|Table of Contents|

Research Progress on the Radiosensitivity of Legume Crops for Sprouting(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2011年03期
Page:
511-517
Research Field:
Publishing date:

Info

Title:
Research Progress on the Radiosensitivity of Legume Crops for Sprouting
Author(s):
XIAO Ling-li KANG Yu-fan
College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China
Keywords:
Legume crops for sprouting Radiosensitivity Radiation dose
PACS:
S565.1
DOI:
10.11861/j.issn.1000-9841.2011.03.0511
Abstract:
The lack of good legume crops for sprouting has become the choke point of the rapid developing of sprout industry in China. Irradiation breeding is an important breeding method. Besides safe, convenient, and economic, radiation mutation could cause high mutation frequency and make the mutative traits stable early. So it can shorten breeding time and create new genotype. Mutation breeding is an effective method in selecting and breeding legume crop varieties for sprouting. Radiosensitivity research is the premise and foundation of irradiation breeding. Radiosensitivity research of legume crops for sprouting could improve its breeding efficiency. This paper stated the research progress of the radiosensitivity indexes, radiosensitivity differences among varieties, the analyse method of radiosensitivity, the mechanism of radiosensitivity among varieties, and the improvement of radiation treatment method.This paper also discussed the research prospect of radiosensitivity of legume crops for sprouting so that can provide the theoretical and technical support of irradiation breeding for legume crops that good for sprouting.

References:

[1]潘紫霄.大豆发芽后营养成分的变化[J].农产品加工,2004(9):22-23. (Pan Z X. The nutrition change of soybean after sprouting[J]. Farm Products Processing, 2004(9):22-23.)

[2]刘红开,康玉凡.芽用豆类作物诱变效应研究进展[J].大豆科学,2010,29(6):1077-1080. (Liu H K, Kang Y F.Advances on mutagenic effects of legumes for bean sprouts[J]. Soybean Science, 2010, 29(6):1077-1080.)

[3]花登峰,赵团结,张黎萍.小粒专用大豆品种遗传改良研究进展[J].杂粮作物,2005,25(5):311-313.(Hua D F,Zhao T J,Zhan L P.Review on genetic improvement of small soybean varieties in special use [J]. Rain Fed Crops,2005,25(5):311-313.)

[4]王琳清.辐射诱变改良作物的综合技术及应用[J].科技导报,1992(11):12,24-26.(Wang L Q. Synthetical technique & application of induction mutation for crop improvement[J]. Science and Technology Review, 1992(11):12,24-26.)

[5]冯志杰.高等植物的辐射敏感性[J].中国核科技报告,1992(S3):1-10.(Feng Z J. The radiosensitivity of higher plants[J]. China Nuclear Science and Technology Report,1992(S3):1-10.)

[6]余章清. γ射线引变大豆品种几个问题的研究[J]. 豫西农专学报,1987(2):19-24.(Yu Z Q. Studies on soybean varieties induced by γ-ray [J]. Journal of Henan University of Science and Technology, 1987(2):19-24.)

[7]赵经荣,战明奎.夏大豆辐射诱变类型与频率的研究[J]. 大豆科学,1986,5(1):1-9.(Zhao J R, Zhang M K.Studies on mutation types and frequency of summer soybean(Glycine max) induced by 60Coγ ray [J]. Soybean Science, 1986,5(1):1-9.)

[8]李国权,李梦,陈光.大豆品种间辐射敏感性差异的研究[J].吉林农业大学学报,1986,8(4):56-61.Studies on radiosensitivity difference among soybean varieties[J].Journal of Jilin Agricultural University, 1986,8(4):56-61.)

[9]陈学珍,谢皓,燕平,.大豆种子辐照处理后早期世代农艺性状的综合评价及遗传变异[J].分子植物育种,2004,2(1):61-69.(Chen X Z,Xie H,Yan P,et al. Phenotypes and genetic variation of agronomic traits of soybean irradiated by γ-ray[J]. Molecular Plant Breeding,2004,2(1):61-69.)

