专论与研究

水稻茎秆性状的研究进展

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  • 中国水稻研究所,浙江 杭州 310006

网络出版日期: 2012-03-20

A Review on Rice Culm Research

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Online published: 2012-03-20

摘要

茎秆性状是影响水稻产量的一个重要因子,特别是对于水稻抗倒伏能力品种的筛选,具有重要研究意义。本文就水稻茎秆性状的各个方面进行了综述,并对其在抗倒伏能力中的作用进行了探讨,为水稻高产抗倒育种提供一定的思路。

关键词: 水稻; 茎秆; 高产; 倒伏

本文引用格式

江云珠, 沈希宏, 曹立勇 . 水稻茎秆性状的研究进展[J]. 中国稻米, 2012 , 18(2) : 1 -7 . DOI: 10.3969/j.issn.1006-8082.2012.02.001

参考文献



[1]  Heisey P A,Aquino P,Hernandez V,et al. The Current World Wheat Situation[A]. //CIMMYT World Wheat Facts and Trends,CIMMYT,1996.

[2]  Pinthus M J. Lodging in wheat,barley,and oats: The phenomenon,its causes,and preventative measures[J]. Adv Agron,1973,25:210-256.

[3]  Won J G,Hirahara Y,Yoshida T,et al. Selection of rice lines using SPGP seedling method for direct seeding[J]. Plant Prod Sci,1998,1:280-285

[4]  张忠旭,陈温福,杨振玉,等. 水稻抗倒伏能力与茎秆物理性状的关系及其对产量的影响[J]. 沈阳农业大学学报,1999,30(2):31-85.

[5]  黄艳玲,石英尧,申广勒,等. 水稻茎秆性状与抗倒伏及产量因子的关系[J]. 中国农学通报,2008,24(4):203-206.

[6]  梁康迳,林文雄,王雪仁,等. 水稻茎秆抗倒性的遗传及基因型×环境互作效应研究[J].福建农业学报,2000,15(3):9-15.

[7]  张丰转,金正勋,马国辉,等. 水稻抗倒性与茎秆形态性状和化学成分含量间相关分析[J]. 作物杂志,2010(4):15-19.

[8]  Ookawa T, Ishihara K. Genetic characteristics of the breaking strength of the basal culm related to lodging resistance in a cross between Koshihikari and Chugoku 117[J]. Japanese Journal of Crop Science,1997,66(4):603-609.

[9]  段传人,王伯初,王凭青. 水稻茎秆的结构及其性能的相关性[J]. 重庆大学学报,2003,26(11):92-95.

[10]  杨惠杰,杨仁崔,李义珍,等. 水稻茎秆性状与抗倒性的关系[J]. 福建农业大学学报,2000,15(2):1-7.

[11]  华泽田,郝宪彬,沈枫,等. 东北地区超级杂交粳稻倒伏性状的研究[J]. 沈阳农业大学学报,2003,34(3):161-164.

[12]  马均,马文波,田彦华,等. 重穗型水稻植株抗倒伏能力的研究[J]. 作物学报,2004,30(2):143-148.

[13]  邹德堂,秋太权,赵宏伟,等. 水稻倒伏指数与其它性状的相关和通径分析[J]. 东北农业大学学报,1997,28(2):112-118.

[14]  肖应辉,罗利华,闻晓燕,等. 水稻品种倒伏指数QTL分析[J]. 作物学报,2005,31(3):348-354.

[15]  穆平,李自超,李春平,等. 水、旱条件下水稻茎秆主要抗倒伏性状的QTL分析[J]. 遗传学报,2004,31(7):719-723.

[16]  Kashiwagi T,Togawa E,Hirotsu N,et al. Improvement of lodging resistance with QTLs for stem diameter in rice (Oryza sativa L.) [J]. Theor Appl Genet,2008,117:749-757.

[17]  徐正进,陈温福,张龙步,等. 水稻直立穗性状评价与利用研究进展[J]. 沈阳农业大学学报,1995,26(4):335-341.

