高级检索+

中国主要农区稻田稗草分类与多样性研究

陆永良, 刘德好, 余柳青, 刘都才, 郭水良

陆永良, 刘德好, 余柳青, 刘都才, 郭水良. 中国主要农区稻田稗草分类与多样性研究[J]. 植物科学学报, 2014, 32(5): 435-445. DOI: 10.11913/PSJ.2095-0837.2014.50435
引用本文: 陆永良, 刘德好, 余柳青, 刘都才, 郭水良. 中国主要农区稻田稗草分类与多样性研究[J]. 植物科学学报, 2014, 32(5): 435-445. DOI: 10.11913/PSJ.2095-0837.2014.50435
LU Yong-Liang, LIU De-Hao, YU Liu-Qing, LIU Du-Cai, GUO Shui-Liang. Classification and Diversity of Echinochloa in Paddy Fields of Main Agricultural Regions in China[J]. Plant Science Journal, 2014, 32(5): 435-445. DOI: 10.11913/PSJ.2095-0837.2014.50435
Citation: LU Yong-Liang, LIU De-Hao, YU Liu-Qing, LIU Du-Cai, GUO Shui-Liang. Classification and Diversity of Echinochloa in Paddy Fields of Main Agricultural Regions in China[J]. Plant Science Journal, 2014, 32(5): 435-445. DOI: 10.11913/PSJ.2095-0837.2014.50435
陆永良, 刘德好, 余柳青, 刘都才, 郭水良. 中国主要农区稻田稗草分类与多样性研究[J]. 植物科学学报, 2014, 32(5): 435-445. CSTR: 32231.14.PSJ.2095-0837.2014.50435
引用本文: 陆永良, 刘德好, 余柳青, 刘都才, 郭水良. 中国主要农区稻田稗草分类与多样性研究[J]. 植物科学学报, 2014, 32(5): 435-445. CSTR: 32231.14.PSJ.2095-0837.2014.50435
LU Yong-Liang, LIU De-Hao, YU Liu-Qing, LIU Du-Cai, GUO Shui-Liang. Classification and Diversity of Echinochloa in Paddy Fields of Main Agricultural Regions in China[J]. Plant Science Journal, 2014, 32(5): 435-445. CSTR: 32231.14.PSJ.2095-0837.2014.50435
Citation: LU Yong-Liang, LIU De-Hao, YU Liu-Qing, LIU Du-Cai, GUO Shui-Liang. Classification and Diversity of Echinochloa in Paddy Fields of Main Agricultural Regions in China[J]. Plant Science Journal, 2014, 32(5): 435-445. CSTR: 32231.14.PSJ.2095-0837.2014.50435

中国主要农区稻田稗草分类与多样性研究

基金项目: 

国家水稻产业体系项目(nycytx-01)。

详细信息
    作者简介:

    陆永良(1964-),男,副研究员,研究方向为杂草科学(E-mail:704169817@qq.com)。

    通讯作者:

    陆永良(1964-),男,副研究员,研究方向为杂草科学(E-mail:704169817@qq.com)。

  • 中图分类号: Q949.71+4.2

Classification and Diversity of Echinochloa in Paddy Fields of Main Agricultural Regions in China

