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1.
顾 问 (Adviserstotheeditorialboard) :   庄巧生 (ZhuangQ S)   卢良恕 (LuL S)    李振声 (LiZ S)    董玉琛 (DongY C)   余松烈 (YuS L)   范云六 (FanY L)  沈允钢 (ShenY G)  杨作民 (YangZ M)   过益先 (GouY X)  左天觉 (TCTso)   吴 瑞 (RayWu)主 编 (Editor in chief) :辛志勇 (XinZ Y)副主编 (Associateeditors in chief) :   王连铮 (WangL Z)莫惠栋 (MoH D)傅廷栋 (FuT D)戴景瑞 (DaiJ R)   王象坤 (WangX K)张爱民 (ZhangA M)   万建民 (WanJ M)   …  相似文献   

2.
顾 问(Adviserstotheeditorialboard) :   庄巧生(ZhuangQ S)   卢良恕(LuL S)    李振声(LiZ S)    董玉琛(DongY C)   余松烈(YuS L)   范云六(FanY L)  沈允钢(ShenY G)  杨作民(YangZ M)   过益先(GouY X)  左天觉(TCTso)   吴 瑞(RayWu)主 编(Editor in chief) :辛志勇(XinZ Y)副主编(Associateeditors in chief) :   王连铮(WangL Z)莫惠栋(MoH D)傅廷栋(FuT D)戴景瑞(DaiJ R)   王象坤(WangX K)张爱民(ZhangA M)   万建民(WanJ M)   苗果园(MiaoG Y)编 委…  相似文献   

3.
顾 问(Adviserstotheeditorialboard) :   庄巧生(ZhuangQ S)   卢良恕(LuL S)    李振声(LiZ S)    董玉琛(DongY C)   余松烈(YuS L)   范云六(FanY L)  沈允钢(ShenY G)  杨作民(YangZ M)   过益先(GouY X)  左天觉(TCTso)   吴 瑞(RayWu  相似文献   

4.
(The Editorial Board of Acta Agronomica Sinica)顾 问 ( Advisers to the editorial board) :   庄巧生 ( Zhuang Q- S)卢良恕 ( Lu L- S)李振声 ( Li Z- S)董玉琛 ( Dong Y- C)   余松烈 ( Yu S- L)范云六 ( Fan Y- L)沈允钢 ( Shen Y- G)杨作民 ( Yang Z- M)   过益先 ( Guo Y- X)左天觉 ( Zuo T- J)吴 瑞 ( Wu R)主 编 ( Editor- in- chief) :辛志勇 ( Xin Z- Y)副主编 ( Associate editor- in- chief) :   王连铮 ( Wang L- Z)莫惠栋 ( Mo H- D)傅廷栋 ( Fu T- D)戴景瑞 ( Dai J- R)   王…  相似文献   

5.
顾 问 (Advisers to the editorial board) :   庄巧生 (Zhuang Q- S)卢良恕 (Lu L- S)李振声 (Li Z- S)董玉琛 (Dong Y- C)   余松烈 (Yu S- L)范云六 (Fan Y- L)沈允钢 (Shen Y- G)杨作民 (Yang Z- M)   过益先 (Guo Y- X)左天觉 (Zuo T- J)吴 瑞 (Wu R)主 编 (Editor- in- chief) :辛志勇 (Xin Z- Y)副主编 (Associate editor- in- chiefs) :   王连铮 (Wang L- Z)莫惠栋 (Mo H- D)傅廷栋 (Fu T- D)戴景瑞 (Dai J- R)   王象坤 (Wang X- K)张爱民 (Zhang A- M)编 委 (Members of the editoria…  相似文献   