[18]  Chaturvedi G S,Misra C H,Singh C N,et al. Physiological flash flooding[M]. International Rice Research Institute,Los Banos,1995:79-96.

[19]  刘立军,袁莉民,王志琴,等. 旱种水稻倒伏生理原因分析与对策的初步研究[J]. 中国水稻科学,2002,16(3):225-230.

[20]  Epstein E B. Silicon[J]. Annu Rev Plant Physiol and Plant Mol Biol,1999,50:641-664.

[21]  Li Y,Qian Q,Zhou Y,et al. BRITTLE CULM1,which encodes a COBRA-like protein,affects the mechanical properties of rice plants[J]. Plant Cell,2003,15:2020-2031.

[22]  Reddy N,Yang Y. Structure and properties of high-quality natural cellulose Wbers from corn stalks[J]. Polymer,2005,46:5494-5500.

[23]  Ma J F,Yamaji N. Silicon uptake and accumulation in higher plants[J]. Trends Plant Sci,2006,11:392-397.

[24]  Ishimaru K,Togawa E,Ookawa T,et al. New target for rice lodging resistance and its effect in a typhoon[J]. Planta,2008,227:601-609.

[25]  邓接楼,付国良,晏燕花. 硅肥对水稻茎秆SiO2含量与抗折力的影响[J]. 安徽农业科学,2011,39(5):2696-2698.

[26]  彭世彰,张正良,庞桂斌. 控制灌溉条件下寒区水稻茎秆抗倒伏力学评价及成因分析[J]. 农业工程学报,2009,25(1):6-10.

[27]  吴娜,张婷婷,周惠萍,等. 品种多样性种植对水稻茎秆化学成分的影响[J]. 云南农业大学学报,2008,23(2):184-194.

[28]  Li X J,Yang Y,Yao J L,et al. FLEXIBLE CULM 1 encoding a cinnamyl-alcohol dehydrogenase controls culm mechanical strength in rice[J]. Plant Mol Biol,2009,69:685-697.

[29]  Ookawa T,Tokunori H,Masahiro Y,et al. New approach for rice improvement using a pleiotropic QTL gene for lodging resistance and yield. Nature communications,2010. Doi: 10.1038/ncomms1132.

[30]  向波,刘丕庆,孙仙奇,等. 水稻茎秆节间弹性模量和拉伸强度极限的研究[J]. 安徽农业科学,2007,35(18):5388-5389.

[31]  胡建东,鲍雅萍. 作物茎秆抗倒伏强度测定技术研究[J]. 河南农业大学学报,2000,34(1):77-80.

[32]  Ookawa T,lshibara K.Varietal diference of physical characteristic of the culm related to lodging resistance in paddy rice[J]. Japan J Crop Sci,1992,61(31):419-425.

[33]  王勇,李朝恒. 小麦品种抗倒性的研究进展[J]. 山东农业大学学报,1996(4):503-508.

[34]  申广勒. 水稻抗倒伏生理机制与评价方法研究[D]. 安徽农业大学,2008.

[35]  Murphy H C,Petr F ,Frey K J. Lodging resistance studies in oats I,comparing methods of testing and sources for staw strength[J]. Agron J,1958,50: 609-611.

[36]  Moldenhauer P M,Moldenhauer K A. A method to evaluate lodging potential in rice cultivars based on elastic stability theory[J]. Australian J Experim Agric,1994,34:953-957.

[37]   王健,朱锦懋,林青青,等. 小麦茎秆结构和细胞壁化学成分对抗压强度的影响[J]. 科学通报,2006,51 (6):1-9.

[38]  Meyer M L,Bloom P R. Lithium metaborate fusion for silicon,calcium ,magnesium ,and potassium analysis of wild rice[J]. Plant Soil,1993,153:281-285.

[39]  朱智伟,林榕辉. 碱氧化消化法快速测定谷壳中的硅[J]. 中国水稻科学,1990,4 (2) :89-91.