  • 摘要: 将采自中国15个省和1个直辖市的206份稗属(Echinochloa)植物种子分别播种在相同栽培条件下,获得了206份子代样本及其21项形态性状数据,基于这些形态性状对206份稗属植物样本进行了聚类和主成分分析。结果表明:(1)从206份稗属植物样本中鉴别出了形态性状相对一致的8个分类群(G1~G8),依次对应于湖南稗子(Echinochloa frumentaceae,2份样本)、水田稗(E. oryzoides,5份)、细叶旱稗(E. crus-galli var. praticola,6份)、硬稃稗(E. glabrescens,14份)、光头稗(E. colona,2份)、长芒稗(E. caudata,16份)、孔雀稗(E. cruspavonis,8份)、稗复合群(稗原变种E. crus-galli var. crus-galli、稗的变种无芒稗var. mitis、短芒稗var. breviseta和西来稗var. zelayensis,共150份),还有3份样本没有聚合成组。它们依次占总样本量的0.97%、0.97%、2.42%、2.91%、3.88%、7.77%、6.80%、72.81%和1.46%,反映出中国主要农区稻田稗属植物主要以稗及其变种为主;(2)单因素方差分析表明,9个数量性状,包括叶长、叶宽、圆锥花序长度、总状花序长度、小穗芒长、小穗长度、第1颖长度/小穗长度、主茎直径和株高,在稗属植物的8个分类群(G1~G8)之间有显著差异;(3)根据8个分类群之间的形态性状特点及差异,给出了鉴别中国主要农区稻田稗属植物的分种检索表;(4)由于细叶旱稗具有总状花序简单、小穗无芒、叶较宽、植株高大、小穗紫黑色等独特形态性状,在206份稗属植物样本的聚类图上单独聚成一组,故建议将细叶旱稗作为独立种处理。
    Abstract: The seeds of 206 Echinochloa samples from paddy regions of 15 provinces and one municipality of China were sown in the same cultivation environment and their offspring were obtained. We measured 21 morphological traits of the 206 Echinochloa offspring samples. Based on these 21 traits, cluster analysis and principal component analysis (PCA) were conducted. Results showed that:(1) Eights groups were identified from these 206 samples, corresponding to E. frumentaceae (2 samples), E. oryzoides (5 samples), E. crus-galli var. praticola (6 samples), E. glabrescens (14 samples), E. colona (2 samples), E. caudate (16 samples), E. cruspavonis (8 samples), E. crus-galli complex (150 samples including E. crus-galli var. crus-galli, var. mitis, var. breviseta and var. zelayensis) and three other samples, accounting for 0.97%, 0.97%, 2.42%, 2.91%, 3.88%, 7.77%, 6.80%, 72.81% and 1.46%, respectively. Echinochloa crus-galli and its varieties were the main taxa of the genus in the main paddy regions of China;(2) Analysis of variance showed that the main quantitative traits for identifying the eight groups of Echinochloa included leaf length, leaf width, panicle length, raceme length, awn length of spikelet, spikelet length, length of first glume/spikelet length, diameter of main stem, and individual height;(3) A key to the eight groups was given based on their morphological differences;(4) Taxonomically, E. crus-galli var. praticola was suggested as an independent species from the E. crus-galli complex due to its simple racemes, awnless spikelets, wider leaves, higher individuals, and purple spikelets.
  • [1] 唐恩全, 汪矛.稗草的特性及防除[J].植物杂志, 1994(2):18-19.
    [2] 全国农田考察组.中国农田杂草区划[J].杂草学报, 1989, 3(2):1-5.
    [3]

    Gupta A, Mahajan V, Kumar M, Gupta HS.Biodiversity in the barnyard millet (Echinochloa frumentacea Link, Poaceae) germplasm in India[J].Genet Resour Crop Evol, 2009, 56(6):883-889.

    [4]

    Emine KA, Husrev M.Genetic and morphologic diversity of Echinochloa crus-galli populations from different origins[J].Phytoparasitica, 2011, 39(1):93-102.

    [5] 叶承道.稗属种类、分布及其防除[J].上海农业科技, 1984 (5):16-19.
    [6]

    Yamaguchi H, Yasuda UK, Yano A, Soejima A.A molecular phylogeny of wild and cultivated Echinochloa in East Asia inferred from non-coding region sequences of trnT-L-F[J].Weed Biol Manag, 2005, 5(4):210-218.

    [7]

    Ruiz-Santaella JP, Bastida F, Franco AR, De Prado R.Morphological and molecular characterization of different Echinochloa spp.and Oryza sativa populations[J].J Agric Food Chem, 2006, 54 (4):1166-1172.

