School of Plant Sciences/BIO5 Institute/University of Arizona, 1657 E. Helen St, Tucson, AZ, 85721, USA.
BMC Plant Biol. 2018 Dec 13;18(1):354. doi: 10.1186/s12870-018-1579-8.
Soybean is a globally important oil seed crop. Both the high protein and oil content of soybean seeds make this crop a lucrative commodity. As in higher eukaryotic species with available genomes, the functional annotation of most of soybean's genes still remains to be investigated. A major hurdle in the functional genomics of soybean is a rapid method to test gene constructs before embarking on stable transformation experiments.
In this paper we describe the morphology and composition of the persistent single-cell aleurone layer that derives from the endosperm of developing soybean seeds. Its composition compared to cotyledonary tissue indicates the aleurone layer plays a role in both abiotic and biotic stress. The potential utility as the aleurone layer as a transient expression system in soybean was shown. As a near transparent single-cell layer it can be used as a transient expression system to study transgene expression and inter- and intra-cellular targeting as it is amenable to microscopic techniques.
The transparent single cell aleurone layer was shown to be compositionally comparable to cotyledonary tissue in soybean with an enrichment in oxidative response proteins and shown to be a potential transient expression platform.
大豆是一种全球重要的油料作物。大豆种子的高蛋白和高油含量使其成为一种有利可图的商品。与具有可用基因组的高等真核生物一样,大豆的大多数基因的功能注释仍有待研究。大豆功能基因组学的一个主要障碍是在进行稳定转化实验之前,快速测试基因构建体的方法。
本文描述了来源于发育中的大豆种子胚乳的持久单细胞糊粉层的形态和组成。其组成与子叶组织的比较表明糊粉层层在非生物和生物胁迫中都发挥作用。显示了糊粉层作为大豆瞬时表达系统的潜在用途。作为近透明的单细胞层,它可用作瞬时表达系统来研究转基因表达和细胞内和细胞间靶向,因为它适合显微镜技术。
透明的单细胞糊粉层在组成上与大豆的子叶组织相似,富含氧化应激蛋白,并显示出作为潜在瞬时表达平台的潜力。