Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (8): 1405-1409.doi: 10.3724/SP.J.1006.2009.01405
• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Previous Articles Next Articles
LIU Meng-Meng,SANG Xian-Chun,LING Ying-Hua,DU Peng,ZHAO Fang-Ming,YANG Zheng-Lin,HE Guang-Hua*
| [1] Leister D. Chloroplast research in the genomic age. Trends Genet, 2003, 19: 47-56 [2] Mochizuki N, Brusslan J A, Larkin R, Nagatani A, Chory J. Arabidopsis genomes uncoupled 5(GUN5) mutant reveals the involvement of mg-chelatase H subunit in plastid-to-nucleus signal transduction. Proc Natl Acad Sci USA, 2001, 98: 2053-2058 [3] Robert M L, Jose M A, Joseph R E. GUN4, a regulator of chlorophyll synthesis and intracellular signaling. Science, 2003, 299: 902-906 [4] Stern D B, Hanson M R, Barkan A. Genetics and genomics of chloroplast biogenesis: Maize as a model system. Trends Plant Sci, 2004, 9: 293-301 [5] Beale S. Green genes gleaned. Trends Plant Sci, 2005, 10: 309-312 [6] Dong F-G(董凤高), Zhu X-D(朱旭东), Xiong Z-M(熊阵民), Cheng X-H(程式华), Sun Z-X(孙宗修), Min S-K(闵绍楷). Breeding of a photo-thermoperiod sensitive genie male sterile indica rice with a pale-green-leaf marker. Chin Rice Sci (中国水稻科学), 1995, 9(2): 65-70 (in Chinese with English abstract) [7] Wu D X, Shu Q Y, Xia Y W. In vitro mutagenesis induced novel thermo photoperiod sensitive genic male sterile indica rice with green-revertible xanthan leaf color marker. Euphytica, 2002, 123: 195-202 [8] Yutaka S, Ryouhei M, Minoru N, Hiroyasu Y, Makoto K.Mendel’s green cotyledon gene encodes a positive regulator of the chlorophyll-degrading pathway. Proc Natl Acad Sci USA, 2007, 104: 14169-14174 [9] Gong H-B(龚红兵), Chen L-M (陈亮明), Diao L-P(刁立平), Sheng S-L(盛生兰), Lin T-Z(林添资), Yang T-N(杨图南), Zhang R-X(张荣铣), Cao S-Q(曹树青), Zhai H-Q(翟虎渠), Dai X-B(戴新宾), Lu W(陆巍), Xu X-M(许晓明). Genetic analysis of chlorophyll-b less mutant in rice and its related characteristics. Sci Agric Sin (中国农业科学), 2001, 34(6): 686-689 (in Chinese with English abstract) [10] ABE T, Matsuyama T, Sekido S, Yamaguchi I, Yoshida S, Kameya T. Chlorophyll deficient mutants of rice demonstrated the deletion of a DNA fragment by heavy-ion irradiation. J Radiat Res, 2002, 43: 157-161 [11] Wang C, He B, Xun M, Wan J. Tagging and mapping of a gene controlling yellowish-green leaf. Rice Genet Newslett, 2003, 20: 35 [12] Wang J(王军), Wang B-H(王宝和), Zhou L-H(周丽慧), Xu J-F(徐洁芬), Gu M-H(顾铭洪), Liang G-H(梁国华). Genetic analysis and molecular mapping of a new yellow-green leaf gene ygl-2 in rice. Chin Rice Sci (中国水稻科学), 2006, 20: 455-459(in Chinese with English abstract) [13] Huang X-Q(黄晓群), Wang P-R(王平荣), Zhao H-X(赵海新), Dong X-J(邓晓建). Genetic analysis and molecular mapping of a novel chlorophyll-deficit mutant gene in rice. Chin Rice Sci (中国水稻科学), 2007, 21(4): 355-359 (in Chinese with English abstract) [14] Jung K H, Hur J, Ryu C H,Choi Y, Chung Y Y, Miyao A, Hirochika H, An G. Characterization of a rice chlorophyll-deficient mutant using the T-DNA gene-trap system. Plant Cell Physiol, 2003, 44: 463-472 [15] Lee S, Kim J H, Enu S Y, Lee C H, Hirochika H, Gynheung A. Differential regulation of chlorophyll a oxygenase genes in rice. Plant Mol Biol, 2005, 57: 805-818 [16] Wu Z M, Zhang X, He B, Diao L P, Sheng S L, Wang J L, Guo X P, Su N, Wang L F, Jiang L, Wang C M, Zhai H Q, Wan J M.A chlorophyll-deficient rice mutant with impaired chlorophyllide esterification