GUO Yi fan,YANG Shu ping,ZHANG Hong ji,et al.Research Advances of Low Phytic Acid Crop Breeding[J].HEILONGJIANG AGRICULTURAL SCIENCES,2015,(07):158-161.[doi:10.11942/j.issn1002-2767.2015.07.0158]
低植酸作物育种研究进展
- Title:
- Research Advances of Low Phytic Acid Crop Breeding
- 文章编号:
- 1002-2767(2015)07-0158-04
- Keywords:
- crops; low phytic acid; mutant; phosphorus
- 分类号:
- S5
- 文献标志码:
- A
- 摘要:
- 植酸广泛存在于作物种子中,由于植酸中的磷不能被非反刍动物有效吸收利用,而从粪便排出造成了磷资源的极大浪费和环境污染。近年来,利用理化诱变与转基因技术已成功地获得了玉米、大麦、水稻和大豆等作物的低植酸突变体。为进一步研究低植酸作物育种的现状,对植酸的简史、生物合成过程、低植酸突变体的培育及遗传特征、低植酸突变体农艺性状进行了综述,并对低植酸作物的应用前景进行了简要分析。
- Abstract:
- Phytic acid widely exists in crop seed,phosphorus in phytic acid cannot be effectively utilized by nonruminant animals,and from the waste discharge the waste caused by phosphorus resources,or even cause environmental pollution.In recent years,the use of physical and chemical mutagenesis and transgenic technology had been successfully obtained corn,barley,rice and soybean crops such as low phytic acid mutants.In order to further research the low phytic acid plant breeding,a brief history of phytic acid,biosynthesis and low phytic acid mutant breeding and genetic characteristics,low phytic acid mutant agronomic traits were reviewed,and the application prospect of low phytic acid plants were analyzed in brief.
参考文献/References:
[1]Alnwick D.Combating micronutrient defiencie:problems and perspectives[J].The Proceedings of Nutr Society,1998,57:137-147. [2]Underwood B.Perspectives from micronutrient malnutrition elimination programme[J].Bulletin of the World Health Organization,1998,76:37-42, [3]Gregorio G B.Progress in breeding for trace minerals in staple crops[J].Nutrition,2002,132:500s-502s. [4]Maga J A.Phytate:its chemistry occurrence food interactions nutritional significance and methods of analysis[J].Journal of Agricultural and Food Chemistry,1982,30:1-9. [5]Jolinson L F,Tate M E.Sturcture of ‘phytic acids’[J].Canadian Journal of Chemilal Engineering,1969,47:63-73 [6]Ogawa M,Tanaka K,Kasai Z.Energydispersive xray analysis of phytin globoids in aleurone particles of developing rice grains[J].Soil Science Plant Nutrition,1979,25:437-448. [7]Ogawa M,Tanaka K,Kasai Z.Accumulatio of phosphorus,magnesium and potassium in Developing rice grains:followed by electron microprobe Xray analysis focusing on the aleurone layer[J].Plant and Cell Physiology,1979,20:19-27. [8]Reddy N R,Sathe S K,Salunkhe D K.Phytates in legumes and cereals[J].Advances in Food Research,1982,28:1-91. [9]Stephens L,Radenberg T,Thiel U.The detection,purification,structural characterization,and metabolism of diphosphoinositol pentakis phosphate(s) [J].Journal of Biological Chemistry,1993,268:40094015. [10]Febles C I,Arias A,Hardisson A,RodriguezAlvarez C,Sierra A.Phytic acid level on edible grain derivatives in the Canary Islands(gofio and frangollo) [J].European Food Research Technology,2000,210:346-348. [11]Lott J N A,Greenwood J S,Batten L.Mechanisms and regulation of mineral nutrient storage during seed development[M]//Kigel J,Galili G eds.Seed Development and Germination.Marcel Dekker,New York,1995:215-235. [12]Raboy V.Accumulation and storage of phosphate and minerals[M]//Larkins B A,Vasil I K.Cellular and Molecular Biology of Plant Seed Development.Kluwer Plulishers,Dordrecht,1997:441-477. [13]Johnson L F,Tate M E.Structure of phytic acid[J].Canadian Journal of Chemistry,1969,47:63-73.[14]Rasmussen S K,Hatzack F.Identifieation of tow lowphytate barley(Hordeum vulgare L.)grain mutants TLC and genetic analysis[J].Hereditas,1998,29:107-112. [15]Raboy V,Gerbasi P F,Young K A,et al.Origin and seed phenotype of maize low phytic acid11 and low phytic acid21[J].Plant Physiology,2000,124:355368. [16]Yoshida K T,Wada T,Koyama H,et al.Temporal and spatial patterns of accumulation of the transcript of MyoInositol1Phosphate synthase and phytin containing particles during seed development in rice[J].Plant Physiology,1999,119:65-72. [17]Oltmans S E,Fehr W R,Welke G A,et al.Inheritance of lowphytate phosphorus in sobean[J].Crop Science,2004,44:433-435. [18]Pihi R,Panzeri D,Gavazzi G,et al.Phenotypic,genetic and molecular charaeterization of a maize low phytic acid mutant(lpa241)[J].Theoretical and Applied Genetics,2004,107:980-987. [19]马磊,李盼,陈哲,等.低植酸玉米自交系的筛选及其遗传分析[J].中国农业科学,2011,44(3):447-455. [20]高庆华,孟义江,张萃,等.玉米低植酸自交系的鉴定及其连锁分子标记的初步筛选[J].作物学报,2013,39(5):935-942.[21]Larson S R,Young K A,Cook A,et al.Linkage mapping of two mutations that reduce phytic acid content of barley grain[J].Theoretical and Applied Genetics,1998,97:141-146. [22]李佰权,姜莹,付旭军,等,大豆低植酸突变体GmlpaZC2的精细定位[J].浙江农业学报,2011,23(5): 870-875.
