Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2008, Vol. 34 ›› Issue (07): 1206-1212.

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

Cytogenetical Studies on Sorghum (S. bicolor), Sudangrass (S. sudanense), and Their Hybrid

ZHAN Qiu-Wen12,ZHU Li-Meng1,WU Juan-Juan2,ZHANG Wei1,ZHANG Tian-Zhen2   

  1. 1 College of Plant Science, Anhui Science and Technology University, Fengyang 233100, Anhui; 2 National Key Laboratory of Crop Genetics &
    Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China
  • Received:2007-08-17 Revised:1900-01-01 Online:2008-07-12 Published:2008-07-12
  • Contact: ZHAN Qiu-Wen12

Abstract: Sudangrass (Sorghum sudanense) and sorghum (S. bicolor) are two members of the genus Sorghum (Gramineae). Their hybrids have exhibited favorable forage yields and overall improved quality and disease resistance. They are widely used in aquaculture, production of livestock food and environmental protection, but some disagreements exist as to whether they actually belong to the same species. The Karyotypes of two sudangrass varieties, two sorghum varieties, three sorghum-sudangrass F1 hybrids were analyzed by the method of cell wall degradation and hypotonic treatment for chromosome preparations, and the meiosis behavior of three F1 hybrids and the chromosome numbers of two F2 hybrids were observed. The result showed that the karyotypic types of sorghum and sudangrass were 1A, and the karyotype formula was 2n=18m+2sm (sat) for Sa, 2n=20m for 3042A and 3042A×Sa F1, and 2n=20m(sat) for the others. The difference of chromosomes among three groups (i.e. sudangrass, sorghum, and sor-ghum-sudangrass hybrid F1) were not significant in terms of absolute long arm, absolute short arm, absolute total length, arm ratio (l/s), relative total length (P>0.05); the change of chromosome length was not obvious in sorghum and sudangrass. The paired chromosome configuration of sorghum-sudangrass hybrid F1 in pollen mother cells at diakinesis and metaphaseIwas 2n=2x=20(10II) and the chromosome pairing behavior was regular, but the frequencies of rod bivalent of Tx623A×S722 F1, 3042A×Sa F1, and Tx623A×Sa F1 were 4.887, 5.710, and 5.126, respectively; those of ring bivalent were 5.113, 4.290, and 4.874, respectively. At anaphase I, the paired chromosomes of sorghum-sudangrass hybrid F1 could separate from each other. The chromosome numbers of F2 hybrid were 20 (2n=20). Therefore, the sudangrass/sorghum relationship is sufficiently close.

Key words: Sudangrass [Sorghum sudanense (Piper) Stapf], Sorghum [Sorghum bicolor (L.) Moench], Karyotypes, Chromosome, Cytogenetics

CLC Number: 