[10]郭房庆,李群,顾瑞琦.大豆Bragg超结瘤突变系辐射敏感性的改变[J]. 辐射研究与辐射工艺学报, 1997,15(2):100-104.(Guo F Q,Li Q,Gu R Q.The Variation of radiosensitivity of soybean supernodulated mutants[J].Journal of Radiation Research and Radiation Processing,1997,15(2):100-104.)

[11]宋道军,徐登益,万兆良,.修复抑制剂对不同辐射敏感性作物生物学效应的影响[J].核农学报,1997,11(4):215-220.(Song D J,Xu D Y,Wang Z L,et al. The influence of caffeine and EDTA post treatment on biological effect of soybean and rape seedling[J]. Acta Agriculturae Nucleatae Sinica, 1997,11(4):215-220.)

[12]康玉凡,马鹤林,陈有军,.我国苜蓿品种的适宜辐射剂量[J].内蒙古草业,1998(1):1-6.(Kang Y F,Ma H L,Chen Y J,et al. Suitable dosages of Chinese alfalfavarieties[J].Journal of Inner Mongolia Prataculture, 1998(1):1-6.)

[13]马鹤林,海棠,王秀兰,.苜蓿不同品种辐射的生物学效应及适宜辐射剂量的研究[J]. 内蒙古草业,1993(1):28-33.(Ma H L,Hai T,Wang X L,et al. biological effect by radiation and suitable dosages of different alfalfa?varieties[J]. Journal of Inner Mongolia Prataculture,1993(1) :28-33.)

[14]乔玉梅.不同箭舌豌豆品种对60Co-γ射线辐射敏感性及其生物学效应的研究[J], 内蒙古草业,1997(Z1):55-59.(Qiao Y M. Studies on radiation sensitivity and suitable dosages of different vicia sativa varieties to 60Co-γ ray[J].Journal of Nei Mongol Prataculture, 1997(Z1):55-59.)

[15]林音,司述明,刘宏跃.以VID50作指标快速预测种子繁殖植物的适宜辐照剂量[J].核农学通报,1988,9(1):13-14.(Lin Y, Si S M, Liu H Y. Forecasting suitable dosages of seed propagation plants rapidly by using VID50[J].Nuclear and Agricultural Bulletin,1988,9(1):13-14.)

[16]刘琼英,邝炎华,郑粤美.食用性植物种子辐射敏感性的研究[J],华南农业大学学报, 1994,15(4):85-91.(Liu Q Y, Kuang Y H, Zheng Y M.Studies on the radiosensitivity of edible vegetable seeds[J]. Journal of South China Agricultural University, 1994,15(4):85-91.)

[17]丘冠英.种子辐射敏感性及其影响因素的研究进展[J].原子能农业译丛,1982(2):1-5.(Qiu G Y. Research progress of Seed radiosensitivity and its effect factors[J].Nuclear and Agricultural Bulletin,1982(2):1-5.)

[18]Muszynski S,Hiraiwa S,Tanaka A. Monitoring radiation damage in the seedlings of adzuki bean (Vigna angularis(Willd.)Ohwi&Ohashi) after seed irradiation with gamma rays[J].Japanese Journal of Breeding,1980, 30(3):225-230.

[19]Kon E, Ahmed O H, Saamin S,et al.Gamma radiosensitivity study on long bean (Vigna sesquipedalis)[J]. American Journal of Applied Sciences 2007,4 (12): 1090-1093.

[20]弥晓菊,马跃,郭桂云. 60Co-γ射线辐射番茄种子对根尖细胞遗传学效应的影响[J]. 黑龙江商学院学报(自然科学版)1998,14(3):46-51.(Mi X J, Ma Y, Guo G Y. Effects of 60Co-γ ray radiation on tomatos root tip cells with radiating tomato seeds[J]. Journal of Heilongjiang Commercial College(Natural Sciences Edition), 1998,14(3):46-51.)

[21]康玉凡,马鹤林.苜蓿品种的辐射敏感性及模糊聚类分析[R].中国核科技报告, 1994.(Kang Y F, Ma H L. The radiosensitivity of alfalfa?varieties and the fuzzy concentration analysis[J]. China Nuclear Science1994.)

