Acta Agrestia Sinica ›› 2026, Vol. 34 ›› Issue (9): 3152-3163.DOI: 10.11733/j.issn.1007-0435.2026.09.002
MO Xi-fu1,2, LI Cui2, ZHENG Mei2, HOU Xin-cun2, ZHAO Chun-qiao2, DONG Fu-lei2, ZHOU Sheng1, GUO Qiang2
Received:2026-01-06
Revised:2026-04-08
Published:2026-09-11
莫希涪1,2, 李翠2, 郑美2, 侯新村2, 赵春桥2, 董富磊2, 周胜1, 郭强2
通讯作者:
周胜, E-mail: zhousheng@zhku.edu.cn;郭强, E-mail: guoqiang@baafs.net.cn
作者简介:莫希涪(2000-),男,汉族,广东阳江人,硕士研究生,主要从事狼尾草育种研究工作,E-mail:736019734@qq.com;李翠(1984-),女,汉族,山东聊城人,副研究员,主要从事草类植物逆境生理及生物育种研究,E-mail:llcui@baafc.net.cn
基金资助:CLC Number:
MO Xi-fu, LI Cui, ZHENG Mei, HOU Xin-cun, ZHAO Chun-qiao, DONG Fu-lei, ZHOU Sheng, GUO Qiang. Research Progress in Breeding Techniques of Pennisetum Forages[J]. Acta Agrestia Sinica, 2026, 34(9): 3152-3163.
莫希涪, 李翠, 郑美, 侯新村, 赵春桥, 董富磊, 周胜, 郭强. 狼尾草属牧草育种技术研究进展[J]. 草地学报, 2026, 34(9): 3152-3163.
| [1] GUO Y,DU J Y,ZHANG X T,et al. Production status and development strategies of forage grass in China[J]. Animal Husbandry and Feed Science,2021,42(2):85-90 郭莹,杜久元,张雪婷,等. 我国饲草生产现状及发展对策[J]. 畜牧与饲料科学,2021,42(2):85-90 [2] CHEN Z W,HUANG X Y,HUANG X S,et al. Research progress,application status and development prospects of Pennisetum grasses silage feed[J]. Chinese Journal of Animal Nutrition,2025,37(6):3606-3617 陈兆伟,黄小云,黄秀声,等. 狼尾草属牧草青贮饲料的研究进展、应用现状及发展前景[J]. 动物营养学报,2025,37(6):3606-3617 [3] WANG W Q,ZHOU H L,TANG J. Research advances on development and utilization of forage of Pennisetum spp[J]. Chinese Journal of Tropical Agriculture,2018,38(6):49-55,78 王文强,周汉林,唐军. 狼尾草属牧草研究及利用进展[J]. 热带农业科学,2018,38(6):49-55,78 [4] HOU X C,TENG K,GUO Q,et al. Research advances in forage Pennisetum resource[J]. Bulletin of Botany,2022,57(6):814-825 侯新村,滕珂,郭强,等. 狼尾草属牧草研究进展[J]. 植物学报,2022,57(6):814-825 [5] CHEN Z T,HE S L,HUANG Y B. Research progress of Pennisetum rich[J]. Acta Agrestia Sinica,2010,18(5):740-748 陈志彤,何水林,黄毅斌. 狼尾草属牧草研究进展[J]. 草地学报,2010,18(5):740-748 [6] LUO Z Z. Karyotype and SCAR analysis of the main forages of Pennisetum[D]. Fuzhou:Fujian Agriculture and Forestry University,2017:1-2 罗宗志. 主要狼尾草属牧草核型及SCAR分析[D]. 福州:福建农林大学,2017:1-2 [7] LIN J R,LIU J C,SU S J. Test of forage varieties of Pennisetum Rich. in the south subtropics in Fujian[J]. Journal of Fujian Agriculture and Forestry University (Natural Science Edition),2003,32(1):110-112 林洁荣,刘建昌,苏水金. 福建南亚热带狼尾草属牧草品比试验[J]. 福建农林大学学报(自然科学版),2003,32(1):110-112 [8] DING C L,GU H R,XU N X,et al. Introduction of male sterile line Tift85DA4 and hybrid seed production of Pennisetum americanum×Pennisetum purpureum[J]. Grassland of China,2002,24(5):29-32 丁成龙,顾洪如,许能祥,等. 美洲狼尾草不育系Tift85DA4的引进及其种间杂交制种技术研究[J]. 中国草地,2002,24(5):29-32 [9] KUANG C Y,XU C,HUANG X S,et al. Study on adaptability of DeHong elephant grass and king grass in Kunming of Yunnan Province[J]. Pruataculture & Animal Husbandry,2007(6):4-8 匡崇义,徐驰,黄晓松,等. 云南德宏象草与王草的对比试验研究[J]. 