Acta Agronomica Sinica ›› 2020, Vol. 46 ›› Issue (8): 1157-1165.doi: 10.3724/SP.J.1006.2020.92059
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
CHEN Ri-Rong1,ZHOU Yan-Biao2,3,WANG Dai-Jun5,ZHAO Xin-Hui3,TANG Xiao-Dan3,XU Shi-Chong4,TANG Qian-Ying3,FU Xing-Xue3,WANG Kai3,LIU Xuan-Ming1,*(),YANG Yuan-Zhu1,2,3,4,*()
[1] |
黄忠明, 周延彪, 唐晓丹, 赵新辉, 周在为, 符星学, 王凯, 史江伟, 李艳峰, 符辰建, 杨远柱. 基于CRISPR/Cas9技术的水稻温敏不育基因tms5突变体的构建. 作物学报, 2018,44:844-851.
doi: 10.3724/SP.J.1006.2018.00844 |
Huang Z M, Zhou Y B, Tang X D, Zhao X H, Zhou Z W, Fu X X, Wang K, Shi J W, Li Y F, Fu C J, Yang Y Z. Construction of tms5 mutants in rice based on CRISPR/Cas9 technology. Acta Agron Sin, 2018,44:844-851 (in Chinese with English abstract).
doi: 10.3724/SP.J.1006.2018.00844 |
|
[2] | 周延彪, 赵新辉, 唐晓丹, 周在为, 庄楚雄, 杨远柱. 基于CRISPR/Cas9技术的水稻反光敏不育基因csa突变体的获得. 杂交水稻, 2018,33(6):68-74. |
Zhou Y B, Zhao X H, Tang X D, Zhou Z W, Zhuang C X, Yang Y Z. Acquisition of mutants of the reverse photoperiod-sensitive genic male sterility gene csa in rice based on CRISPR/Cas9 technology. Hybrid Rice, 2018,33(6):68-74 (in Chinese with English abstract). | |
[3] | Zhou H, Zhou M, Yang Y Z, Li J, Zhu L Y, Jiang D G, Dong J F, Liu Q J, Gu L F, Zhou L Y, Feng M J, Qin P, Hu X C, Song C L, Shi J F, Song X W, Ni E D, Wu X J, Deng Q Y, Liu Z L, Chen M S, Liu Y G, Cao X F, Zhuang C X. RNase ZS1 processes UbL40 mRNAs and controls thermosensitive genic male sterility in rice. Nat Commun, 2014,5:1-9. |
[4] | 周海, 周明, 杨远柱, 曹晓风, 庄楚雄. RNase ZS1加工UbL40 mRNA控制水稻温敏雄性核不育. 遗传, 2014,36:1274. |
Zhou H, Zhou M, Yang Y Z, Cao X F, Zhuang C X. RNase ZS1 processes UbL40 mRNA and controls thermosensitive genic male sterility in rice. Hereditas (Beijing), 2014,36:1274 (in Chinese with English abstract). | |
[5] | Belhaj K, Chaparro-Garcia A, Kamoun S, Patron N J, Nekrasov V. Editing plant genomes with CRISPR/Cas9. Curr Opin Biotech, 2015,32:76-84. |
[6] |
Baltes N J, Voytas D F. Enabling plant synthetic biology through genome engineering. Trends Biotechnol, 2015,33:120-131.
doi: 10.1016/j.tibtech.2014.11.008 pmid: 25496918 |
[7] |
Li M, Li X, Zhou Z, Wu P, Fang M, Pan X, Lin Q, Luo W, Wu G, Li H. Reassessment of the four yield-related genes Gn1a, DEP1, GS3 and IPA1 in rice using a CRISPR/Cas9 system. Front Plant Sci, 2016,7:377.
pmid: 27066031 |
[8] |
Sun Y, Jiao G, Liu Z, Zhang X, Li J, Guo X, Du W, Du J, Francis F, Zhao Y, Xia L. Generation of high-amylose rice through CRISPR/Cas9-mediated targeted mutagenesis of starch branching enzymes. Front Plant Sci, 2017,8:298.
doi: 10.3389/fpls.2017.00298 pmid: 28326091 |
[9] |
Zhou Y B, Liu C, Tang D Y, Lu Y, Wang D, Yang Y Z, Gui J S, Zhao X Y, Li L G, Tang X D, Yu F, Li J L, Liu L L, Zhu Y H, Lin J Z, Liu X M. The receptor-like cytoplasmic kinase STRK1 phosphorylates and activates CatC, thereby regulating H2O2 homeostasis and improving salt tolerance in rice. Plant Cell, 2018,30:1100-1118.