in chlorophyll biosynthesis. Plant Physiol, 2007, 145: 29-40 [17] Lichtenthaler H K. Chlorophylls and carotenoids: pigments of photosynthetic biomembranes. Meth Enzymol, 1987, 48: 350-382 [18] Wang G-L(王关林), Fang H-Y(方宏筠). Plant Gene Engineering (植物基因工程), 2nd edn. Beijing: Science Press, 2002. pp 742-744 (in Chinese) [19] Sang X-C(桑贤春), He G-H(何光华), Zhang Y(张毅), Yang Z-L(杨正林), Pei Y(裴炎). The simple gain of templates of rice genomes DNA for PCR. Hereditas (遗传), 2003, 25(6): 705-707 (in Chinese with English abstract) [20] Panaud O, Chen X, McCouch S R. Development of microsatellite markers and characterization of simple sequence length polymorphism (SSLP) in rice (Oryza sativa L.). Mol Gen Genet, 1996, 259: 297-607 [21] Ayumi T, Ryouichi T. Chlorophyll metabolism. Curr Opin Plant Biol, 2006, 9: 248-255 [22] Hirochika H, Guiderdoni E, An G, Hsing Y, Moo Y E, Han C D, Upadhyaya N, Ramachandran S, Zhang Q F, Pereira A, Sundaresan V, Heilenug. Rice mutant resources for gene discovery. Plant Mol Biol, 2004, 54: 325-334 [23] He B(何冰), Liu L-L(刘玲珑), Zhang W-W(张文伟), Wan J-M(万建民). Plant leaf color mutants. Plant Physiol Commun (植物生理学通讯), 2006, 42(1): 1-9 (in Chinese with English abstract) [24] Dong Y J, Dong W Q, Shi S Y, Jin Q. Identification and genetic analysis of a thermo sensitive seeding colour mutant in rice. Breed Sci, 2001, 51: 1-4 [25] Liu Y-J(刘友杰) Chlorotic mutants induced by laser He-Ne and its genetic expression. Appl Laser (应用激光), 1988, 8(4): 177-187 (in Chinese with English abstract) [26] Iwata N, Satoh H, Omura T. Studies on the trisomics in rice plants (Oryza sativa L.): VII. On some maker genes located on chromosome 2 and their sequence on the linkage map. J Fac Agric Kyushu Univ, 1984, 29: 139-144 [27] Iwata N, Omura T. Studies on the trisomics in rice plants (Oryza sativa L.): III. Relation between trisomics and genetic linkage groups. Jpn J Breed, 1975, 25: 363-368 [28] Zhang H, Li J, Yoo J H, Yoo S C, Cho S H, Koh H J, Seo H S, Paek N C. Rice chlorine-1 and chlorine-9 encode ChlD and ChlI subunits of Mg-chelatase, a key enzyme for chlorophyll synthesis and chloroplast development. Plant Mol Biol, 2006, 6: 325-337 [29] Morita R, Kusaba M, Yamaguchi H, Amano E, Miyao A, Hirochika H, Nishimura M. Characterization of chlorophyllide a oxygenase (CAO) in rice. Breed Sci, 2005, 55: 361-364 [30] Koumoto Y, Shimada T, Kondo M, Nishimura I H, Nishimura M. Chloroplasts Have a Novel Cpn10 in Addition to Cpn20 as Co-chaperonins in Arabidopsis thaliana. J Biol Chem, 2001, 276: 29688-29694 |
| [1] | Jing Xiu-Qing, Cai Yong-Duo, Deng Ning, Zhao Xiao-Dong, Zhai Fei-Hong, Zeng Qun. Identification and expression pattern analysis of RopGEF family genes in Chenopodium quinoa [J]. Acta Agronomica Sinica, 2026, 52(1): 28-43. |
| [2] | YANG Si-Jie, DU Qi-Di, CHAI Shou-Xi, XIONG Hong-Chun, XIE Yong-Dun, ZHAO Lin-Shu, GU Jia-Yu, GUO Hui-Jun, LIU Lu-Xiang. Genetic mapping of mutant genes on flag leaf length and width in wheat [J]. Acta Agronomica Sinica, 2025, 51(6): 1548-1557. |
| [3] | MA Jun, CHEN Feng, YIN Gui-Hong, HU Hai-Yan, WEI Xue-Ning, XIE Chao-Jie, KONG Ling-Rang. Progress and prospects in genetic breeding for Fusarium crown rot resistance in wheat [J]. Acta Agronomica Sinica, 2025, 51(10): 2559-2569. |