草业与畜牧,2007(6):4-8 [10] ZHOU F,DONG Z X,XIE X M. Review on the research and utilization of Pennisetum purpureum cv.Mott in tropical and subtropical areas[J]. Grassland and Turf,2007,27(3):76-82 周峰,董朝霞,解新明. 摩特矮象草的研究和利用进展[J]. 草原与草坪,2007,27(3):76-82 [11] WANG S N,WANG J H. Elephant grass in Guangxi and Fujian and its popularization and application[J]. Fujian Journal of Animal Husbandry and Veterinary Medicine,2014,36(1):19-20 王舒宁,王均辉. 桂闽引象草及其推广应用[J]. 福建畜牧兽医,2014,36(1):19-20 [12] YI X F,LAI Z Q,CAI X Y,et al. High-yield cultivation and development and utilization of purple elephant grass[J]. Prataculture & Animal Husbandry,2012(1):22-23,27 易显凤,赖志强,蔡小艳,等. 紫色象草的高产栽培与开发利用[J]. 草业与畜牧,2012(1):22-23,27 [13] LIU G D,BAI C J,WANG D J,et al. The selection and utilization of ‘reyan No.4’ king grass[J]. Acta Agrestia Sinica,2002,10(2):92-96 刘国道,白昌军,王东劲,等. ‘热研4号’王草选育[J]. 草地学报,2002,10(2):92-96 [14] CHEN P,WU X F,XI J B,et al. A preliminary study on the breeding of Huanan No.1 hybrid Pennisetum[J]. Journal of Zhongkai Agrotechnical College,2004,17(1):56-59 陈平,吴秀峰,席嘉宾,等. 华南1号杂交狼尾草选育初报[J]. 仲恺农业技术学院学报,2004,17(1):56-59 [15] ZHONG X X,GU H R,XIANG Y H,et al. RAPD analysis on forage resources in Pennisetum[J]. Jiangsu Journal of Agricultural Sciences,2003,19(2):109-113 钟小仙,顾洪如,向阳海,等. 狼尾草属牧草资源的RAPD分析[J]. 江苏农业学报,2003,19(2):109-113 [16] YUAN L P. Practice and theory of hybrid rice cultivation[J]. Scientia Agricultura Sinica,1977,10(1):27-31 袁隆平. 杂交水稻培育的实践和理论[J]. 中国农业科学,1977,10(1):27-31 [17] ATHWAL D S. Current plant breeding research with special reference to Pennisetum[J]. Indian Journal of Genetics and Plant Breeding,1966,26A:73 [18] GILL K S. Pearl millet and its improvement [M]. New Delhi: Indian Council of Agricultural Research,1991: 1-7 [19] VADEZ V,HASH C T,BIDINGER F R,et al. Phenotyping pearl millet for adaptation to drought[J]. Frontiers in Physiology,2012,3:386 [20] YADAV O P, GUPTA S K, GOVINDARAJ M, et al. Genetic gains in pearl millet in India: insights into historic breeding strategies and future perspective[J]. Frontiers in Plant Science, 2021,12:645038 [21] BAI S J,GU H R,ZHOU W X,et al. Seed production techniques of hybrid Pennisetum[J]. Jiangsu Agricultural Sciences,1997,25(5):58-60 白淑娟,顾洪如,周卫星,等. 杂交狼尾草制种技术[J]. 江苏农业科学,1997,25(5):58-60 [22] GU H R,BAI S J,DING C L. A new forage variety ‘Ningza No.3’ Pennisetum americanum and its cultivation techniques[J]. Jiangsu Agricultural Sciences,1999,27(4):71-72 顾洪如,白淑娟,丁成龙. 牧草新品种‘宁杂3号’美洲狼尾草及其栽培技术[J]. 江苏农业科学,1999,27(4):71-72 [23] BAI S J,ZHOU W X,ZHONG X X. Selection of American pearlmillet ‘ningza NO.4’[J]. Rain Fed Crops,2002,22(1):19-22 白淑娟,周卫星,钟小仙. ‘宁杂4号’美洲狼尾草选育研究[J]. 杂粮作物,2002,22(1):19-22 [24] TAN Z Z,XUE W T,QIAN C,et al. Mitogenomic comparison identifies rpl16 as a CMS driver via ROS dysregulation in pearl millet[J]. The Crop Journal,2025,13(5):1516-1525 [25] DENG Y M,YE X Q,SHE J M,et al. The research progress on distant hybridization of plant breeding[J]. Acta Agriculturae Boreali-Sinica,2011,26(S1):52-55 邓衍明,叶晓青,佘建明,等. 