MULTI-TILLERING DWARF1, a new allele of BRITTLE CULM 12, affects plant height and tiller in rice
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文摘
Plant height and tillering are crucial factors determining rice plant architecture and influencing rice grain production. In this study, multi-tillering dwarf1 (mtd1), a stable multi-tiller and dwarf mutant, was screened from the ethylmethane sulfonate-treated japonica rice variety Wuyunging7. Compared with the wild type, mtd1 mutant exhibited pleiotropic phenotypes, including dwarfism, more tillers, brittle culms and delayed heading date. By employing map-based cloning strategy, the gene MTD1 was finally mapped to an approximately 66-kb region on the short arm of chromosome 9. Sequencing results showed that the gene LOC_Os09g02650 (BC12) in mtd1 mutant had a single nucleotide substitution (G to A), which generated a premature translation stop. Over-expressing MTD1/BC12 coding sequence rescued all the phenotypes of mtd1 mutants including plant height and tillers, which confirms that BC12 is the mutated gene in mtd1 mutant. Quantitative reverse transcription-PCR analysis showed that MTD1/BC12 could negatively regulate the expression of MONOCULM 1, IDEAL PLANT ARCHITECTURE1 and Tillering and Dwarf 1, and control rice tillering. Remarkably, a-amylase activity analysis and gibberellic acid (GA) treatment showed that the dwarf phenotype of mtd1 mutant was dependent on GA biosynthesis pathway. These results facilitated to further uncover the molecular mechanism of the growth and development in rice.
来源
Science Bulletin
,2016,61(23):1810-1817 【核心库】
DOI
10.1007/s11434-015-0981-y
关键词
Rice
;
Dwarf
;
Tillering
;
mtd1
;
Gene cloning
地址
1.
College of Chemistry and Life Sciences, Zhejiang Normal University, State Key Laboratory for Rice Biology;;Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture;;Key Laboratory of Northern Japonica Rice Genetics and Breeding, Ministry of Education, Jinhua, 321004
2.
China National Rice Research Institute, State Key Laboratory for Rice Biology, Zhejiang, Hangzhou, 310006
3.
College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua, 321004
语种
英文
文献类型
研究性论文
ISSN
2095-9273
学科
农作物
基金
the Open Foundation from Zhejiang Provincial Top Key Discipline of Biology
;
浙江省自然科学基金
;
中国博士后科学基金
;
国家自然科学基金
文献收藏号
CSCD:5886791
参考文献 共
44
共3页
1.
Khush G S. Origin, dispersal, cultivation and variation of rice.
Plant Mol Biol,1997,35:25-34
CSCD被引
99
次
2.
Kashiwagi T. Identification and functional analysis of a locus for improvement of lodging resistance in rice.
Plant Physiol,2004,134:676-683
CSCD被引
92
次
3.
Paterson A H. Paleo-green revolution for rice.
Proc Natl Acad Sci USA,2011,108:10931-10932
CSCD被引
3
次
4.
Zou J H. The rice HIGHTILLERING DWARF1 encoding an ortholog of Arabidopsis MAX3 is required for negative regulation of the outgrowth of axillary buds.
Plant J,2006,48:687-696
CSCD被引
99
次
5.
Li Z F. Mapping quantitative trait loci underlying appearance quality of rice grains (Oryza sativa L.).
J Genet Genomics,2003,30:251-259
CSCD被引
3
次
6.
Wang X Y. Cloning and molecular characterisation of a gene encoding cytochrome P450 C-23 steroid hydroxylase (CYP90) from aspen.
J Genet Genomics,2005,32:384-392
CSCD被引
1
次
7.
Luan W J. OsCD1 encodes a putative member of the cellulose synthase-like D sub-family and is essential for rice plant architecture and growth.
Plant Biotechnol J,2011,9:513-524
CSCD被引
19
次
8.
Long M X. Identification and genetic analysis of a rice semi-dwarf mutant.
Mol Plant Breeding,(in Chinese),2007,5:59-63
CSCD被引
1
次
9.
Sui J M. Genetic analysis and gene location of a semidwarf gene in an indica rice cultivar duonieai (Oryza sativa L.).
Acta Agron Sin,(in Chinese),2006,6:845-850
CSCD被引
2
次
10.
Chang L. Functional conservation of the meiotic genes SDS and RCK in male meiosis in the monocot rice.
Cell Res,2009,19:768-782
CSCD被引
11
次
11.
Jiang L. Genetic analysis and finemapping of a dwarfing with withered leaf-tip mutant in rice.
J Genet Genomics,2008,35:715-721
CSCD被引
7
次
12.
Hu J. Genetic analysis and gene mapping of a new mutant of dwarf and disproportionate uppermost internode 1 (ddu1) in rice.
Chin J Rice Sci,(in Chinese),2009,23:252-256
CSCD被引
1
次
13.
Zhang F T. Fine mapping and candidate gene analysis of the dwarf gene d162(t) in rice (Oryza sativa L.).
Genes Genomics,2011,33:25-30
CSCD被引
2
次
14.
Zhang F T. Characterisation of a rice dwarf and twist leaf 1 (dtl1) mutant and fine mapping of DTL1 gene.
Hereditas,2012,34:79-86
CSCD被引
1
次
15.
Zhang B. Characterization of a novel high-tillering dwarf 3 mutant in rice.
J Genet Genomics,2011,38:411-418
CSCD被引
10
次
16.
Li W. SAD1, an RNA polymerase I subunit A34.5 of rice, interacts with mediator and controls various aspects of plant development.
Plant J,2015,81:282-291
CSCD被引
3
次
17.
Arite T. d14, a strigolactoneinsensitive mutant of rice, shows an accelerated outgrowth of tillers.
Plant Cell Physiol,2009,50:1416-1424
CSCD被引
113
次
18.
Sato-Izawa K. DWARF50 (D50), a rice (Oryza sativa L.) gene encoding inositol polyphosphate 5-phosphatase, is required for proper development of intercalary meristem.
Plant Cell Environ,2012,35:2031-2044
CSCD被引
7
次
19.
Rao Y C. Characterization and cloning of a brittle culm mutant (bc88) in rice (Oryza sativa L.).
Chin Sci Bull,2013,58:3000-3006
CSCD被引
11
次
20.
Ren D Y. The pleiotropic ABNORMAL FLOWER AND DWARF1 affects plant height, floral development and grain yield in rice.
J Integr Plant Biol,2015
CSCD被引
1
次