6.
[1]Ahn S.N., Kim Y.K., Han S.S., Choi H.C., Moon H.P. and McCouch S.R., Molecular mapping of a gene for resistance to Korean isolates of rice blast, RGN, 1996,13, 74-76 [2]Bonman J.M., Durable resistance to rice blast disease: environmental influences, Euphytica, 1992, 63, 115-123 [3]Causse M.A., Fulton T.M., Cho Y.G., Ahn S.N., Chunwongse J., Wu K., Xiao J., Yu Z., Ronald P.C., Harrington S.E., Second G., McCouch S.R., and Tanksley S.D., Saturated molecular map of the rice genome based on an interspecific backcross population, Genetics, 1994, 138, 1251-1274 [4]Donna P., Kiyosawa S., Ando I., and Furutani T., Estimation of functional value of field resistance genes to blast disease in some rice varieties, Breeding Science, 1994, 44, 285-293 [5]Donna P., Ali M.S., Furutani T., and Kiyosawa S., Identification and isolation of blast resistance genes in three indica-type rice varieties, Breeding science, 1996, 46, 107-115 [6]Fukuoka S., and Okuno K., QTL analysis for field resistance to rice blast using RFLP markers, RGN, 1997, 14, 98-99 [7]Goto I., Jaw Y.L., and Baluch A.A., Genetic studies on resistance of rice plant to blast fungus IV. Linkage analysis of four genes, pi-a, pi-k, pi-z and pi-I, Ann. Phytopath. Soc., Japan, 1981, 47(2), 252-254 [8]Hittalmani S., Foolad M.R., Mew T., Rodriguez R.L., and Huang N., Development of a PCR-based marker to identify rice blast resistance gene, Pi-2 (t), in segregating population, Theor. Appl. Genet., 1995, 91, 9-14 [9]Inukai T., Zeigler R.S., Sarkarung S., Bronson M., Dung L.V., Kinoshita T., and Nelson R.J., Development of pre-isogenic lines for rice blast resistance by marker aided selection from a recombinant inbred population, Theor. Appl. Genet., 1996, 93,560-567 [10]Inukai T., Nelson R.J., Zeigler R.S., Sarkarung S., Mackill D.J., Bonman J.M., Takamure I., and Kinoshita T., Allelism of blast resistance genes in near-isogenic lines of rice, Phytopathology, 1994, 84 (11), 1278-1283 [11]Imbe T., Oba S., Yanoria M.J.T., and Tsunematsu H., A new gene for blast resistance in rice cultivar IR24, RGN, 1997, 14, 60-62 [12]Kiyosawa S., Identification of blast resistance genes in some varieties, Japan J. of Breed, 1978, 28(4), 287-296 [13]Ling Z.Z., Wang J.L., Pan Q.H., and Li M.F., Classification for blast resistance of some Japonica type varieties from Yunnan province, Scientia Agricultura Sinica, 1990a, 23(5), 5-11 [14]Ling Z.Z., Pan Q.H., Huang S.Z., and Wang J.L., Rice breeding for resistance to blast, Fujian Publisher of sciences and technology, China Fujian, 1990b, 207-216 [15]Miyamoto M., Ando I., Rybka K., Kodama O., and Kawasaki S., High-resolution mapping of the indica-derived rice blast resistance genes l. Pi-b, MPMI (Molecular plant microbe interaction), 1996, 9(1), 6-13 [16]Mew T.V., Parco A.S., Hittalmani S., Inukai T., Nelson R., Zeigler R.S., and Huang N., Fine-mapping of major genes for blast resistance in rice, RGN, 1994, 11, 126-128 [17]Mago R., Nair S., and Mohan M., Resistance gene analogues from rice: cloning, sequencing and mapping, Theor. Appl. Genet., 1999, 99, 50-57 [18]Mackill D.J., and Bonman J.M., Inheritance of blast resistance in near-isogenic lines of rice, Phytopathology, 1992, 