Scientia Agricultura Sinica ›› 2007, Vol. 40 ›› Issue (1): 27-33 .doi: 10.3864/j.issn.0578-1752.at-2005-6240

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES • Previous Articles     Next Articles

Cytological Study of Eulaliopsis binata on The Karyotype Analysis and The PCMs Meiosis

,   

  1. 华中农业大学生命科学技术学院
  • Received:2005-10-23 Revised:1900-01-01 Online:2007-01-10 Published:2007-01-10

Abstract: Abstract: Objective In order to certain the ploidy in Eulaliopsis binata, chromosome squash method that dealt with two different conditions: enzyme and acid, had been launched to identify the number and Karyotype of chromosome. Method Using the chromosome squash method, the chromosomes in Eulaliopsis binata were distinguished under light microscope. Then those pictures were measured by Simple PCI Image Analysis software and LUCIA Cytogenetics Chromosome Image Analysis to determine the Karyotype. Results These results demonstrate the chromosomes in Eulaliopsis binata is 40, and its Karyotype could be formulated as 2n=40=18m+2sm ,belonging to Stebbins’s 1B type.The meiosis in Eulaliopsis binata undergoes continued cytokinisis, and at matephase appears 20 bivalents. Also, in this study, some abnormal phenomena were observed: at metaphase I, some chromosome appeared unpaired with a 34.3% frequency; one or three lagged chromosomes at anaphase I with a 32.4% frequency; and during the tetrad period, one microkernel in 20 cells was approximately distinguished Conclusions Eulaliopsis binata is a polyploid species with 40 chromosomes and is expected to be heterotetraploid, based on the Karyotype analysis and the chromosome behaviors during the meiosis.

Key words: Eulaliopsis binata, chromosome, karyotype, meiosis, heterotetraploid

[1] GUAN ZiHeng, JI RunZe, RONG Qi, XU YuJie, ZHONG Yuan, CHENG FangYun. The New Ploidies of Intersectional Hybrids in Paeonia and Their Generation Mechanisms Revealed by Molecular Karyotype Analysis [J]. Scientia Agricultura Sinica, 2025, 58(23): 4998-5012.
[2] LI RuXiang, ZHOU Kai, WANG DaChuan, LI QiaoLong, XIANG AoNi, LI Lu, LI MiaoMiao, XIANG SiQian, LING YingHua, HE GuangHua, ZHAO FangMing. Analysis of QTLs and Breeding of Secondary Substitution Lines for Panicle Traits Based on Rice Chromosome Segment Substitution Line CSSL-Z481 [J]. Scientia Agricultura Sinica, 2023, 56(7): 1228-1247.
[3] YI ZeHui, ZHAO Jing, MAO LiPing. Development and Transferability of EST-SSR Markers Based on Transcriptome Data from Asparagus officinalis [J]. Scientia Agricultura Sinica, 2023, 56(22): 4490-4505.
[4] Cheng LIU,Ran HAN,XiaoLu WANG,WenPing GONG,DunGong CHENG,XinYou CAO,AiFeng LIU,HaoSheng LI,JianJun LIU. Research Progress of Wheat Wild Hybridization, Disease Resistance Genes Transfer and Utilization [J]. Scientia Agricultura Sinica, 2020, 53(7): 1287-1308.
[5] CHEN Liu,NI Zheng,YU Bin,HUA JiongGang,YE WeiCheng,YUN Tao,LIU KeShu,ZHU YinChu,ZHANG Cun. Optimized Promoter Regulating of Duck Tembusu Virus E Protein Expression Delivered by a Vectored Duck Enteritis Virus in vitro [J]. Scientia Agricultura Sinica, 2020, 53(24): 5125-5134.
[6] CHEN JingNan,MA XiaoLan,WANG Zhen,LI ShiJin,XIE Hao,YE XingGuo,LIN ZhiShan. SSR Sequences and Development of PCR Markers Based on Transcriptome of Dasypyrum villosum No.1026 [J]. Scientia Agricultura Sinica, 2019, 52(1): 1-10.
[7] HAN Ran, LI TianYa, GONG WenPing, LI HaoSheng, SONG JianMin, LIU AiFeng, CAO XinYou, CHENG DunGong, ZHAO ZhenDong, LIU Cheng, LIU JianJun. New Resistance Sources of Wheat Stem Rust and Molecular Markers Specific for Relative Chromosomes That the Resistance Genes are Located on [J]. Scientia Agricultura Sinica, 2018, 51(7): 1223-1232.
[8] YingBin DING, LiZhen ZHANG, Rui XU, YanYan WANG, XiaoMing ZHENG, LiFang ZHANG, YunLian CHENG, Fan WU, QingWen YANG, WeiHua QIAO, JinHao LAN. Fine Mapping of Grain Length Associated QTL, qGL12 in Wild Rice (Oryza sativa L.) Using a Chromosome Segment Substitution Line [J]. Scientia Agricultura Sinica, 2018, 51(18): 3435-3444.
[9] YE MingWang, ZHANG ChunZhi, HUANG SanWen. Construction of High Efficient Genetic Transformation System for Diploid Potatoes [J]. Scientia Agricultura Sinica, 2018, 51(17): 3249-3257.
[10] CAO XueTao, PEI ShengWei, ZHANG Jin, LI FaDi, LI Gang, LI WanHong, YUE XiangPeng. Screening of Y Chromosome Specific Primers and Y-SNPs in Sheep [J]. Scientia Agricultura Sinica, 2018, 51(15): 2990-2999.
[11] MAYNUR·turdi, ZHANG Yan-hui, QIN Wei, SI Hong-zhang, YANG Xin-feng. The Analysis of Chromosome Karyotype of Malus sieversii Germplasm Resources Infraspecies in Xinjiang [J]. Scientia Agricultura Sinica, 2016, 49(8): 1540-1549.
[12] LI Ke-qi, ZENG Xin-hua, YUAN Rong, YAN Xiao-hong, WU Gang. Cytological Researches on the Anther Development of a Thermo-Sensitive Genic Male Sterile Line TE5A in Brassica napus [J]. Scientia Agricultura Sinica, 2016, 49(12): 2408-2417.
[13] DU Pei, LIU Hua, LI Li-na, QIN Li, ZHANG Zhong-xin, HUANG Bing-yan, DONG Wen-zhao, TANG Feng-shou, QI Zeng-jun, ZHANG Xin-you. Chromosome Analysis of Peanut (Arachis hypogaea L.) Based on Sequential GISH-FISH [J]. Scientia Agricultura Sinica, 2015, 48(9): 1854-1863.
[14] ZHANG Yun-xia, LOU Qun-feng, LI Zi-ang, WANG Yun-zhu, ZHANG Zhen-tao, LI Ji, CHEN Jin-feng. Rapid Karyotype Analysis of Cucumber Varieties Based on Genomic in situ Hybridization [J]. Scientia Agricultura Sinica, 2015, 48(2): 398-406.
[15] YAO Qi-lun, CHEN Fa-bo, LIU Hong-fang, FANG Ping, ZHAO Cai-fang. B Chromosome Polymorphisms in Maize (Zea mays L.) Landrace Populations from Southwest China [J]. Scientia Agricultura Sinica, 2015, 48(14): 2697-2704.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!