    [8] 戴水连.中国稗属Echinochloa分类系统的初步研究[J].中山大学学报, 1986(3):76-80.
    [9]

    Nakayama Y, Umemoto S, Yamaguchi H.Identification of polyploid groups in the genus Echinochloa by isozyme analysis[J].J Weed Sci Tech, 1999, 44(3):205-217.

    [10]

    Yasuda K, Yano A, Nakayama Y, Yamaguchi H.Molecular identification of Echinochloa oryzicola Vasing.and E.crus-galli (L.) Beauv using a polymerase chain reaction-restriction fragment length polymorphism technique[J].Weed Biol Manag, 2002, 2(1):11-17.

    [11] 冯久焕, 张廷璧.国产稗属植物的细胞学研究[J].武汉植物学研究, 1993, 11(4):293-302.
    [12]

    Yabuno T.Morphological and cytological studies in the genus Echinochloa[J].Seiken Ziho, 1953(6):66-71.

    [13]

    Yabuno T.Cytotaxonomic studies on the two cultivated species and the wild relatives in the genus Echinochloa[J].Cytologia, 1962, 27(3):296-305.

    [14]

    Yabuno T.Biosystematic study of the genus Echinochloa[J].Jap J Bot, 1966, 19 (2):277-323.

    [15]

    Aoki D, Yamaguchi H.Genetic relationship between Echinochloa crus-galli and Echinochloa oryzicola accessions inferred from internal transcribed spacer and chloroplast DNA sequences[J].Weed Biol Manag, 2008, 8(4):233-242.

    [16]

    Yabuno T.Biosystematics of Echinochloa stagnina (Retz.)P.Beauv., cytological relationship between the 12-and 14-ploid strains[J].Genetica, 1970, 122(4):311-315.

    [17]

    Hilu KW.Evidence from RAPD markers in the evolution of Echinochloa millets (Poaceae)[J].Pl Sys Evol, 1994, 189(3):247-257.

    [18]

    Roy S, Simon JP, Lapointe FJ.Determination of the origin of the cold-adapted populations of barnyard grass (Echinochloa crus-galli) in eastern North America:a total-evidence approach using RAPD DNA and DNA sequences[J].Can J Bot, 2000, 78(12):1505-1513.

    [19]

    Wu ZY, Raven P, Hong DY, eds.Flora of China:Vol.22[M].Beijing:Science Press, St.Louis:Missouri Botanical Garden, 2006.

    [20] 钟扬,陈家宽,黄德世.数量分类的方法与程序[M].武汉:武汉大学出版社, 1990.
    [21] 张金屯.植被数量生态学方法[M].北京:中国科学技术出版社, 1995.
  • 期刊类型引用(3)

    1. 王凯,陶兴梅,李小琴,谯祖勤,刘朝,张永福. 三叶木通叶片解剖结构和生理特征对酸雨胁迫的响应和钛的缓解效应. 热带亚热带植物学报. 2025(01): 15-24 . 百度学术
    2. 刘伶利,李学松,刘争,乐洪志,杨怀,琚煜熙,方若龙,张涛. 模拟酸雨对青钱柳幼苗的生理作用. 信阳师范学院学报(自然科学版). 2021(03): 452-456 . 百度学术
    3. 荣立苹,张佳奇,赵东辉,陈家硕,刘继生,周燕,高玉福. 模拟酸雨对元宝枫幼苗生理及叶绿素荧光参数的影响. 经济林研究. 2019(03): 44-51 . 百度学术

    其他类型引用(0)

计量
  • 文章访问数:  1552
  • HTML全文浏览量:  2
  • PDF下载量:  1665
  • 被引次数: 3
出版历程
  • 收稿日期:  2014-02-25
  • 修回日期:  2014-04-13
  • 网络出版日期:  2022-11-01
  • 发布日期:  2014-10-29

目录

    /

    返回文章
    返回