Nasrallah Mikhail E, Liu Pei, Nasrallah June B
Department of Plant Biology, Cornell University, Ithaca, NY 14853, USA.
Science. 2002 Jul 12;297(5579):247-9. doi: 10.1126/science.1072205.
Transitions from cross-fertilizing to self-fertilizing mating systems have occurred frequently in natural and domesticated plant populations, but the underlying genetic causes are unknown. We show that gene transfer of the stigma receptor kinase SRK and its pollen-borne ligand SCR from one S-locus haplotype of the self-incompatible and cross-fertilizing Arabidopsis lyrata is sufficient to impart self-incompatibility phenotype in self-fertile Arabidopsis thaliana, which lacks functional orthologs of these genes. This successful complementation demonstrates that the signaling cascade leading to inhibition of self-related pollen was maintained in A. thaliana. Analysis of self-incompatibility will be facilitated by the tools available in this species.
从异花受精到自花受精交配系统的转变在自然和驯化植物种群中频繁发生,但其潜在的遗传原因尚不清楚。我们发现,来自自交不亲和且异花受精的琴叶拟南芥的一个S位点单倍型的柱头受体激酶SRK及其花粉携带的配体SCR的基因转移,足以在缺乏这些基因功能直系同源物的自交能育的拟南芥中赋予自交不亲和表型。这种成功的互补表明,导致抑制自花相关花粉的信号级联在拟南芥中得以保留。该物种现有的工具将有助于对自交不亲和进行分析。