植物远缘杂交育种研究进展[J]. 华北农学报,2011,26(S1):52-55 [26] DOWLING C D, ESTÉVEZ J, BOLLAM S,et al. Marker-assisted verification of hybrids in pearl millet–Napier grass (Pennisetum glaucum (L.) R. Br.×Pennisetum purpureum Schumach.)[J]. American Journal of Plant Sciences,2013, 4: 1004-1012 [27] GU H R,YANG Y S,BAI S J,et al. A new forage variety ‘Ningmu 26-2’ Pennisetum[J]. Jiangsu Agricultural Sciences,1992,20(4):61-63 顾洪如,杨运生,白淑娟,等. 牧草新品种‘宁牧26-2’狼尾草[J]. 江苏农业科学,1992,20(4):61-63 [28] ZHOU J J,WEI X X,WANG X,et al. Cultivation techniques and feeding value of hybrid Pennisetum Bunde 1[J]. Agricultural Technology Service,2022,39(3):93-94 周佳佳,魏欣欣,王勋,等. 邦得1号杂交狼尾草的栽培技术及饲用价值[J]. 农技服务,2022,39(3):93-94 [29] CHEN Z D,HUANG Q L,HUANG X S,et al. Breeding and cultivation technology of Pennisetum[J]. Journal of Domestic Animal Ecology,2012,33(1):53-55 陈钟佃,黄勤楼,黄秀声,等. ‘闽牧6号’狼尾草的选育及田间种植技术[J]. 家畜生态学报,2012,33(1):53-55 [30] YANG X Z,HAN Y Z,PIAO X M,et al. Research progress of mutation breeding in rice[J]. North Rice,2024,54(3):41-50 杨学智,韩云哲,朴雪梅,等. 水稻诱变育种研究进展[J]. 北方水稻,2024,54(3):41-50 [31] WANG Z D. The progress of radiative mutation breeding in China[J]. Journal of Isotopes,2005,18(3):183-185 王志东. 我国辐射诱变育种的现状分析[J]. 同位素,2005,18(3):183-185 [32] QIU X M. Current status and research progress of plant space mutation breeding[C]//Proceedings of the 6th Youth Academic Exchange Meeting of Nuclear Agriculture and the Nuclear Agriculture Branch of the 2011 Academic Annual Meeting of Chinese Nuclear Society.2011: 169-176 邱新棉. 植物空间诱变育种的现状和研究进展[C]//第六届核农学青年科技工作者学术交流会暨中国核学会2011年学术年会核农学分会论文集. 2011:169-176 [33] KHAERANI P I,MUSA Y,UTAMY R F,et al. Radiosensitivity of super Napier grass (Pennisetum purpureum x Pennisetum glaucum) induced by low and high-activity rates of gamma irradiation[J]. Plant Breeding and Biotechnology,2024,12:4 [34] WANG M,JIA M,WEI M J,et al. Mutagenic effects of 60Co-γ radiation on‘ Purple leaf’ Pennisetum[J/OL].http://kns.cnki.net/kcms/detail/46.1068.S.20221129.1134.018.html,2022-11-30/2026-04-15 王萌,贾明,位明君,等. 60Co-γ辐射对‘紫叶’狼尾草的诱变效应[J/OL].http://kns.cnki.net/kcms/detail/46.1068.S.20221129.1134.018.html,2022-11-30/2026-04-15 [35] ISLAM M N,ISLAM M A,UDDIN M I,et al. Morpho-molecular characterization of Napier (Pennisetum purpureum) fodder mutants through SSR markers: morpho-molecular characterization of Napier[J]. SAARC Journal of Agriculture,2022,20(2):105-119 [36] WU B C,ZHANG H,TONG L,et al. Research on genetic and phenotypic differences of Pennisetum purpureum mutants generated by irradiation[J]. Acta Prataculturae Sinica,2018,27(11):77-86 武炳超,张欢,童磊,等. 象草不同辐射剂量诱变系表型及遗传变异研究[J]. 