[22]谈慕真,周娴,顾文祥,.应用微核测定豌豆诱变效应[J].上海农业学报, 1991,7(4):33-37.(Tan M Z, Zhou X, Gu W X.Use of micronuclear analysis for determining mutagenic efficiency of gamma ray on pea(Pisum sativum?L.)[J]. Acta Agriculturae Shanghai, 1991,7(4):33-37.)

[23]Ukai Y, Yamashita A. Varietal difference in gamma-rays induced chromosome aberrations in soybean[J]. Japanese Journal of Genetics, 1980,55:225-234.

[24]李栒.60Co-γ射线对蚕豆干种子的辐射效应[J]. 湖南农业大学学报(自然科学版),1985(1):17-24.(Li X.The Effect of 60Co Gamma radiation on seed of vicia faba[J]. Journal of Hunan Agricultural University(Natural Sciences Edition),1985(1):17-24.

[25]李淑娴.蚕豆根尖细胞不同剂量率的微核效应研究[J]. 遗传学报,1986,13(5):357-361. (Li S X. Studies on the effects of micronucleus induced by different dose rates in the root tip cells of vicia faba[J]. Acta Genetica Sinica, 1986,13(5):357-361.)

[26]康玉凡,乔玉梅.植物辐射敏感性研究概况[J]. 内蒙古草业,1999(1):1-4.(Kang Y K, Qiao Y M. Research survey of plants radiosensitivity[J]. Journal of Inner Mongolia Prataculture, 1999(1):1-4.)

[27]陈光,刘英华,史焕芝.大豆种子辐射损伤效应的研究[J].吉林农业科学,1991(3):83-86.(Chen G, Liu Y H, Shi H Z. Studies on radiation damage effect of soybean seed[J].Journal of Jilin Agricultural Sciences, 1991(3):83-86.)

[28]李贤勇,万兆良,徐登益.大豆和油菜对60Co-γ射线敏感性差异机理研究[J].西南农业大学学报, 1994,16(4):365-368.(Li X Y, Wang Z L, Xu D Y. The mechanism for the difference in sensitivity to 60Co-γ rays between Glycine Max?Merrill and Brassica Napus?L.[J].Journal of Southwest Agricultural University, 1994,16(4):365-368.)

[29]宋道军,徐登益,万兆良,.修复抑制剂对不同敏感性作物超氧化物歧化酶、过氧化氢酶和过氧化物酶活性的影响[J].核农学报,1997,11(2):93-96.(Song D J, Xu D Y Wang Z L,et al. Influence of radiation damage repair inhibitor on superoxide dismutase (SOD), catalase (CAT) and oeroxidase (POD) in different sensitive crops[J].Acta Agriculturae Nucleatae Sinica,1997,11(2):93-96.)

[30]Zhang J B, Huang W N. Advances on physiological and ecological effects of cadmium on plants[J].Acta Ecologica Sinica, 2000, 20(5): 515-520.

[31]MaГoMeДo B M A(赵光译).植物辐射敏感性与某些新陈代谢指标的相关性[J].原子能农业译丛, 1982(1):33-37. (MaГoMeДo B M A(translated by Zhao G). The relationship between radiosensitivity and some metabolism indexes in plants[J]. Nuclear and Agricultural Bulletin, 1982(1):33-37.)

[32]梁艳荣,胡晓红,张颍力,.植物过氧化物酶生理功能研究进展[J].内蒙古农业大学学报,2003,24(2):110-113.(Liang Y R, Hu X H, Zhang Y L,et al. Progress on physiological function research of plant peroxidase[J].Journal of Inner Mongolia Agricultural University,2003, 24(2):110-113.)

[33]马鹤林,海棠,申庆宏,. 89个豆科牧草种和品种适宜辐射剂量及敏感性分析[J].中国草地, 1995(2):6-11.(Ma H L, Hai T, Sheng Q H,et al. Suitable dosages and radiation sensitivities for 89 forage legumes[J].Grassland of China, 1995(2):6-11.)