[40]  周明全,张志宏,赵敏,等. 水稻株高构成因素的QTL剖析[J]. 武汉植物学研究,2003,21(1):22-26.

[41]  张秋英,欧阳由男,戴伟民,等. 水稻基部伸长节间性状与倒伏相关性分析及QTL定位[J]. 作物学报,2005,31(6):713-717.

[42]  滕胜,钱前,曾大力,等. 水稻穗颈维管束及穗部性状的QTL分析[J]. 植物学报,2002,44(3):301-306.

[43]  Dai W M,Zhang K Q,Duan B W,et al. Genetic dissection of silicon content in different organs of rice (Oryza Sativa L.) [J]. Crop Sci,2005,45:1345-1352.

[44]  吴季荣,戴伟民,张克勤,等. 2007. 应用重组自交系群体检测水稻茎秆和剑叶硅含量QTL[J]. 中国农业科学,40(1):13-18.

[45]  Kashiwagi T,Ishimaru K. Identification and functional analysis of a locus for improvement of lodging resistance in rice[J]. Plant Physiol,2004,134:676-683.

[46]  杨窑龙,饶玉春,李赓觅,等. 水稻茎秆相关性状遗传分析[J]. 分子植物育种,2011,9 (2):160-168.

[47]  Zhang M,Zhang B C,Qian Q,et al. Brittle Culm 12,a dual-targeting kinesin-4 protein,controls cell-cycle progression and wall properties in rice[J]. Plant J,2010,63(2):312-328

[48]  Hirano K,Kotake T,Kamihara K,et al. Rice BRITTLE CULM 3 (BC3) encodes a classical dynamin OsDRP2B essential for proper secondary cell wall synthesis[J]. Planta,2010,232:95-108.

[49]  Tanaka K,Murata K,Yamazaki M,et al. Three Distinct Rice Cellulose Synthase Catalytic Subunit Genes Required for Cellulose Synthesis in the Secondary Wall[J]. Plant Physiol,2003,133(1):73-83.

[50]  Zhang B C,Deng L W,Qian Q,et al. A missense mutation in the transmembrane domain of CESA4 affects protein abundance in the plasma membrane and results in abnormal cell wall biosynthesis in rice[J]. Plant Molec Biol,2009,71(4-5):509-524.

[51]  Aoki T,Kameya N,Nakamura I. A cDNA clone from rice accelerated overgrowth (ao) mutant encoding xyloglucan-related protein homolog[J]. Rice Genet Newsl,1997,14:133-136.

[52]  Tanahara N ,S Sato. Gene analysis for the uppermost culm diameter in Taichung 65 having a big uppermost culm (Buc) derived from a Japanese rice cultivar,Aikawa 1,and pleiotropic effects of the gene on several traits[J]. Breed Sci,1998,48(Suppl. 1):77.

[53]  Kotake T,Aohara T,Hirano K,et al. Rice Brittle culm 6 encodes a dominant-negative form of CesA protein that perturbs cellulose synthesis in secondary cell walls[J]. J Experim Bot,2011,62(6):2053-2062.

[54]  Zhou Y H,Li S B,Qian Q,et al. BC10,a DUF266-containing and Golgi-located type II membrane protein,is required for cell-wall biosynthesis in rice (Oryza sativa L.) [J]. Plant J,2009,57(3):446-462.

[55]  Takeda T,Suwa Y,Suzuki M,et al. The OsTB1 gene negatively regulates lateral branching in rice[J]. Plant J,2003,33(3): 513-520.

[56]  Satoh H,Iwata N and Omura T. Linkage analysis in rice,On the loci of dripping-wet leaf genes,drp-5,drp-6,drp-7 and drp-8(t) [J]. Japan J Breed,1986,36 (S1): 352-353.

[57]  Tripathi S C,Sayre K D,Kaul J N,et al. Growth and morphology of spring wheat (Triticum aestivum L.) culms and their association with lodging:effects of genotypes,N levels and ethephon[J]. Field Crop Res,2003,84:271-290.
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