草业学报,2018,27(11):77-86 [37] WU B C,TONG L,DU Z C,et al. Mutagenic effects of 60Co-γ-rays on two species of Pennisetum genus forages[J]. Scientia Agricultura Sinica,2019,52(3):414-427 武炳超,童磊,杜昭昌,等. 60Co-γ射线对2种狼尾草属牧草的诱变效应[J]. 中国农业科学,2019,52(3):414-427 [38] CHENG F Y,WANG J L,SUN Y X,et al. Application of chemical mutagenesis in breeding of rice in Heilongjiang Province[J]. North Rice,2018,48(5):1-5,10 程芳艳,王继亮,孙翊轩,等. 化学诱变在寒地水稻育种中的应用[J]. 北方水稻,2018,48(5):1-5,10 [39] MUNASIK M,SUTRISNO C I,ANWAR S, et al. The growth, yield and quality of elephant grass (Pennisetum purpureum) spesific toleran of acid soils by mutagenesis with ethylmethane sulfonate[J]. Animal Production,2012, 14(2): 87-91 [40] MULLAINATHAN K A L. Effect of mutagens on quantitative characters in m3 generation of pearl millet (Pennisetum typhoides (burn.f) stapf. and c.e. hubb.)[J]. Journal of Phytology,2018:1-5 [41] ABDALLA A F M,MOURAD S S B,Yassein H E, et al. Mutagenic effect of dimethyl sulphate and gamma rays on pearl millet (Pennisetum glaucum L.)[J]. Al-Azhar Journal of Agricultural Research,2016, 26: 293-307 [42] QI W W,LI Y X,MA H Y,et al. Intraspecific variation of seed germination characteristics of Leymus chinensis under salt stress and its influencing factors[J]. Acta Ecologica Sinica,2025,45(11):5481-5496 亓雯雯,李亚晓,马红媛,等. 盐胁迫下羊草种子萌发特性的种内变异及其影响因素[J]. 生态学报,2025,45(11):5481-5496 [43] QI W W,MA H Y,LI Y X,et al. Progress in research on breeding methods to produce new,high-quality forage varieties[J]. Acta Prataculturae Sinica,2024,33(6):187-202 亓雯雯,马红媛,李亚晓,等. 优质牧草新品种选育方法研究进展[J]. 草业学报,2024,33(6):187-202 [44] DEVI P,ZHONG H,STICKLEN M B. In vitro morphogenesis of pearl millet [Pennisetum glaucum (L.) R.Br.]: efficient production of multiple shoots and inflorescences from shoot apices[J]. Plant Cell Reports,2000,19(6):546-550 [45] AROCKIASAMY S, RANI S S, IGNACIMUTHU S,et al. Efficient protocols for in vitro regeneration of Pennisetum glaucum (L) Br.[J]. Indian Journal of Experimental Biology,2006,44:757-761 [46] FAN Y H,XU Y,ZHU S C,et al. Construction of tissue culture regeneration system of Pennisetum glaucum[J]. Acta Agrestia Sinica,2023,31(1):89-95 范欲航,许悦,祝诗词,等. 美洲狼尾草组织培养再生体系的建立[J]. 草地学报,2023,31(1):89-95 [47] LIU Y L,ZHU J B. Embryonic callus induction and plant regeneration from Pennisetum hybrid[J]. Plant Physiology Journal,2015,51(1):136-140 刘逸泠,祝建波. 杂交狼尾草胚性愈伤组织的诱导与植株再生[J]. 植物生理学报,2015,51(1):136-14 [48] FALEIRO F G,KIM J Y,PARIKH A,et al. Generation of transgenic Napier grass (Cenchrus purpureus Schum.) plants by biolistic gene transfer of a minimal expression cassette[J]. Tropical Plant Biology,2021,14(4):371-380 [49] JHA P,SHASHI,RUSTAGI A,et al. Efficient Agrobacterium-mediated transformation of Pennisetum glaucum (L.) R. Br. using shoot apices as explant source[J]. Plant Cell,Tissue and Organ Culture (PCTOC),2011,107(3):501-512 [50] RAMADEVI R,RAO K V,REDDY V D. Agrobacterium tumefaciens-mediated genetic transformation and production of stable transgenic pearl millet (Pennisetum glaucum [L.] R. Br.)