The Key Sericultural Laboratory of Agricultural Ministry, College of Biotechnology, Southwest University, Chongqing 400715, PR China.
BMC Genomics. 2010 Feb 2;11:85. doi: 10.1186/1471-2164-11-85.
MicroRNAs (miRNAs) repress target genes at the post-transcriptional level, and function in the development and cell-lineage pathways of host species. Tissue-specific expression of miRNAs is highly relevant to their physiological roles in the corresponding tissues. However, to date, few miRNAs have been spatially identified in the silkworm.
We establish for the first time the spatial expression patterns of nearly 100 miRNAs in multiple normal tissues (organs) of Bombyx mori females and males using microarray and Northern-blotting analyses. In all, only 10 miRNAs were universally distributed (including bmo-let-7 and bmo-bantam), while the majority were expressed exclusively or preferentially in specific tissue types (e.g., bmo-miR-275 and bmo-miR-1). Additionally, we examined the developmental patterns of miRNA expression during metamorphosis of the body wall, silk glands, midgut and fat body. In total, 63 miRNAs displayed significant alterations in abundance in at least 1 tissue during the developmental transition from larvae to pupae (e.g., bmo-miR-263b and bmo-miR-124). Expression patterns of five miRNAs were significantly increased during metamorphosis in all four tissues (e.g., bmo-miR-275 and bmo-miR-305), and two miRNA pairs, bmo-miR-10b-3p/5p and bmo-miR-281-3p/5p, showed coordinate expression.
In this study, we conducted preliminary spatial measurements of several miRNAs in the silkworm. Periods of rapid morphological change were associated with alterations in miRNA expression patterns in the body wall, silk glands, midgut and fat body during metamorphosis. Accordingly, we propose that corresponding ubiquitous or tissue-specific expression of miRNAs supports their critical roles in tissue specification. These results should facilitate future functional analyses.
MicroRNAs(miRNAs)在转录后水平上抑制靶基因,并在宿主物种的发育和细胞谱系途径中发挥作用。miRNAs 的组织特异性表达与其在相应组织中的生理功能密切相关。然而,迄今为止,在蚕中仅鉴定了少数 miRNAs 的空间表达。
我们首次使用微阵列和 Northern 印迹分析,在雌雄家蚕的多个正常组织(器官)中建立了近 100 种 miRNAs 的空间表达模式。总共只有 10 种 miRNA 普遍分布(包括 bmo-let-7 和 bmo-bantam),而大多数 miRNA 仅在特定组织类型中表达或优先表达(例如,bmo-miR-275 和 bmo-miR-1)。此外,我们检查了体壁、丝腺、中肠和脂肪体在变态发育过程中 miRNA 表达的发育模式。总共,在从幼虫到蛹的发育转变过程中,63 种 miRNA 在至少 1 种组织中的丰度发生了显著变化(例如,bmo-miR-263b 和 bmo-miR-124)。在所有四个组织中,有 5 种 miRNA 的表达模式在变态发育过程中显著增加(例如,bmo-miR-275 和 bmo-miR-305),两个 miRNA 对 bmo-miR-10b-3p/5p 和 bmo-miR-281-3p/5p 表现出协调表达。
在本研究中,我们对家蚕中的几种 miRNA 进行了初步的空间测量。在变态发育过程中,体壁、丝腺、中肠和脂肪体中的形态快速变化期与 miRNA 表达模式的改变相关。因此,我们提出相应的 miRNA 普遍或组织特异性表达支持它们在组织特化中的关键作用。这些结果应该有助于未来的功能分析。