相似文献/References:
[1]王宇先.齐齐哈尔市作物生长季农业气象分析[J].黑龙江农业科学,2014,(06):27.
WANG Yuxian.Agricultural Meteorological Analysis on Crop Growth Season in Qiqihar City[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(07):27.
[2]赵利坤,张英.作物连作障碍的影响因素及防治对策[J].黑龙江农业科学,2013,(12):18.
ZHAO Li-kun,ZHANG Ying.Influencing Factors and Countermeasures of Continuous Cropping Obstacles[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(07):18.
[3]杨晓贺.农业生物多样性防控作物病虫害的研究进展[J].黑龙江农业科学,2014,(02):133.
YANG Xiao-he.Research Progress of Agricultural Biodiversity on the Control of Crop Diseases and Pests[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(07):133.
[4]万海霞,王新谱,余帮强.频振式杀虫灯在胡麻等作物上的应用效果调查[J].黑龙江农业科学,2015,(05):54.[doi:10.11942/j.issn1002-2767.2015.05.0054]
WAN Hai-xia,WANG Xin-pu,YU Bang-qiang.Survey on the Application Effect of Frequency-vibrancy Month-killing Lamp in Production of Flax and Other Crops[J].HEILONGJIANG AGRICULTURAL SCIENCES,2015,(07):54.[doi:10.11942/j.issn1002-2767.2015.05.0054]
[5]任自力,张 显.蔬菜作物需水规律研究进展[J].黑龙江农业科学,2015,(06):136.[doi:10.11942/j.issn1002-2767.2015.06.0136]
REN Zi li,ZHANG Xian.Research Progress of Vegetable Crops Water Demand Regulation[J].HEILONGJIANG AGRICULTURAL SCIENCES,2015,(07):136.[doi:10.11942/j.issn1002-2767.2015.06.0136]
[6]高中超,张喜林,马星竹.植物体内硫素的生理功能及作用研究进展[J].黑龙江农业科学,2009,(05):153.[doi:10.11942/j.isn1002-2767.2009.05.0153]
GAOZhong-chao,ZHANG Xi-lin,MAXing-zhu.Research Advances in Physiological Function of Element Sulphur in Plants[J].HEILONGJIANG AGRICULTURAL SCIENCES,2009,(07):153.[doi:10.11942/j.isn1002-2767.2009.05.0153]
[7]高中超,孙磊,王丽华,等.黑龙江省涝渍的成因和危害及治理措施[J].黑龙江农业科学,2019,(11):142.[doi:10.11942/j.issn1002-2767.2019.11.0142]
GAO Zhong-chao,SUN Lei,WANG Li-hua,et al.Causes,Harms and Control Measures of Waterlogging in Heilongjiang Province[J].HEILONGJIANG AGRICULTURAL SCIENCES,2019,(07):142.[doi:10.11942/j.issn1002-2767.2019.11.0142]
[8]李文跃,曹士亮,于滔,等.作物转基因技术、种植现状及安全性[J].黑龙江农业科学,2020,(10):124.[doi:10.11942/j.issn1002-2767.2020.10.0124]
[J].HEILONGJIANG AGRICULTURAL SCIENCES,2020,(07):124.[doi:10.11942/j.issn1002-2767.2020.10.0124]
[9]赵伟.低植酸作物品种的选育与展望[J].黑龙江农业科学,2011,(03):12.
ZHAO Wei.Crop Breeding and Prospect for Low Phytic Acid Varieties[J].HEILONGJIANG AGRICULTURAL SCIENCES,2011,(07):12.
备注/Memo
哈尔滨市科技创新人才研究专项基金资助项目(2014RFQYJ184);黑龙江省农业科学院创新工程青年人才资助项目