[J]. In Vitro Cellular & Developmental Biology - Plant,2014,50(4):392-400 [51] GONDO T,UMAMI N,MUGUERZA M,et al. Plant regeneration from embryogenic callus derived from shoot apices and production of transgenic plants by particle inflow Gun in dwarf Napier grass (Pennisetum purpureum Schumach.)[J]. Plant Biotechnology,2017,34(3):143-15 [52] MU T,ZHANG X Y,WANG J G,et al. The optimization of Pennisetum agrobacterium-mediated transformation system and obtaining of transgenic plants[J]. Crops,2013(1):45-48,158 牟彤,张晓莹,王金刚,等. 狼尾草农杆菌转化体系的优化和转基因植株的获得[J]. 作物杂志,2013(1):45-48,158 [53] WANG P Q,LI Z Z,CHAO Y H,et al. Transformation of transcription activator CBF1 gene of Arabidopsis into hybrid Pennisetum[J]. Journal of Chongqing University,2007(10):134-137 王凭青,李志中,晁跃辉,等. 拟南芥转录因子CBF1基因杂交狼尾草的转化[J]. 重庆大学学报(自然科学版),2007(10):134-137 [54] HU Y B,SUN M,LUO D,et al. Transcriptome profiling the response of elephant grass (Cenchrus purpureus) root to cold stress[J]. Grass Research,2025,5(1):e014 [55] MAO C L,ZHANG J,ZHANG Y N,et al. Genome-wide analysis of the WRKY gene family and their response to low-temperature stress in elephant grass[J]. BMC Genomics,2024,25(1):947 [56] SUN M,YAN H D,ZHANG A L,et al. The transcriptional dynamic landscape map of pearl millet in response to abiotic stress provides new insights into the responses of plants to stress[J]. Tropical Plants,2025,4(1):e024 [57] KHAN I,AWAN S A,RIZWAN M,et al. Physiological and transcriptome analyses demonstrate the silver nanoparticles mediated alleviation of salt stress in pearl millet (Pennisetum glaucum L)[J]. Environmental Pollution,2023,318:120863 [58] HAYAT K,ZHOU Y F,MENHAS S,et al. Pennisetum giganteum: an emerging salt accumulating/tolerant non-conventional crop for sustainable saline agriculture and simultaneous phytoremediation[J]. Environmental Pollution,2020,265:114876 [59] ZHANG W L,CHEN Z W,YANG W P,et al. Molecular marker assisted selection technology and its application to crop breeding[J]. Seed,2008,27(4):39-43 张文龙,陈志伟,杨文鹏,等. 分子标记辅助选择技术及其在作物育种上的应用研究[J]. 种子,2008,27(4):39-43 [60] BASHIR E M A,ALI A M,ALI A M,et al. Genetic diversity of Sudanese pearl millet (Pennisetum glaucum (L.) R. Br.) landraces as revealed by SSR markers,and relationship between genetic and agro-morphological diversity[J]. Genetic Resources and Crop Evolution,2015,62(4):579-591 [61] KANDEL R,SINGH H P,SINGH B P,et al. Assessment of genetic diversity in Napier grass (Pennisetum purpureum Schum.) using microsatellite,single-Nucleotide polymorphism and insertion-deletion markers from pearl millet (Pennisetum glaucum [L.] R. br.)