Fiers Martijn, Hause Gerd, Boutilier Kim, Casamitjana-Martinez Eva, Weijers Dolf, Offringa Remko, van der Geest Lonneke, van Lookeren Campagne Michiel, Liu Chun-Ming
Plant Research International, BV, PO Box 16, 6700 AA Wageningen, The Netherlands.
Gene. 2004 Feb 18;327(1):37-49. doi: 10.1016/j.gene.2003.11.014.
Mild heat shock treatment (32 degrees C) of isolated Brassica napus microspores triggers a developmental switch from pollen maturation to embryo formation. This in vitro system was used to identify genes expressed in globular to heart-shape transition embryos. One of the genes isolated encodes a putative extra-cellular protein that exhibits high sequence similarity with the in silico identified CLV3/ESR-related 19 polypeptide from Arabidopsis (AtCLE19) and was therefore named BnCLE19. BnCLE19 is expressed in the primordia of cotyledons, sepals and cauline leaves, and in some pericycle cells in the root maturation zone. Mis-expression of BnCLE19 or AtCLE19 in Arabidopsis under the control of the CaMV 35S promoter resulted in a dramatic consumption of the root meristem, the formations of pin-shaped pistils and vascular islands. These results imply a role of CLE19 in promoting cell differentiation or inhibiting cell division.
对离体的甘蓝型油菜小孢子进行温和热激处理(32摄氏度)会引发从花粉成熟到胚胎形成的发育转变。该体外系统被用于鉴定在球形胚到心形胚转变阶段表达的基因。分离得到的其中一个基因编码一种假定的细胞外蛋白,它与拟南芥中通过电子克隆鉴定出的CLV3/ESR相关19多肽(AtCLE19)具有高度序列相似性,因此被命名为BnCLE19。BnCLE19在子叶、萼片和茎生叶的原基以及根成熟区的一些中柱鞘细胞中表达。在CaMV 35S启动子的控制下,BnCLE19或AtCLE19在拟南芥中的错误表达导致根分生组织显著消耗,形成针状雌蕊和维管束岛。这些结果表明CLE19在促进细胞分化或抑制细胞分裂中起作用。