82, 746-749 [19]Naqvi N.L., and Chattoo B.B., Molecular genetic analysis and sequence characterized amplified region assisted selection of blast resistance in rice, In International Rice Genetics III, IRRI, Manila, 1996, 570-572 [20]Naqvi N.I., Bonman J.M., Mackill D.J., Nelson R.J., and Chattoo B.B., Identification of RAPD markers linked to a major gene for blast resistance in rice, Molecular breeding, 1995, 1, 341-348 [21]Pan., Wang., and Tanisaka., A new blast resistance genes identified in the Indian native rice cultivar Aus373 through allelism and linkage tests, Plant Pathology, 1999, 48 (2),288-293 [22]Pan Q.H., Wang L., Tanisaka T., and Ikehashi H., Allelism of rice blast resistance genes in two Chinese rice cultivars, and identification of two new resistance genes, Plant Pathology, 1998a, 47, 165-170 [23]Pan Q.H., Wang L., Ikehashi H., Yamagata H., and Tanisaka T., Identification oftwo new genes conferring resistance to rice blast in the Chinese native “Maowangu“, Plant Breeding, 1998b, 117, 27-31 [24]Pan Q.H., Wang L., Ikehashi H., and Tanisaka T., Identification of a new blast resistance gene in the indica rice cultivar Kasalath using Japanese differential cultivars and isozyme markers, Phytopathology, 1996,86 (10), 1071-1075 [25]Rybka K., Miyamoto M., Ando I., Saito A., and Kawasaki S., High resolution mapping of the indica derived rice blast resistance genes II. Pi-ta and Pi-ta and a consideration of their origin, MPMI (Molecular plant microbe interaction), 1997, 10, 517-524 [26]Richter T.E., and Ronald P.C., The evolution of disease resistance genes, Plant Molecular biology, 2000, 42, 195-204 [27]Staskawicz B.J., Ausubel F.M., Kaker B.J., Ellis J.G., and Jones J.D.G., Molecular genetics of plant disease resistance, Science, 1995, 268, 661-667 [28]Tabien R.E., Pinson S.R.M., Marchetti M.A., Li Z., Park W.D., Paterson A.H., and Stansel J.W., Blast resistance genes from Teqing and Lemont, in: G.S Khush (Ed.), Rice Genetics Newsletter III, IRRI, Manila, 1996, 451-452 [29]Wang Z.X., Yano M., Yamanouch U., Iwamoto M., Monna L., Hayasaka H., Katayose Y., and Sasaki T., The Pi-b gene for rice blast resistance belongs to the nucleotide binding and leucine-rice repeat class of plant disease resistance genes, The plant Journal, 1999, 19(1), 55-64 [30]Wang G.L., Mackill D.J., Bonman J.M., McCouch S.R., Champoux M.C., and Nelson R.J., RFLP mapping of genes conferring complete and partial resistance to blast in a durably resistance rice cultivar, Genetics, 1994, 136,1421-1434 [31]Yu Z.H., Mackill D.J., Bonman J.M., McCouch S., Guiderdoni E., Notteghem J.L., and Tanksley S.D., Molecular mapping of genes for resistance to rice blast (Pyricularia grisea Sacc.), Theor. Appl. Genet., 1996, 93, 859-863 [32]Yu Z.H., Mackill D.J., Bonman J.M., and Tanksley S.D., Tagging genes for blast resistance in rice via linkage to RFLP markers, Theor. Appl. Genet., 1991, 81, 471-476 [33]Zhu L.H. Location of unknown gene of rice blast resistance Using molecular markers, Chinese Science (B), 1994, 24(10), 1048-1052 [34]Zheng K.L., Qian H.R., and Zhuang J.Y., Tagging rice blast resistance genes via DNA Marker, ACTA Phytopathologica SINICA, 1995, 25(4), 307-313  相似文献   