  • 10.3724/SP.J.1006.2008.01206
[1] Hou Jie, Fu Duo-Duo, Wu Hai-Feng, Hao Yu-Qiong, Zheng Xing-Wei, Wu Bang-Bang, Zhou Kai, Li Xiao-Hua, Zheng Jun, Zhao Jia-Jia. Chromosome diversity and its effects in wheat landraces from Shanxi province, China [J]. Acta Agronomica Sinica, 2026, 52(3): 746-763.
[2] JIANG You, MA Xue-Rong, ZHANG Bo, LI Chen-Jian. Evaluation of salt tolerance and screening of salt-tolerant germplasm of Sorghum sudanese during seed germination period [J]. Acta Agronomica Sinica, 2025, 51(3): 835-844.
[3] ZHANG Han, YU Jin-Jin, TAN Lin-Lu, ZHANG Jing-Quan, WANG Xiao-Dong, XIE Zhuang, XIE Ke-Ying, LING Ying-Hua, ZHAO Fang-Ming. Genetic dissection and breeding application of rice yield-related QTL using single and dual segment substitution lines derived from CSSL-Z267 [J]. Acta Agronomica Sinica, 2025, 51(12): 3157-3170.
[4] LI Ya-Wei, XU Ying-Ying, ZUO Chun-Yang, LIU Ruo-Nan, LIANG Ya-Jun, KONG Jie, ZHANG Xian-Long, MIN Ling. Construction of a meiotic progression identification system in cotton and analysis of its response to high-temperature stress [J]. Acta Agronomica Sinica, 2025, 51(10): 2570-2580.
[5] LIU Yuan-Yuan, DONG Jian-Ke, YING Jing-Wen, MEI Wen-Xiang, CHENG Gang, GUO Jing-Jing, JIAO Wen-Biao, SONG Bo-Tao. Creating cold resistant germplasm of potato using Solanum boliviense [J]. Acta Agronomica Sinica, 2024, 50(6): 1384-1393.
[6] LI Hang-Yu, LIU Xin-Cheng, HE Wen-Ting, LIU Ke-Yi, QIAO Zhen-Hua, LYU Pin-Cang, ZHANG Xian-Hua, HE Yu-Chi, CAI De-Tian, SONG Zhao-Jian. Induction, identification and salt-alkali tolerance evaluation of tetraploid Haidao 86 [J]. Acta Agronomica Sinica, 2024, 50(4): 914-931.
[7] XUE Li, LI Xin-Yi, HUANG Yong-Tai, OU Cai-Lan, WU Xiao-Qing, YU Ze-Huai, CUI Ze-Tian, ZHANG Mu-Qing, DENG Zu-Hu, YU Fan. Component characterization of chromosome sets in the hybrids between sugarcane and Tripidium arundinaceum [J]. Acta Agronomica Sinica, 2024, 50(3): 633-644.
[8] CAO Yue, Zhang Li-Yuan, XIN Xu-Xia, FENG Zhi-Zun, GUO Juan, WANG Xiao-Dan, CAO Xiao-Ning, SANTRA Dipak K, CHEN Ling, QIAO Zhi-Jun, WANG Rui-Yun. Construction of DNA molecular identity card of proso millet in Ningxia based on fluorescent SSR [J]. Acta Agronomica Sinica, 2024, 50(11): 2699-2711.
[9] XIANG Si-Qian, LI Ru-Xiang, XU Guang-Yi, DENG Ke-Li, YU Jin-Jin, LI Miao-Miao, YANG Zheng-Lin, LING Ying-Hua, SANG Xian-Chun, HE Guang-Hua, ZHAO Fang-Ming. Identification and pyramid analysis of QTLs for grain size based on rice long-large-grain chromosome segment substitution line Z66 [J]. Acta Agronomica Sinica, 2023, 49(3): 731-743.
[10] QIU Jie, WANG Tai, CAI Bo-Wei, DUAN Sheng-Xing, XU Lin-Shan, CHEN Xiao-Di, WANG Jing, GE Xian-Hong, LI Zai-Yun. Identification of chromosome deletion in synthesized Brassica auto-allohexaploids and its application in mapping genes of pigment synthesis [J]. Acta Agronomica Sinica, 2023, 49(11): 2902-2912.
[11] LIU Cheng, ZHANG Ya-Xuan, CHEN Xian-Lian, HAN Wei, XING Guang-Nan, HE Jian-Bo, ZHANG Jiao-Ping, ZHANG Feng-Kai, SUN Lei, LI Ning, WANG Wu-Bin, GAI Jun-Yi. Wild segments associated with 100-seed weight and their candidate genes in a wild chromosome segment substitution line population [J]. Acta Agronomica Sinica, 2022, 48(8): 1884-1893.
[12] WANG Hai-Bo, YING Jing-Wen, HE Li, YE Wen-Xuan, TU Wei, CAI Xing-Kui, SONG Bo-Tao, LIU Jun. Identification of chromosome loss and rearrangement in potato and eggplant somatic hybrids by rDNA and telomere repeats [J]. Acta Agronomica Sinica, 2022, 48(5): 1273-1278.
[13] WANG Xiao-Lei, LI Wei-Xing, OU-YANG Lin-Juan, XU Jie, CHEN Xiao-Rong, BIAN Jian-Min, HU Li-Fang, PENG Xiao-Song, HE Xiao-Peng, FU Jun-Ru, ZHOU Da-Hu, HE Hao-Hua, SUN Xiao-Tang, ZHU Chang-Lan. QTL mapping for plant architecture in rice based on chromosome segment substitution lines [J]. Acta Agronomica Sinica, 2022, 48(5): 1141-1151.
[14] TAO Jun, LAN Xiu-Jin. Molecular cytogenetic identification of wheat-Thinopyrum intermedium 2A/6St substitution strain 014-459 [J]. Acta Agronomica Sinica, 2022, 48(2): 511-517.
[15] LUO Jiang-Tao, ZHENG Jian-Min, PU Zong-Jun, FAN Chao-Lan, LIU Deng-Cai, HAO Ming. Chromosome transmission in hybrids between tetraploid and hexaploid wheat [J]. Acta Agronomica Sinica, 2021, 47(8): 1427-1436.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!