[J]. Plant Molecular Biology Reporter,2016,34(1):265-272 [62] NEGAWO A T,JORGE A,HANSON J,et al. Molecular markers as a tool for germplasm acquisition to enhance the genetic diversity of a Napier grass (Cenchrus purpureus syn. Pennisetum purpureum) collection[J]. Tropical Grasslands-Forrajes Tropicales,2018,6(2):58-69 [63] ZHU D D,WANG P D,LIN X S,et al. Karyotype analysis of Pennisetum purpureum and Pennisetum giganteum[J]. Guizhou Agricultural Sciences,2015,43(5):14-18 朱丹丹,王培丹,林兴生,等. 象草和巨菌草的核型分析[J]. 贵州农业科学,2015,43(5):14-18 [64] ZOU B C,WANG X,ZHANG X,et al. Analysis of chromosome number and genetic diversity of 22 Pennisetum materials and 1 Arundo material[J]. Acta Agrestia Sinica,2025,33(4):1019-1028 邹冰灿,王霞,张轩,等. 22份狼尾草属材料和1份芦竹属材料染色体数目及遗传多样性分析[J]. 草地学报,2025,33(4):1019-1028 [65] VARSHNEY R K,SHI C C,THUDI M,et al. Pearl millet genome sequence provides a resource to improve agronomic traits in arid environments[J]. Nature Biotechnology,2017,35(10):969-976 [66] TENG K,GUO Q,LIU L Y,et al. Chromosome-level reference genome assembly provides insights into the evolution of Pennisetum alopecuroides[J]. Frontiers in Plant Science,2023,14:1195479 [67] YAN Q,WU F,XU P,et al. The elephant grass (Cenchrus purpureus) genome provides insights into anthocyanidin accumulation and fast growth[J]. Molecular Ecology Resources,2021,21(2):526-542 [68] YAN H D,SUN M,ZHANG Z R,et al. Pangenomic analysis identifies structural variation associated with heat tolerance in pearl millet[J]. Nature Genetics,2023,55(3):507-518 [69] LÓPEZ Y,KURASHEV A,CHASE C,et al. Developing and validating microsatellite markers in elephant grass (Pennisetum purpureum S.)[J]. Euphytica,2018,214(10):185 [70] WANG C R,YAN H D,LI J,et al. Genome survey sequencing of purple elephant grass (Pennisetum purpureum Schum ‘Zise’) and identification of its SSR markers[J]. Molecular Breeding,2018,38(7):94 [71] MUKTAR M S,TESHOME A,HANSON J,et al. Genotyping by sequencing provides new insights into the diversity of Napier grass (Cenchrus purpureus) and reveals variation in genome-wide LD patterns between collections[J]. Scientific Reports,2019,9:6936 [72] LI Q Y,LIU T,ZHANG S H,et al. Development and application of survey sequencing and gSSR molecular marker of Pennisetum glaucum[J]. Molecular Plant Breeding,2019,17(16):5375-5382 李青遥,刘婷,张曙恒,等. 美洲狼尾草Survey测序及其gSSR分子标记的开发应用[J]. 分子植物育种,2019,17(16):5375-5382 |
| [1] | LIU Zhen-yin, DUAN Ting-yu, NAN Zhi-biao. Research Progress on Abiotic Stress Responses of Vicia Forage Species [J]. Acta Agrestia Sinica, 2026, 34(8): 2753-2762. |
| [2] | JIA Ji-yuan, LIN Song, YANG Dan, JI Shi-jun, ZOU Xiao-bin, HU Zhi-yong, JIN Ya-rong, YAN Hai-dong, HUANG Lin-kai. Comparative Study on Production Performance and Regional Overwintering Ability of Elephant Grass Varieties (Lines) [J]. Acta Agrestia Sinica, 2026, 34(8): 2971-2979. |