| [4] | ZHANG Zhi-Yuan, ZHOU Jie-Guang, LIU Jia-Jun, WANG Su-Rong, WANG Tong-Zhu, ZHAO Cong-Hao, YOU Jia-Ning, DING Pu-Yang, TANG Hua-Ping, LIU Yan-Lin, JIANG Qian-Tao, CHEN Guo-Yue, WEI Yu-Ming, MA Jian. Identification and verification of low-tillering QTL based on a new model of genetic analysis in wheat [J]. Acta Agronomica Sinica, 2024, 50(6): 1373-1383. |
| [5] | WANG Tian-Ning, FENG Ya-Lan, JU Ji-Hao, WU Yi, ZHANG Jun, MA Chao. Whole genome identification and analysis of GRFs transcription factor family in wheat and its ancestral species [J]. Acta Agronomica Sinica, 2024, 50(4): 897-813. |
| [6] | SONG Jian, XIONG Ya-Jun, CHEN Yi-Jie, XU Rui-Xin, LIU Kang-Lin, GUO Qing-Yuan, HONG Hui-Long, GAO Hua-Wei, GU Yong-Zhe, ZHANG Li-Juan, GUO Yong, YAN Zhe, LIU Zhang-Xiong, GUAN Rong-Xia, LI Ying-Hui, WANG Xiao-Bo, GUO Bing-Fu, SUN Ru-Jian, YAN Long, WANG Hao-Rang, JI Yue-Mei, CHANG Ru-Zhen, WANG Jun, QIU Li-Juan. Genetic analysis of seed coat and flower color based on a soybean nested association mapping population [J]. Acta Agronomica Sinica, 2024, 50(3): 556-575. |
| [7] | WANG Ling, ZHANG Yan-Ping, QI Yan-Ni, WANG Lei, LI Yu-Xiao, TAN Mei-Lian, WANG Wei. Divergent evolutionary pattern of P5CS gene family and drought tolerance verification of LusP5CS1 in linseed [J]. Acta Agronomica Sinica, 2024, 50(10): 2515-2527. |
| [8] | LI Yu-Jia, XU Hao, YU Shi-Nan, TANG Jian-Wei, LI Qiao-Yun, GAO Yan, ZHENG Ji-Zhou, DONG Chun-Hao, YUAN Yu-Hao, ZHENG Tian-Cun, YIN Gui-Hong. Genetic analysis of elite stripe rust resistance genes of founder parent Zhou 8425B in its derived varieties [J]. Acta Agronomica Sinica, 2024, 50(1): 16-31. |
| [9] | DING Hong-Yan, FENG Xiao-Xi, WANG Bai-Yu, ZHANG Ji-Sen. Evolution and relative expression pattern of LRRII-RLK gene family in sugarcane Saccharum spontaneum [J]. Acta Agronomica Sinica, 2023, 49(7): 1769-1784. |
| [10] | LIU Ye, LI Yue, YUAN Ming-Yang, WEI Nai-Cui, GUAN Pan-Feng, ZHAO Jia-Jia, WU Bang-Bang, ZHENG Xing-Wei, HAO Yu-Qiong, QIAO Ling, ZHENG Jun. Physiological characteristics and genetic research of rolled leaf mutant1 (RL1) in wheat (Triticum aestivum L.) [J]. Acta Agronomica Sinica, 2023, 49(12): 3399-3410. |
| [11] | DU Qi-Di, GUO Hui-Jun, XIONG Hong-Chun, XIE Yong-Dun, ZHAO Lin-Shu, GU Jia-Yu, ZHAO Shi-Rong, DING Yu-Ping, SONG Xi-Yun, LIU Lu-Xiang. Gene mapping of apical spikelet degeneration mutant asd1 in wheat [J]. Acta Agronomica Sinica, 2022, 48(8): 1905-1913. |
| [12] | WANG Hao-Rang, ZHANG Yong, YU Chun-Miao, DONG Quan-Zhong, LI Wei-Wei, HU Kai-Feng, ZHANG Ming-Ming, XUE Hong, YANG Meng-Ping, SONG Ji-Ling, WANG Lei, YANG Xing-Yong, QIU Li-Juan. Fine mapping of yellow-green leaf gene (ygl2) in soybean (Glycine max L.) [J]. Acta Agronomica Sinica, 2022, 48(4): 791-800. |
| [13] | LIU Lei, ZHAN Wei-Min, DING Wu-Si, LIU Tong, CUI Lian-Hua, JIANG Liang-Liang, ZHANG Yan-Pei, YANG Jian-Ping. Genetic analysis and molecular characterization of dwarf mutant gad39 in maize [J]. Acta Agronomica Sinica, 2022, 48(4): 886-895. |
| [14] | ZHAO Mei-Cheng, DIAO Xian-Min. Phylogeny of wild Setaria species and their utilization in foxtail millet breeding [J]. Acta Agronomica Sinica, 2022, 48(2): 267-279. |
| [15] | JIANG Jian-Hua, ZHANG Wu-Han, DANG Xiao-Jing, RONG Hui, YE Qin, HU Chang-Min, ZHANG Ying, HE Qiang, WANG De-Zheng. Genetic analysis of stigma traits with genic male sterile line by mixture model of major gene plus polygene in rice (Oryza sativa L.) [J]. Acta Agronomica Sinica, 2021, 47(7): 1215-1227. |
|
||