7.
Not only population densities of phytoplankton but also its community structure can be influenced by nitrite concentration.To investigate this effect,the growth and competition of Microcystis aeruginosa and Scendesmus quadricauda under different nitrite concentrations are studied by using batch cultures,and the competition relation is analyzed by the competition parameters.The results indicate that there is competition between M.aeruginosa and S.quadricauda in present experiment conditions,and S.quadricauda is dominant in competition.Meanwhile,the increase of nitrite concentration can strengthen S.quadricauda dominance,because under high nitrite concentration (20 mg/L,30 mg/L),M.aeruginosa is more damaged and the allelopathy between M.aeruginosa and S.quadricauda is intenser.  相似文献   

8.
报道中国贵州蔷薇科蔷薇属一新变种:光枝无子刺梨(Rosa sterilis S.D.Shi vat.leioclada M.T.An.Y.Z.Cheng et M.Zhong).  相似文献   

9.
《分子植物育种》2021,19(18):6088-6095
为筛选芒果细菌性角斑病菌在侵染芒果叶片过程中稳定表达的内参基因,采用实时荧光定量聚合酶链式扩增反应技术检测和分析病原细菌的16S rRNA、gyrB、GAPDH、dan K和rpo D这5个看家基因的表达量。结果表明,经过PCR扩增效率筛选,5个基因均扩增出单一条带,且条带大小与预期产物相符,特异性较好,符合基本稳定性要求。利用ge Norm软件分析发现,GAPDH和rpo D稳定性最高,M值均为0.122。其余3个基因的表达稳定性依次为gyr B (M=0.17)dan K (M=0.325)16S rRNA (M=0.542)。在5个候选内参基因中,GAPDH和gyr B为病原细菌侵染芒果叶片下表达最稳定的基因,且不需要引入第三个基因(V_(2/3)=0.063)。NormFinder软件分析5个候选内参基因稳定性数值顺序依次为:gyr B (0.092)dan K (0.169)GAPDH(0.188)rpo D (0.235)16S rRNA (0.581)。Bestkeeper程序分析5个候选内参基因的标准差(SD)值都在0.86~0.79之间。综合以上结果发现GAPDH和gyr B基因的表达稳定性最好,能够作为病原细菌在侵染芒果叶片时的内参基因,更准确地校正定量结果。  相似文献   

10.
黄珊珊  莫小路  曾庆钱 《种子》2012,31(6):20-22,27
采用酶解去壁低渗法对线纹香茶菜[Isodon lophanthoides(Buch.-Ham.ex D.Don)Hara]的体细胞染色体进行核型分析。结果表明:线纹香茶菜的核型公式为2 n=2 X=36=22 m+12 sm+2 s,长度组成为2 n=36=L+17 M 2+16 M 1+2 S,染色体组型为"2 A"型。这一细胞学结果可作为线纹香茶菜与其它种的区分依据,同时也为其开发和利用奠定理论基础。  相似文献   

11.
正(一般图书)图书著录格式:[序号]主要作者.书名.出版地:出版社,出版年:引用页码.[1]黄顺祥,陈海平,刘峰,等.化学风险评估[M].北京:气象出版社,2017:86-90.[2]周诗健,王存忠,俞卫平.英汉汉英大气科学词汇[M].2版.北京:气象出版社,2015:155-156.[3]Jickells T D,An Z S.气候变化[M].董文杰,译.北京:气象出版社,2015:245-256.  相似文献   

12.
本研究以芥菜型油菜(Brassica juncea L.)核不育系1161A和温敏雄性不育系K121S的BCF1为作图群体,采用混合群体分组分析法(bulked segregant analysis,BSA)定位油菜温敏雄性不育系K121S的育性转换基因(Fc)。研究结果表明,从86对多态性SSR引物中获得了5个连锁标记:Ol11-G11a、Na10-F06、Na14-G10、CN48和Br GMS961,其中Ol11-G11a、Na14-G10和Na10-F06等3个SSR标记与K121S育性转换基因的遗传距离较近,分别为1.6 c M、11.0 c M和19.7 c M。本研究结果可为油菜温敏雄性不育系K121S的育性转换基因的图位克隆及其利用提供依据。  相似文献   