doi: 10.1105/tpc.17.01000 pmid: 29581216 |
[10] | Wang H, Chu Z, Ma X, Li R, Liu Y. A high through-put protocol of plant genomic DNA preparation for PCR. Acta Agron Sin, 2013,39:1200-1205. |
[11] | 姜树坤, 张喜娟, 王嘉宇, 张凤鸣. 水稻幼穗-颖花发育的研究进展. 植物遗传资源学报, 2012,13:1018-1022. |
Jiang S K, Zhang X J, Wang J Y, Zhang F M. Research advancement on young panicle and spikelet development in rice (Oryza sativa L.). J Plant Genet Resour, 2012,13:1018-1022 (in Chinese with English abstract). | |
[12] | Zhou Y B, Liu H, Zhou X C, Yan Y Z, Du C Q, Li Y X, Liu D R, Zhang C S, Deng X L, Tang D Y, Zhao X Y, Zhu Y H, Lin J Z, Liu X M. Over-expression of a fungal NADP(H)-dependent glutamate dehydrogenase PcGDH improves nitrogen assimilation and growth quality in rice. Mol Breed, 2014,34:335-349. |
[13] | 李希陶, 刘耀光. 基因组编辑技术在水稻功能基因组和遗传改良中的应用. 生命科学, 2016,28:1243-1249. |
Li X T, Liu Y G. Genome editing technology for functional genomics and genetic improvement in rice. Chin Bull Life Sci, 2016,28:1243-1249 (in Chinese with English abstract). | |
[14] |
Zhou H, He M, Li J, Chen L, Huang Z F, Zheng S Y, Zhu L Y, Ni E D, Jiang D G, Zhao B R, Zhuang C X. Development of commercial thermo-sensitive genic male sterile rice accelerates hybrid rice breeding using the CRISPR/Cas9-mediated TMS5 editing system. Sci Rep, 2016,6:1-12.
pmid: 28442746 |
[15] |
Svitashev S, Schwartz C, Lenderts B, Young J K, Ciqan A M. Genome editing in maize directed by CRISPR-Cas9 ribonucleoprotein complexes. Nat Commun, 2016,7:13274.
doi: 10.1038/ncomms13274 pmid: 27848933 |
[16] |
Wang Y P, Cheng X, Shan Q W, Zhang Y, Liu J X, Gao C X, Qiu J L. Simultaneous editing of three homoeoalleles in hexaploid bread wheat confers heritable resistance to powdery mildew. Nat Biotechnol, 2014,32:947-951.
doi: 10.1038/nbt.2969 pmid: 25038773 |
[17] |
Jacobs T B, LaFayette P R, Schmitz R J, Parrott W A. Targeted genome modifications in soybean with CRISPR/Cas9. BMC Biotechnol, 2015,15:16.
doi: 10.1186/s12896-015-0131-2 pmid: 25879861 |
[18] | Zirkle C. Some forgotten records of hybridization and sex in plants 1716-1739. J Hered, 1932,23:433-447. |
[19] | Stiles W. A short history of the plant sciences. Nature, 1942,150:672-673. |
[1] | TIAN Tian, CHEN Li-Juan, HE Hua-Qin. Identification of rice blast resistance candidate genes based on integrating Meta-QTL and RNA-seq analysis [J]. Acta Agronomica Sinica, 2022, 48(6): 1372-1388. |
[2] | ZHENG Chong-Ke, ZHOU Guan-Hua, NIU Shu-Lin, HE Ya-Nan, SUN wei, XIE Xian-Zhi. Phenotypic characterization and gene mapping of an early senescence leaf H5(esl-H5) mutant in rice (Oryza sativa L.) [J]. Acta Agronomica Sinica, 2022, 48(6): 1389-1400. |
[3] | ZHOU Wen-Qi, QIANG Xiao-Xia, WANG Sen, JIANG Jing-Wen, WEI Wan-Rong. Mechanism of drought and salt tolerance of OsLPL2/PIR gene in rice [J]. Acta Agronomica Sinica, 2022, 48(6): 1401-1415. |
[4] | ZHENG Xiao-Long, ZHOU Jing-Qing, BAI Yang, SHAO Ya-Fang, ZHANG Lin-Ping, HU Pei-Song, WEI Xiang-Jin. Difference and molecular mechanism of soluble sugar metabolism and quality of different rice panicle in japonica rice [J]. Acta Agronomica Sinica, 2022, 48(6): 1425-1436. |
