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10:03, 9 June 2014 图B.jpg (file) 153 KB 李艳玲   1
11:17, 9 June 2014 Fig 1.docx (file) 271 KB Zhxbin2008 Sequence analysis of OsWR1 with WIN1-like. A: Whole amino acid sequence comparison of WIN1-like from Arabidopsis and rice. Asterisks represent the putative domain of the nuclear localization signal, the black line indicates the highly conserved AP2 domain 1
11:21, 9 June 2014 Beiyuan.jpg (file) 108 KB Beiyuanyuan bei 1
11:30, 9 June 2014 The plastid sigma factor SIG1 maintains photosystem I activity via regulated expression of the psaA operon in rice chloroplasts.jpg (file) 709 KB Charlesliu   1
11:51, 9 June 2014 Fig.111.png (file)
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182 KB Meso12   1
11:56, 9 June 2014 Fig.112.png (file)
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11:58, 9 June 2014 Fig.113.png (file)
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293 KB Meso12   1
11:58, 9 June 2014 Sig1.jpeg (file) 116 KB Charlesliu   1
12:04, 9 June 2014 Figure 2.jpg (file) 123 KB Charlesliu   5
12:11, 9 June 2014 Expression profiles of oswrky genes following m.grisea infection.png (file) 259 KB EmmaJune   1
12:19, 9 June 2014 Phylogenetic tree of m grisea-inducible oswekys constructed using the nj method.png (file) 155 KB EmmaJune   1
12:27, 9 June 2014 Analysis of the expression pattern for the RL14 gene.png (file) 293 KB Zhangyn   1
12:30, 9 June 2014 Bei2.jpg (file) 65 KB Beiyuanyuan v 1
12:31, 9 June 2014 Example1234567.jpg (file) 69 KB Tuntun Expression pattern of OsMGT1 in rice. A, Expression of OsMGT1 in the roots and shoots. Rice seedlings were exposed to a solution containing 50 μm Al at pH 4.5 for 6 h and the roots and shoots were sampled for analysis. B, Root spatial expression. After e 1
12:38, 9 June 2014 Phylogenetic analysis and subcellular localization of RL14 protein.png (file) 252 KB Zhangyn   1
12:45, 9 June 2014 Different issue effect Os04g0629300 and other rice SNF2 grnes.jpg (file) 25 KB Icelord11 The probable cross-talk draft in which the eight genes were involved. Their regulationsin phytohormone and stress signaling pathways were designated with different types of broken lines. The two Snf2 members were displayed with speckle shadows while the 1
12:47, 9 June 2014 69F1.jpg (file) 131 KB Huanghs   1
12:48, 9 June 2014 69F2.jpg (file) 75 KB Huanghs   1
12:48, 9 June 2014 69F3.jpg (file) 84 KB Huanghs   1
12:48, 9 June 2014 69F4.jpg (file) 79 KB Huanghs   1
12:48, 9 June 2014 69F5.jpg (file) 42 KB Huanghs   1
12:51, 9 June 2014 Fig-1.jpg (file) 192 KB Zhxbin2008   3
12:56, 9 June 2014 Figure-1.jpg (file) 115 KB Zhxbin2008   1
12:58, 9 June 2014 Fig.2.jpg (file) 42 KB Dkyjw   4
12:58, 9 June 2014 Fig.3.jpg (file) 21 KB Dkyjw   4
12:59, 9 June 2014 RLS1.0.png (file) 179 KB YinQi   1
13:00, 9 June 2014 RLS1.00.png (file) 325 KB YinQi   1
13:02, 9 June 2014 Fig.3.Expression of RFT1 in the SAM.jpg (file) 32 KB Sunlight Developmental expression of RFT1 in the SAM under LD conditions through stages 1-5. Expression of RFT1 was very low in the SAM throughout the plant’s life cycle. In situ hybridization patterns of OsMADS50 in the SAM and floral meristem.OsMADS50 expressi 1
13:03, 9 June 2014 Fig.1. RFT1 encodes LD florigen.jpg (file) 31 KB Sunlight (A) pRFT1::RFT1:GFP constructs. RFT1 promoter, 1.8 kb, 5 UTR of RFT1+RFT1 and GFP fused 3 UTR of RFT1 were used for the pRFT1::RFT1:GFP constructs. (B-E) Confocal images of pRFT1::RFT1:GFP transgenic plants. Longitudinal sections through the SAM of vegeta 1
13:04, 9 June 2014 Fig. 2. A model for the photoperiodic control of flowering in rice.jpg (file) 38 KB Sunlight Under SD conditions, Hd1 and Ehd1 positively regulate Hd3a and promote flowering in the activation pathway. When Hd3a expression is knocked down by RNAi (marked by X), RFT1 becomes activated later during development for SD flowering. No suppression pathwa 1
13:05, 9 June 2014 Figure 5.png (file) 119 KB Yueliya   3
13:14, 9 June 2014 2t.jpg (file) 108 KB Active   1
13:15, 9 June 2014 4.jpg (file) 122 KB Active   7
13:18, 9 June 2014 Bf2.jpg (file) 195 KB Beiyuanyuan   1
13:19, 9 June 2014 Bf3.jpg (file) 93 KB Beiyuanyuan   1
13:19, 9 June 2014 2.jpg (file) 77 KB Active   24
13:19, 9 June 2014 Bf4.jpg (file) 112 KB Beiyuanyuan   1
13:19, 9 June 2014 3.jpg (file) 110 KB Active   18
13:19, 9 June 2014 Bf7.jpg (file) 239 KB Beiyuanyuan   1
13:20, 9 June 2014 Bf8.jpg (file) 161 KB Beiyuanyuan   1
13:20, 9 June 2014 Bf10.jpg (file) 154 KB Beiyuanyuan   1
13:21, 9 June 2014 Bf11.jpg (file) 249 KB Beiyuanyuan   1
13:30, 9 June 2014 未命名3.jpg (file) 23 KB Heluyun   1
13:30, 9 June 2014 5.png (file) 3 KB Active   6
13:31, 9 June 2014 Bt1.png (file) 17 KB Beiyuanyuan   2
13:46, 9 June 2014 Chen-Os04g0572400-Fig1.jpg (file) 261 KB Helen   1
13:47, 9 June 2014 Yeast growth rate analysis.jpg (file) 24 KB Dkyjw Growth rate of yeast transformed with pREP1 (filled circle) or pREP1-OsCCS52B (filled triangle). OD600 was measured at the indicated times (every 6 h). 1
13:59, 9 June 2014 Fig.1 Yeast growth rate analysis.jpg (file) 24 KB Dkyjw Growth rate of yeast transformed with pREP1 (filled circle) or pREP1-OsCCS52B (filled triangle). OD600 was measured at the indicated times (every 6 h). 2
14:05, 9 June 2014 Fig. 3 Overexpression of OsCCS52B in yeast cells.jpg (file) 42 KB Dkyjw a Normal phenotype of wild-type yeast harboring the pREP1 vector. b Elongated morphology of OsCCS52B-overexpressing yeast. c DAPIstained nuclei of wild-type yeast. d DAPI-stained nuclei of OsCCS52B-overexpressing yeast 1
14:10, 9 June 2014 Expression pattern of OsCCS52B in wild-type plants.jpg (file) 21 KB Dkyjw Total RNA was isolated from vegetative (a) and generative (b) organs of wild-type rice. The expression of rice Actin was included as a control. YL young leaves, YR young roots, ML mature leaves, MR mature roots, IM immature panicles, FL flowers, 10K kerne 1
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