Mummenhoff Klaus, Polster Alexander, Mühlhausen Andreas, Theissen Günter
University of Osnabrück, Department of Biology, Barbarastrasse, Germany.
J Exp Bot. 2009;60(5):1503-13. doi: 10.1093/jxb/ern304. Epub 2008 Dec 3.
Fruits represent a key innovation of the flowering plants that facilitates seed dispersal. In many species of the plant family Brassicaceae dehiscent fruits develop in which seed dispersal occurs through a process termed 'pod-shatter'. In the case of dehiscence, the fruit opens during fruit maturation. Phylogeny reconstructions using molecular markers indicate that the development of dehiscent fruits is the ancestral condition within the genus Lepidium s.l., but that indehiscent fruits evolved independently several times from dehiscent fruits. With Lepidium campestre and Cardaria pubescens (also known as Lepidium appelianum), very closely related taxa with dehiscent and indehiscent fruits, respectively, were identified which constitute a well-suited model system to determine the molecular genetic basis of evolutionary changes in fruit dehiscence. Following the rationale of evolutionary developmental biology ('evo-devo') phylomimicking mutants with indehiscent fruits of the close relative Arabidopsis have been used to define the candidate genes ALC, FUL, IND, RPL, and SHP1/2 which might be involved in the origin of indehiscent fruits in Cardaria. Comparative expression studies in L. campestre and C. pubescens are used to identify differentially expressed genes and thus to narrow down the number of candidate genes. Reciprocal heterologous transformation experiments may help us to distinguish direct from indirect developmental genetic causes of fruit indehiscence, and to assess the contribution of cis- and trans-regulatory changes.
果实是开花植物的一项关键创新,有助于种子传播。在十字花科的许多物种中,会发育出开裂果实,种子通过一种称为“荚果开裂”的过程进行传播。在开裂的情况下,果实在果实成熟期间会打开。使用分子标记进行的系统发育重建表明,开裂果实的发育是广义独行菜属的原始状态,但闭果是从开裂果实独立进化了几次。分别确定了果实开裂和不开裂的非常密切相关的分类群——田野独行菜和毛果群心菜(也称为阿氏独行菜),它们构成了一个非常合适的模型系统,用于确定果实开裂进化变化的分子遗传基础。按照进化发育生物学(“evo-devo”)的原理,已使用与近缘拟南芥闭果类似的突变体来确定可能参与毛果群心菜闭果起源的候选基因ALC、FUL、IND、RPL和SHP1/2。在田野独行菜和毛果群心菜中进行的比较表达研究用于鉴定差异表达基因,从而缩小候选基因的数量。相互异源转化实验可能有助于我们区分果实不开裂的直接和间接发育遗传原因,并评估顺式和反式调控变化的作用。