| [3] | YAN Xu, HOU Xing-feng, WANG Hong-lin, ZUO Yan-chun, XIAO Lian, WU Zi-zhou, LI Yang, CHEN Hui, LIU Hong-mei, SUN Ru-ting, YANG Jian, ZHOU Hong-yan, LIU Jing-song, ZHANG Qiong-wen, DU Zhou-he. Quality Analysis of Silage in Agricultural Region of Sichuan Province [J]. Acta Agrestia Sinica, 2025, 33(7): 2051-2058. |
| [4] | ZOU Bing-can, WANG Xia, ZHANG Xuan, LI Yu-ling, HUANG Gen-xi, HUANG Lin-kai, ZHANG Xin-quan, ZHANG Hai-qin. Analysis of Chromosome Number and Genetic Diversity of 22 Pennisetum Materials and 1 Arundo Material [J]. Acta Agrestia Sinica, 2025, 33(4): 1019-1028. |
| [5] | CHEN Zhong-dian, QIU Shui-ling, FENG De-qing, HUANG Xiu-sheng, HUANG Xiao-yun, ZHOU Liu-ting. Effects of Selenium Application on the Production and Selenium Accumulation of Hybrid Pennisetum [J]. Acta Agrestia Sinica, 2024, 32(3): 838-847. |
| [6] | ZHU Rui-fen, XU Yuan-dong, SUN Wan-bin, LIU Chang, YAO Bo, CHEN Ji-shan. Research on Nutritional Components of Pennisetum Rich. Forage by Near Infrared Spectroscopy Model based on Artificial Neural Network [J]. Acta Agrestia Sinica, 2024, 32(2): 527-534. |
| [7] | YOU Yong-liang, ZHAO Hai-ming, LI Yuan, WU Rui-xin, LIU Gui-bo. Breeding of New Forage Triticale ‘Jisi No.3’ with Stress Resistance and High Yield [J]. Acta Agrestia Sinica, 2020, 28(4): 1145-1152. |
| [8] | DENG Zhen-Shan, LI Mai-ping, HAO Lei, CHEN Kai-kai, LI Jing, LIU Yu-zhen, ZHANG Bao-bao, QI Xiang-ying. Diversity and Plant Growth Promoting Activities of the Culturable Endophytic Bacteria Associated with Pennisetum sp. [J]. Acta Agrestia Sinica, 2019, 27(5): 1213-1221. |
| [9] | LIN Xing-sheng, LIN Hui, LIN Dong-mei, LUO Hai-ling, HU Ying-ping, LIN Zhan-xi. Effets of Planting Density and Fertilization on the Agronomic Traits and Production Performance of Pennisetum spp. [J]. Acta Agrestia Sinica, 2018, 26(6): 1525-1528. |
| [10] | SHAO Jiang, CHEN Yao, LIU Da-lin, CHEN Ming-hui, WU Ya, HUANG Yu-ting. Effects of Silicon on the Physiological Metabolism of Different Pennisetum Species under Cadmium Stress [J]. Acta Agrestia Sinica, 2018, 26(5): 1223-1228. |
| [11] | TIAN Qing-song, YU Dong-yang, ZHANG Rui-xia, HOU Xiang-yang, HAN Bing, Baiyindeligeer. Report on Breeding Selection of an Oat Variety ‘Mengsiyan 2’ [J]. Acta Agrestia Sinica, 2018, 26(2): 459-466. |
| [12] | LIU Da-lin, ZHANG Hua, CAO Xi-chun, HU Kai-qi, WANG Kui, LIU Zhao-ming, YANG Jun-qiao. Effects of Silicon on the Physiological Metabolism of Tested Pennisetum under Salt Stress [J]. , 2013, 21(6): 1119-1123. |
| [13] | CHEN Zhi-tong, , HE Shui-lin, HUANG Yi-bin. Research Progress of Pennisetum Rich. [J]. , 2010, 18(5): 740-748. |
| [14] | ZHOU Zi-wei, YUAN Fu-jin, KUANG Chong-yi, BI Yu-fen. Integrated Identification of Naturalized Pennisetum Rich.sp.In Dehong,Yunnan Province [J]. , 2008, 16(5): 453-457. |
| [15] | Ma Helin. A Consideration of Forage Breeding in the Future in China [J]. , 1997, 5(1): 67-72,66. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||