[5] | YAN Jia-Qian, GU Yi-Biao, XUE Zhang-Yi, ZHOU Tian-Yang, GE Qian-Qian, ZHANG Hao, LIU Li-Jun, WANG Zhi-Qin, GU Jun-Fei, YANG Jian-Chang, ZHOU Zhen-Ling, XU Da-Yong. Different responses of rice cultivars to salt stress and the underlying mechanisms [J]. Acta Agronomica Sinica, 2022, 48(6): 1463-1475. |
[6] | YANG Jian-Chang, LI Chao-Qing, JIANG Yi. Contents and compositions of amino acids in rice grains and their regulation: a review [J]. Acta Agronomica Sinica, 2022, 48(5): 1037-1050. |
[7] | DENG Zhao, JIANG Nan, FU Chen-Jian, YAN Tian-Zhe, FU Xing-Xue, HU Xiao-Chun, QIN Peng, LIU Shan-Shan, WANG Kai, YANG Yuan-Zhu. Analysis of blast resistance genes in Longliangyou and Jingliangyou hybrid rice varieties [J]. Acta Agronomica Sinica, 2022, 48(5): 1071-1080. |
[8] | YANG De-Wei, WANG Xun, ZHENG Xing-Xing, XIANG Xin-Quan, CUI Hai-Tao, LI Sheng-Ping, TANG Ding-Zhong. Functional studies of rice blast resistance related gene OsSAMS1 [J]. Acta Agronomica Sinica, 2022, 48(5): 1119-1128. |
[9] | ZHU Zheng, WANG Tian-Xing-Zi, CHEN Yue, LIU Yu-Qing, YAN Gao-Wei, XU Shan, MA Jin-Jiao, DOU Shi-Juan, LI Li-Yun, LIU Guo-Zhen. Rice transcription factor WRKY68 plays a positive role in Xa21-mediated resistance to Xanthomonas oryzae pv. oryzae [J]. Acta Agronomica Sinica, 2022, 48(5): 1129-1140. |
[10] | WANG Xiao-Lei, LI Wei-Xing, OU-YANG Lin-Juan, XU Jie, CHEN Xiao-Rong, BIAN Jian-Min, HU Li-Fang, PENG Xiao-Song, HE Xiao-Peng, FU Jun-Ru, ZHOU Da-Hu, HE Hao-Hua, SUN Xiao-Tang, ZHU Chang-Lan. QTL mapping for plant architecture in rice based on chromosome segment substitution lines [J]. Acta Agronomica Sinica, 2022, 48(5): 1141-1151. |
[11] | WANG Ze, ZHOU Qin-Yang, LIU Cong, MU Yue, GUO Wei, DING Yan-Feng, NINOMIYA Seishi. Estimation and evaluation of paddy rice canopy characteristics based on images from UAV and ground camera [J]. Acta Agronomica Sinica, 2022, 48(5): 1248-1261. |
[12] | KE Jian, CHEN Ting-Ting, WU Zhou, ZHU Tie-Zhong, SUN Jie, HE Hai-Bing, YOU Cui-Cui, ZHU De-Quan, WU Li-Quan. Suitable varieties and high-yielding population characteristics of late season rice in the northern margin area of double-cropping rice along the Yangtze River [J]. Acta Agronomica Sinica, 2022, 48(4): 1005-1016. |
[13] | CHEN Yue, SUN Ming-Zhe, JIA Bo-Wei, LENG Yue, SUN Xiao-Li. Research progress regarding the function and mechanism of rice AP2/ERF transcription factor in stress response [J]. Acta Agronomica Sinica, 2022, 48(4): 781-790. |
[14] | WANG Lyu, CUI Yue-Zhen, WU Yu-Hong, HAO Xing-Shun, ZHANG Chun-Hui, WANG Jun-Yi, LIU Yi-Xin, LI Xiao-Gang, QIN Yu-Hang. Effects of rice stalks mulching combined with green manure (Astragalus smicus L.) incorporated into soil and reducing nitrogen fertilizer rate on rice yield and soil fertility [J]. Acta Agronomica Sinica, 2022, 48(4): 952-961. |
[15] | QIN Qin, TAO You-Feng, HUANG Bang-Chao, LI Hui, GAO Yun-Tian, ZHONG Xiao-Yuan, ZHOU Zhong-Lin, ZHU Li, LEI Xiao-Long, FENG Sheng-Qiang, WANG Xu, REN Wan-Jun. Characteristics of panicle stem growth and flowering period of the parents of hybrid rice in machine-transplanted seed production [J]. Acta Agronomica Sinica, 2022, 48(4): 988-1004. |
|