State Key Laboratory of Agrobiotechnology, National Maize Improvement Center, Department of Plant Genetics and Breeding, China Agricultural University, Beijing 100193, China.
BMC Plant Biol. 2011 Oct 20;11:141. doi: 10.1186/1471-2229-11-141.
miRNAs are known to play important regulatory roles throughout plant development. Until recently, nearly all the miRNAs in maize were identified by comparative analysis to miRNAs sequences of other plant species, such as rice and Arabidopsis.
To find new miRNA in this important crop, small RNAs from mixed tissues were sequenced, resulting in over 15 million unique sequences. Our sequencing effort validated 23 of the 28 known maize miRNA families, including 49 unique miRNAs. Using a newly established criterion, based on the precision of miRNA processing from precursors, we identified 66 novel miRNAs in maize. These miRNAs can be grouped into 58 families, 54 of which have not been identified in any other species. Five new miRNAs were validated by northern blot. Moreover, we found targets for 23 of the 66 new miRNAs. The targets of two of these newly identified miRNAs were confirmed by 5'RACE.
We have implemented a novel method of identifying miRNA by measuring the precision of miRNA processing from precursors. Using this method, 66 novel miRNAs and 50 potential miRNAs have been identified in maize.
miRNAs 在植物发育过程中发挥着重要的调控作用。直到最近,几乎所有的玉米 miRNA 都是通过与水稻和拟南芥等其他植物物种的 miRNA 序列进行比较分析来鉴定的。
为了在这个重要的作物中发现新的 miRNA,对混合组织的小 RNA 进行了测序,得到了超过 1500 万个独特的序列。我们的测序工作验证了 28 个已知的玉米 miRNA 家族中的 23 个,包括 49 个独特的 miRNA。使用新建立的标准,基于 miRNA 从前体加工的精度,我们在玉米中鉴定出了 66 个新的 miRNA。这些 miRNA 可以分为 58 个家族,其中 54 个家族在其他物种中没有被鉴定出来。通过 northern blot 验证了 5 个新的 miRNA。此外,我们还发现了 23 个新 miRNA 的靶标。这两个新鉴定的 miRNA 的靶标通过 5'RACE 得到了证实。
我们采用了一种新的方法来鉴定 miRNA,通过测量 miRNA 从前体加工的精度。使用这种方法,在玉米中鉴定出了 66 个新的 miRNA 和 50 个潜在的 miRNA。