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1.
《保鲜与加工》2015,(2):81-82
<正>[1]刘丽丹,吴仲珍,吴日章.枇杷采后贮藏复合保鲜技术研究进展[J].保鲜与加工,2013,13(6):60-64.Liu L D,Wu Z Z,Wu R Z.Research progress on combined preservation methods of loquat fruit during postharvest storage[J].Storage and Process,2013,13(6):60-64.[2]聂继云.苹果的营养与功能[J].保鲜与加工,2013,13(6):56-59.Nie J Y.Nutritional components of apple and their physiologi-  相似文献   

2.
<正>[1]姜红波,童金华,林启训,等.茶树菇多酚氧化酶动力学特性研究[J].保鲜与加工,2006,6(5):23-24.Jiang H B,Tong J H,Lin Q X,et al.Study on reaction kinetic characteristics of polyphenol oxidase from Agrocyb eaegerita[J].Storage and Process,2006,6(5):23-24.[2]孔凡春,陆胜民,王群.MAP保鲜去壳雷竹笋最初研究[J].保鲜与加工,2003,3(6):24-25.Kong F C,Lu S M,Wang Q.Study on storage of peeled bamboo shoots(Phyllostachys praecox)with modified atmosphere  相似文献   

3.
中国秸秆资源“5F”利用方式的效益对比探析   总被引:9,自引:3,他引:6  
张燕 《中国农学通报》2009,25(23):45-51
参考文献: [1] 聂影,杨红强,苏世伟.中国原木进口国别结构与木材资源安全[J].林业经济,2008.3 [2] 沈文星,周定国.秸秆人造板的产业化问题[J] .林业科学,2007.3 [3] 吴树栋.中国农作物秸秆综合利用现状[J].人造板通讯,2005(8) [4] Volker E. Stockmann. Strawboard As An Emerging M aterial-PartⅠ:Historic perspectives and Global Opportunities. Pr occeedings of Symposium on utilization of agricultural and forestry residues.2001,Nanjing,50~59 [5] Dingguo Zhou. The development of Utilizing Agricultural Straws in China. Proceedings of Symposium on utilization of agricultural and forestry residues. 2001.Nanjing,1-11 [6] 张晓文,赵改宾,杨仁全,王影.农作物秸秆在循环经济中的综合利用[J].农业工程学报,2006(10) [7] 于文吉.生物质资源农作物秸秆应用于人造板工业的可行性分析[J].木材工业,2006(2) [8] 周定国,张洋.我国农作物秸秆材料产业的形成与发展[J].木材工业,2007.1  相似文献   

4.
ively ex-pressed in the stroma of lung adenocarcinoma but not in bronchio-loalveolar carcinoma.A useful marker of invasive growth[J].AmJ Clin Pathol,2006,125(6):847-854. [33]Tummalapalli P,Spomar D,Gondi CS,et al.RNAi-mediated ab-rogation of Cathepsin B…  相似文献   

5.
正图书著录格式:[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].第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   

6.
《种子》2018,(7)
正图书著录格式:[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].第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   

7.
《种子》2021,(5)
正图书著录格式:[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   

8.
《种子》2018,(12)
正图书著录格式:[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].第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   

9.
《种业导刊》2014,(11):15
<正>中国科技核心期刊中国北方优秀期刊中国学术期刊光盘版收录期刊美国《化学文摘》(CA)收录期刊英国《国际农业与生物科学研究中心》(CABI)收录期刊主管:天津市农业科学院主办:国家农产品保鲜工程技术研究中心(天津)国际标准连续出版物号:ISSN1009-6221国内统一连续出版物号:CN12-1330/S邮发代号:6-146双月刊,逢单月10日出版,单价10元,全年60元。《保鲜与加工》杂志是我国农产品采后技术研究领域的科技核心期刊,据中国知网的最新统计结果,复合影响因子为0.983。本刊主要报道农产品保鲜与加工相关领域基础理论、新技术、新工艺、新  相似文献   

10.
[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   

11.
《农产品加工·学刊》设有专题论述、试验研究、工艺探讨、分析测试、技术装备、应用推广、行业资讯、互动平台等栏目。欢迎业内人士涌跃投稿。稿件文字力求言简意赅,字数以3000~5000字为妥,文稿请附中、英文的题名、作者、单位,邮政编码和作者简介(姓名、性别、出生年、籍贯、职称/职务、研究方向。科研基金资助项目请注明基金项目名称和项目编号。参考文献要求:①图书:[序号]著者姓名.书名[M]版次(第一版可不标),出版地:出版者,出版年.页次;②期刊:[序号]著者姓名.论文篇名[J].刊名,出版年,卷号(期号):页次。稿件请用邮件发到ncpjgxk@16…  相似文献   

12.
<正>论文集著录格式:[序号]主要责任者.文献题目[C]//论文集主要责任者.论文题名:出版地:出版者,出版年:页码.[1]钟文发.非线性规则应用[C]//赵玮.运筹学的理论与应用:中国运筹学会第五届大会论文集.西安:西安电子科技大学出版社,1996:487-490.[2]辛希孟.信息技术与信息服务国际研讨会论文集:A集[C].北京:中国社会科学出版社,1994.[3]张筑生.微分半动力系统的不变集[D].北京:北京大学数学系数学研究所,1983.  相似文献   

