본 연구에서는 팥의 꼬투리와 줄기를 가해하는 Ostrinia속 해충에 대해 종 동정 과정을 기술하였고, 사육하면서 관찰된 발육특성들을 보고 하였다. 수컷의 생식기는 3-lobed uncus 형태였으며, 가운뎃다리 종아리마디에는 털을 많이 갖는 것으로 나타났다. 미토콘드리아 cytochrome oxidase I (COI)과 II (COII) 유전자의 부분 염기서열은 콩줄기명나방(O. scapulalis), 큰섬들명나방(O. zaguliaevi), 큰조명나방(O. zealis bipatrialis)들에 대해 일본과 중국에서 보고된 서열들과 100% 일치를 보이는 종은 없었다. 기주식물 범위는 국내외 보고들 간에 일치하지 않았다. 암컷 성페로몬샘 추출물의 가스크로마토그래피 분석에서 큰섬들명나방과 큰조명나방의 성페로몬 성분인 (Z)-9-tetradecenyl acetate는 검출되지 않았다. 이상의 결과들을 종합하여 고려하였을 때, 본 연구의 팥 해충을 가해하는 곤충 종은 콩줄기명나방(O. scapulalis)일 것으로 추정되었다. 가을 야외에서 채집된 유충들을 야외조건에서 보관하였을 때, 이듬해 6월과 7월 사이에 성충들이 우화하였는데, 이 결과로부터 본 곤충 종은 말령 유충 단계에서 겨울휴면을 하는 것으로 추정되었다. 이외에 반합성 인공사료를 이용하여 실내 사육이 가능하였다.
Mesenchymal stem cells (MSCs) have the multipotent capacity and this potential can be applied for obtaining valuable cell types which can use for cell therapy on various regenerative diseases. However, insufficient availability of cellular source is the major problem in cell therapy field using adult stem cell sources. Recently, human embryonic stem cells (hESCs) have been highlighted to overcome a limitation of adult cellular sources because they retain unlimited proliferation capacity and pluripotency. To use of hESCs in cell therapy, above all, animal pathogen free culture system and purification of a specific target cell population to avoid teratoma formation are required. In this study, we describe the differentiation of a mesenchymal stem cell-like cells population from feeder-free cultured hESCs(hESC-MSCs) using direct induction system. hESC-MSCs revealed characteristics similar to MSCs derived from bone marrow, and undifferentiated cell markers were extremely low in hESC-MSCs in RT- PCR, immunostaining and FACS analyses. Thus, this study proffer a basis of effective generation of specialized human mesenchymal stem cell types which can use for further clinical applications, from xenofree cultured hESCs using direct induction system.
The advent of Next Generation Sequencing (NGS) technology has changed the research paradigm and become an essential tool for recent biological and medical study. In today’s market, there are several sequencing platforms which have specific sequencing principle, and the result of each sequencing platform has different characteristics among them. Hence, each sequencing method became more specialized for specific research purpose, and researchers who consider NGS analysis have to understand the very basic characteristics of each NGS platform. NGS is used in various studies and they are usually classified into 5 categories (Re-sequencing, RNA-seq, de novo assembly, Metagenomics and Epigenomics) of analysis. In this session, we will introduce the characteristics of sequencing platforms and examples of recent research on each of the 5 analysis categories. In addition, we will talk about the benefit of NGS study compared to the traditional study and how these NGS technologies can be applied in developmental biology research.