Rational design of high-yield and superior-quality rice
暂无分享,去创建一个
Qian Qian | Jiang Hu | Guojun Dong | Xingming Hu | Lichao Huang | Q. Qian | Guojun Dong | Yonghong Wang | D. Zeng | Jiayang Li | Zhixi Tian | Longbiao Guo | Guosheng Xiong | Yaolong Yang | Jie Xu | Jiayang Li | Yujia Leng | Jiang Hu | Guangheng Zhang | Lichao Huang | Jie Xu | Li Zhu | Yonghong Wang | Guosheng Xiong | Zhixi Tian | Dali Zeng | Guangheng Zhang | Zhenyu Gao | Longbiao Guo | Yuchun Rao | Yaolong Yang | Yujia Leng | Chuan Sun | Zhenyu Gao | Li Zhu | Yuchun Rao | Xingming Hu | Chuan Sun
[1] G. Hu,et al. Current Situation and Suggestions for Development of Two-Line Hybrid Rice in China , 2011 .
[2] Qian Qian,et al. Allelic diversities in rice starch biosynthesis lead to a diverse array of rice eating and cooking qualities , 2009, Proceedings of the National Academy of Sciences.
[3] D. Tilman,et al. Global food demand and the sustainable intensification of agriculture , 2011, Proceedings of the National Academy of Sciences.
[4] Yonghong Wang,et al. Towards molecular breeding and improvement of rice in China. , 2005, Trends in plant science.
[5] S. Carpenter,et al. Solutions for a cultivated planet , 2011, Nature.
[6] Liao Fu. Comparison of Grain Quality Between F_1 Hybrids and Their Parents in Indica Hybrid Rice , 2003 .
[7] Qian Qian,et al. Map-based cloning of the ALK gene, which controls the gelatinization temperature of rice , 2003, Science in China Series C: Life Sciences.
[8] K. Jena,et al. Development of Resistant Gene-Pyramided Japonica Rice for Multiple Biotic Stresses Using Molecular Marker-Assisted Selection , 2015 .
[9] M. Yano,et al. Hd1, a Major Photoperiod Sensitivity Quantitative Trait Locus in Rice, Is Closely Related to the Arabidopsis Flowering Time Gene CONSTANS , 2000, Plant Cell.
[10] Soon-Wook Kwon,et al. PCR Marker-Based Evaluation of the Eating Quality of Japonica Rice (Oryza sativa L.) , 2009, Journal of agricultural and food chemistry.
[11] E. Septiningsih,et al. Development of submergence-tolerant rice cultivars: the Sub1 locus and beyond. , 2009, Annals of botany.
[12] Fan Zhang,et al. Rice breeding in the post-genomics era: from concept to practice. , 2013, Current opinion in plant biology.
[13] M. Ellis,et al. Semidwarf (sd-1), “green revolution” rice, contains a defective gibberellin 20-oxidase gene , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[14] Kaworu Ebana,et al. Deletion in a gene associated with grain size increased yields during rice domestication , 2008, Nature Genetics.
[15] Qifa Zhang,et al. Genetic and molecular bases of rice yield. , 2010, Annual review of plant biology.
[16] W. Zhai,et al. TAC1, a major quantitative trait locus controlling tiller angle in rice. , 2007, The Plant journal : for cell and molecular biology.
[17] Tadashi Hirasawa,et al. New approach for rice improvement using a pleiotropic QTL gene for lodging resistance and yield , 2010, Nature communications.
[18] A SNP marker for the selection of HfrDrd, a Hessian fly-response gene in wheat , 2015, Molecular Breeding.
[19] Y. Xing,et al. Aberrant splicing of intron 1 leads to the heterogeneous 5' UTR and decreased expression of waxy gene in rice cultivars of intermediate amylose content. , 1998, The Plant journal : for cell and molecular biology.
[20] G. Saade,et al. From concept to practice. , 2010, Obstetrics and gynecology.
[21] P. Gross. Achievements and prospects. , 1978, Science.
[22] M. Gu,et al. Stable Inheritance of the Antisense Waxy Gene in Transgenic Rice with Reduced Amylose Level and Improved Quality , 2003, Transgenic Research.
[23] Q. Qian,et al. Breeding high-yield superior quality hybrid super rice by rational design , 2016 .
[24] A. Linnemann,et al. RICE‐EATING QUALITY AMONG CONSUMERS IN DIFFERENT RICE GRAIN PREFERENCE COUNTRIES , 2008 .
[25] Peng Wang,et al. A major QTL, Ghd8, plays pleiotropic roles in regulating grain productivity, plant height, and heading date in rice. , 2011, Molecular plant.
[26] B. Chauhan,et al. Optimizing Hill Seeding Density for High-Yielding Hybrid Rice in a Single Rice Cropping System in South China , 2014, PloS one.
[27] Lei Wang,et al. Natural variation in Ghd7 is an important regulator of heading date and yield potential in rice , 2008, Nature Genetics.
[28] J. Zhuang,et al. Super Hybrid Rice Breeding in China: Achievements and Prospects , 2007 .
[29] Yu Liang,et al. Proteomic Analysis of the Response of Liangyoupeijiu (Super High‐Yield Hybrid Rice) Seedlings to Cold Stress , 2006 .
[30] Qifa Zhang. Strategies for developing Green Super Rice , 2007, Proceedings of the National Academy of Sciences.
[31] Ling Jiang,et al. QTL detection for eating quality of cooked rice in a population of chromosome segment substitution lines , 2004, Theoretical and Applied Genetics.
[32] Yasunori Nakamura,et al. Expression Profiling of Genes Involved in Starch Synthesis in Sink and Source Organs of Rice , 2005 .
[33] Jonathan H. Crouch,et al. Marker-Assisted Selection in Plant Breeding: From Publications to Practice , 2008 .
[34] J. Peleman,et al. Breeding by design. , 2003, Trends in plant science.
[35] Q. Qian,et al. Cytokinin Oxidase Regulates Rice Grain Production , 2005, Science.
[36] Makoto Matsuoka,et al. Genes offering the potential for designing yield-related traits in rice. , 2013, Current opinion in plant biology.
[37] Qifa Zhang,et al. Rice functional genomics research: progress and implications for crop genetic improvement. , 2012, Biotechnology advances.
[38] Bin Han,et al. GS3, a major QTL for grain length and weight and minor QTL for grain width and thickness in rice, encodes a putative transmembrane protein , 2006, Theoretical and Applied Genetics.
[39] Zhikang Li,et al. Pyramiding three bacterial blight resistance genes (xa5, xa13 and Xa21) using marker-assisted selection into indica rice cultivar PR106 , 2001, Theoretical and Applied Genetics.
[40] Jian Wang,et al. Dissecting yield-associated loci in super hybrid rice by resequencing recombinant inbred lines and improving parental genome sequences , 2013, Proceedings of the National Academy of Sciences.