In molecular biology, mir-160 is a microRNA that has been predicted or experimentally confirmed in a range of plant species including Arabidopsis thaliana (mouse-ear cress) and Oryza sativa (rice).
mir-395 is a non-coding RNA called a microRNA that was identified in both Arabidopsis thaliana and Oryza sativa computationally and was later experimentally verified.
mir-399 is a microRNA that was identified in both Arabidopsis thaliana and Oryza sativa computationally and was later experimentally verified.
These three snoRNas identified in rice (Oryza sativa), called F1, F2 and snoR5a, belong to the H/ACA box class of snoRNAs as they have the predicted hairpin-hinge-hairpin-tail structure and has the conserved H/ACA-box motifs.
snoR12 was identified by computational screen of the rice Oryza sativa genome and is predicted to acts as a methylation guide for 25S ribosomal RNA in plants.
snoR160 was identified by computational screening of the rice Oryza sativa and is predicted to acts as a methylation guide for 25S ribosomal RNA in plants.
snoR41 was identified by computational screening the rice Oryza sativa genome and is predicted to act as a methylation guide for 18S and 25S ribosomal RNA (rRNA).
These snoRNAs appear to be plant specific and were identified in Arabidopsis thaliana and rice Oryza sativa (snoRNAs Z268 and J54).
snoR66 was identified by a computational screening of the rice Oryza sativa genome and is proposed to acts as a methylation guide for 18S ribosomal RNA in plants.
Plant snoRNA Z101 was identified in a screen of Oryza sativa.
Plant snoRNA Z103 was identified in a screen of Oryza sativa.
Plant snoRNA Z105 was identified in a screen of Oryza sativa.
Plant snoRNA Z112 was identified in a screen of Oryza sativa.
Plant snoRNA Z119 was identified in a screen of Oryza sativa.
Plant snoRNA Z122 was identified in a screen of Oryza sativa.
Plant snoRNA Z155 was identified in a screen of Oryza sativa.
Plant snoRNA Z162 was identified in a screen of Oryza sativa.
Plant snoRNA Z165 was identified in a screen of Oryza sativa.
Plant snoRNA Z169 was identified in a screen of Oryza sativa.
Plant snoRNA Z173 was identified in a screen of Oryza sativa.
Plant snoRNA Z175 was identified in a screen of Oryza sativa.
Plant snoRNA Z178 was identified in a screen of Oryza sativa.
Plant snoRNA Z182 was identified in a screen of Oryza sativa.
Plant snoRNA Z185 was identified in a screen of Oryza sativa.
Plant snoRNA Z188 was identified in a screen of Oryza sativa.
Plant snoRNA Z194 was identified in a screen of Oryza sativa.
Plant snoRNA Z206 was identified in a screen of Oryza sativa.
Plant snoRNA Z221 was identified in a screen of Oryza sativa.
Plant snoRNA Z247 was identified in a screen of Oryza sativa.
Plant snoRNA Z256 was identified in a screen of Oryza sativa.
Plant snoRNA Z266 was identified in a screen of Oryza sativa.
Plant snoRNA Z267 was identified in a screen of Oryza sativa.
Plant snoRNA Z278 was identified in a screen of Oryza sativa.
Plant snoRNA Z279 was identified in a screen of Oryza sativa.
The enzymes from Oryza sativa (ROMT-15 and ROMT-17) catalyses the stepwise methylation of tricetin to its 3'-mono- and 3',5'-dimethyl ethers.
Oryza sativa | Oryza | Madia sativa | Castanea sativa | Cannabis sativa | Nigella sativa | Camelina sativa |
To make hyeonmi cha, brown rice (typically short-grain brown rice, Oryza sativa var. japonica) is washed, then roasted in a pot.
The larvae feed on a range of agricultural plants like Zea mays, Sorghum bicolor and Oryza sativa and are thus considered a pest.