13.
竹叶兰和香港毛兰的核型分析   总被引:1,自引:0,他引:1  
采用压片法研究了竹叶兰〔Arundina graminifolia(D.Don) Hochr〕和香港毛兰〔Eria gagnepainii Hawkes et. Heller.〕的染色体数目和核型。结果表明:竹叶兰的染色体数目2n=40,有2条随体,其核型公式为:2n=2x=40=16m+22sm+2st,染色体相对长度组成为2L+18M2+18M1+2S;香港毛兰染色体数目2n=36,核型公式为2n=2x=36=28m+8sm,染色体相对长度组成为4L+18M2+12M1+2S。两者均为二倍体,染色体主要由中部和近中部着丝点染色体组成。核型分类前者为1A型,后者为2B型,都较为对称。  相似文献   

14.
贵州特有种子植物无子刺梨形态特征研究及分类学订正   总被引:1,自引:0,他引:1  
通过野外详细的调查观察澄清无子刺梨Rosa sterilis S.D.Shi的形态特征,并对光枝无子刺梨Rosa sterilis S.D.Shi var.leioclada M.T.An,Y.Z.Cheng et M.Zhong进行了归并.  相似文献   

15.
《种子萌发的生理生化》,何泽英等译江苏科技出版社1981年底出版,新华书店发行。原著《Physiology and Biochemistryof Seeds in Relation to Germination》由J.D.Bewley博士(加拿大Calgary大学)和M.Black博士(英国伦敦大学)合著,1978年由西德斯普林格出版公司(Springer—Verlag)  相似文献   

16.
Gossypium mustelinum [-(AD)4"] is one of five tetraploid species in Gossypium.Three pairs of nucleolar organizer regions (NOR) in (AD)4 were detected by FISH with 45S rDNA as a probe,they also were observed with genomic DNA (gDNA) from Gossypium D genome species as probes.Of the three NORs or GISH-NORs,one was super-major and other two were minor,which was distinctly different from other tetraploid cottons.  相似文献   

17.
83-8759-6465-7071-7879-8254-58第1期/No.1专题评述/Invited Reviews林木基因工程研究进展Recent Advances in Forest-tree Gene Engineering陈英(Chen Y.),何秋伶(He Q.L.),诸葛强(Zhuge Q.),黄敏仁(Huang M.R.),王明庥(Wang M.X.)转基因作物环境安全性研究进展Advances Study on Environmental Safety of Transgenic Crops刘娜(Liu N.),李葱葱(Li C.C.),徐文静(Xu W.J.),董英山(Dong Y.S.)植物耐盐相关基因及其耐盐机制研究进展Research Progress on the Identification of Salt-tolerance Related Genes and Molecula…  相似文献   

18.
报道中国贵州蔷薇科蔷薇属一新变种:光枝无子刺梨(Rosa sterilisS. D. Shi var. leioclada M. T. An,Y. Z. Cheng et M. Zhong)。  相似文献   

19.
玉米雄性不育的转育及应用研究   总被引:13,自引:0,他引:13  
沈菊英  张永泰 《作物学报》1990,16(2):168-175
测定了141个玉米自交系对雄性不育胞质的育性反应,其中有33个系同时测定了对 C 型和 S 型(M 型)的反应。结果得出,自330、白自330、多黄15、525、D 729等5系为两型的共同恢复系,大多数自交系对不育类型呈专效作用,表明两类不育型的遗传基础有差异。M 型与 S 型的育性反应基本一致。育性稳定性研究表明,C 型很稳定,不易受环境  相似文献   

20.
Since Graham R. L. and Sloan N. J. A. advanced the concept of the harmonious graph in 1980. Many such researching papers are published. This paper constructs a class of the graph-sieve graph S(n,t),and proves that the sieve graph S(2m+1,t) is harmonious when n=2m+1.  相似文献   

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