[34]何丽玫,徐正华,李晓林.γ射线与激光处理大豆对酯酶同工酶的效应研究[J]. 激光生物学, 1993,2(3):313-316.(He L N, Xu Z H, Li X L.Studies on the influence of γ-ray and laser tretment on esterase isoenzyme in soybean[J].Laser Biology, 1993,2(3):313-316.)

[35]冯志杰,王琳清.普通小麦品种辐射敏感性及其诱变效应的研究[J].中国核科技报告,1986:1-19.(Feng Z J, Wang L Q.Studies on varietal radiosensitity and genetical effect inTriticum aestivum?L. [J]. China Nuclear Science and Technology Report,1986:1-19.)

[36]宋道军,徐登益,万兆良,.辐射损伤修复抑制剂对大豆油菜幼苗膜脂过氧化的影响[J]. 中国油料作物学报,1996,18(2):41-44.(Song D J, Xu D Y Wang Z L,et al.Influence of irradiation damage repair inhibior on membrane lipid peroxidation in different sensitive crops[J]. Chinese Journal of Oil Crop Sciences, 1996,18(2):41-44.)

[37]何莉,华劲松,徐永蕾. 60Co-γ射线对蚕豆M1诱变效应的研究[J].西昌学院学报(自然科学版), 2007,21(2):24-27.(He L, Hua J S, Xu Y L. Study on the mutagenic effects of 60Co-γ ray to faba bean M1[J].Journal of Xichang College(Natural Science Edition), 2007,21(2):24-27.)

[38]申慧芳,李国柱. 60Co-γ射线对红小豆苗期叶绿素含量和光合特性的影响[J]. 山西农业大学学报(自然科学版), 2008,28(2):176-179.(Sheng H F, Li G Z. Effects of 60Co-γ ray on chlorophyll content and photosynthetic characteristics of adzuki?bean at the seedling stage[J].Journal of Shanxi Agricultural University(Natural Science Edition), 2008,28(2):176-179.

[39]马飞,冯敏,高岳,.蔬菜种子的辐射敏感性与超弱发光动力学分析[J].核农学报,2003,17(5):383-38.(Ma F, Feng M, Gao Y,et al. Vegetable seed radiosensitivity and kinetic analysis of super-weak bioluminescence[J].Acta Agriculturae Nucleatae Sinic,2003,17(5):383-387.)

[40]宋道军,徐登益,万兆良,.咖啡因和EDTA后处理对不同辐射敏感性作物核酸代谢的影响[J].辐射研究与辐射工艺学报,1997,15(4):233-237.(Song D J, Xu D Y Wang Z L,et al. Influence of irradiation and cafe EDTA on the metabolism of nucleus acid of the different radiosensitive crops[J].Journal of Radiation Research and Radiation Processing,1997,15(4):233-237.)

[41]邱庆树, 鲁蓉蓉.提高花生辐射突变率的研究[J]. 花生科技,1981(2):32-34, 1981(3):28-32, 1983(2):22-25. (Qiu Q S, Ru R R. Studies on improving radiation mutation rate in peanut[J].Journal of Peanut Science, 1981(2):32-34, 1981(3):28-32, 1983(2):22-25.)

[42]袁玉春.大豆品种间辐射敏感性差异机制的研究[J]. 核农学报,1990,4(2):71-74.(Yuan Y C.Studies on the mechanism of radiosensitivity among soybean varieties[J]. Acta Agriculturae Nucleatae Sinica, 1990,4(2):71-74.)

[43]刘振声,丘泉发,陈东立,.利用显微放射自显影技术对γ射线诱导的蚕豆根尖细胞非按期DNA合成的研究[J].植物学报,1989,31(8):611-615.(Liu Z S, Qiu Q F,Chen D L,et al.Autoradiograph study of gamma-ray induced unscheduled DNA synthesis in bean root meristem cells[J].Journal of Integrative Plant Biology, 1989,31(8):611-615.)

[44]丘泉发.γ射线对高等植物细胞DNA诱导合成效应的研究[J]. 核农学通报,1989(4):153-155.(Qiu Q F. Studies on γ ray effect of DNA synthesize inducement of high plants[J]. Nuclear and Agricultural Bulletin,1989(4):153-155.)


Memo

Memo:
-
Last Update: 2014-09-12