13.
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   

14.
<正>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].第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   

15.
<正>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].第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   

16.
[Objective]Synthesize the luteolin-chrome complex,ascertain its molecular structure,and investigate its ability to scavenge DPPH free radical. [Methods]Absolute ethyl alcohol was taken as the reagent,and the luteolin-chrome complex was synthesized at pH 9. 76 and80 ℃; After the structure was ascertained via IR,UV,TG-GTA and elemental analysis,effects of the complex to scavenge DPPH free radical were investigated by HPLC method and spectrophotometry. [Results] The composition of luteolin-chrome complex was: C15H9O6Cr(COOCH3)2(H2O)2·2H2O; the scavenging effect of luteolin-chrome was stronger than that of luteolin. [Conclusions]The combination of luteolin and Cr3 +enhances the bioactivity of luteolin to resist DPPH.  相似文献   

17.
《种子》2020,(2):72-72
论文集著录格式:[序号]主要责任者.文献题目[C]//论文集主要责任者.论文题名:出版地:出版者,出版年:页码.[1]钟文发.非线性规则应用[C]//赵玮.运筹学的理论与应用:中国运筹学会第五届大会论文集.西安:西安电子科技大学出版社,1996:487-490.[2]辛希孟.信息技术与信息服务国际研讨会论文集:A集[C].北京:中国社会科学出版社,1994.[3]张筑生.微分半动力系统的不变集[D].北京:北京大学数学系数学研究所,1983.  相似文献   

18.
《种子》2015,(3):90
论文集著录格式:[序号]主要责任者.文献题目[C]//论文集主要责任者.论文题名:出版地:出版者,出版年:页码.[1]钟文发.非线性规则应用[C]//赵玮.运筹学的理论与应用:中国运筹学会第五届大会论文集.西安:西安电子科技大学出版社,1996:487-490.[2]辛希孟.信息技术与信息服务国际研讨会论文集:A集[C].北京:中国社会科学出版社,1994.[3]张筑生.微分半动力系统的不变集[D].北京:北京大学数学系数学研究所,1983.  相似文献   

19.
《种子》2012,(2):121
论文集著录格式:[序号]主要责任者.文献题目[C]//论文集主要责任者.论文题名:出版地:出版者,出版年:页码.[1]钟文发.非线性规则应用[C]//赵玮.运筹学的理论与应用:中国运筹学会第五届大会论文集.西安:西安电子科技大学出版社,1996:487-490.[2]辛希孟.信息技术与信息服务国际研讨会论文集:A集[C].北京:中国社会科学出版社,1994.[3]张筑生.微分半动力系统的不变集[D].北京:北京大学数学系数学研究所,1983.  相似文献   

20.
[Objective] To detect chlorogenic acid,macranthoidin B and dipsacoside B in FLOS LONICERAE grown in Guizhou Province by UPLC-PDA-ELSD,and to investigate the quality of FLOS LONICERAE grown in Guizhou Province. [Methods] ACQUITYUPLC BEH C18 chromatographic column( 2. 1 mm × 100 mm,1. 7 μm) was adopted; mobile phase was acetonitrile( A)- 0. 4% acetic acid water( B); gradient elution was as follows: 0- 2 min,7% A; 2- 2. 3 min,7%- 28% A; 2. 3- 10 min,28% A; 10- 10. 5 min,28%- 7% A; gradient flow rate was as follows: 0- 2 min,0. 35 m L / min; 2- 2. 3 min,0. 35- 0. 25 m L / min; 2. 3- 2. 6 min,0. 25- 0. 15 m L / min; 2. 6- 2. 8min,0. 15- 0. 1 m L / min; 2. 8- 4 min,0. 1- 0. 2 m L / min; 4- 4. 3 min,0. 2- 0. 3 m L / min; 4. 3- 4. 5 min,0. 3- 0. 35 m L / min; 4. 5-10. 5 min,0. 35 m L / min; PDA( ultraviolet detector) was used to detect the chlorogenic acid( 330 nm wavelength); ELSD( evaporative light- scattering detector) was used to detected the macranthoidin B and dipsacoside B; temperature of the drift tube was 60 ℃; sprayer was48 ℃; gas pressure was 137. 9 k Pa; and column temperature was 50 ℃. [Results] Chlorogenic acid,macranthoidin B and dipsacoside B showed good linear relationship within the ranges of 0. 304 5- 1. 522 5 μg / m L( R2= 0. 999 4),0. 449- 1. 436 8 μg / m L( R2= 0. 999 3)and 0. 044 6- 0. 223 μg / m L( R2= 0. 999 4),respectively. [Conclusions] This method could accurately detect the contents of chlorogenic acid,macranthoidin B and dipsacoside B in FLOS LONICERAE grown in Guizhou Province,effectively shorten the measurement time and save reagents,so that it was suitable to detect the quality of FLOS LONICERAE grown in Guizhou Province.  相似文献   

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