glycol-glycerol[J]. Biotechnic and Histochemistry,1991,66(3):111-116.
[32]Jensen W A. Botanical histochemistry-principles and practice[M]. San Francisco,CA:W H Freeman and Company,1962.
[33]Soukup A,Armstrong W,Schreiber L,et al. Apoplastic barriers to radial oxygen loss and solute penetration:a chemical and functional comparison of the exodermis of two wetland species,Phragmites australis and Glyceria maxima[J]. New Phytologist,2007,173(2):264-278.
[34]McManus H A,Seago J L,Marsh L C. Epifluorescent and histochemical aspects of shoot anatomy of Typha latifolia L.,Typha angustifolia L. and Typha glauca Godr.[J]. Annals of Botany, 2002,90(4):489-493.
[35]Vecchia F D,Cuccato F,Rocca N L,et al. Endodermis-like sheaths in the submerged freshwater macrophyte Ranunculus trichophyllus Chaix[J]. Annals of Botany,1999,83(1):93-97.

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备注/Memo

备注/Memo:
收稿日期:2016-11-19
基金项目:长江大学湿地生态与农业利用教育部工程研究中心开放基金(编号:KF-201603);湖北省园艺产业农技推广服务试点项目(编号:yyht-03-03)。
作者简介:胡露洁(1990—),女,湖北黄石人,硕士研究生,研究方向为园艺植物。E-mail:Hulj2015@163.com。
通信作者:张霞,硕士,讲师,研究方向为植物生理生态。E-mail:zhang.yang07@aliyun.com。
更新日期/Last Update: 2018-04-20