Yang Shuhua, Yang Huijun, Grisafi Paula, Sanchatjate Siraprapha, Fink Gerald R, Sun Qi, Hua Jian
Department of Plant Biology, Cornell University, Ithaca, NY 14853, USA.
Plant J. 2006 Jan;45(2):166-79. doi: 10.1111/j.1365-313X.2005.02585.x.
Copines are calcium-dependent membrane-binding proteins that are highly conserved among protozoa, plants, nematodes and mammals. Although they are implicated in membrane trafficking and signal transduction, the functions of these proteins are not well understood. The Arabidopsis copine gene BON1/CPN1 was previously shown to negatively regulate a disease resistance (R) gene SNC1. Here we report that in Arabidopsis, as in other organisms, there is a family of copine genes, BON1, 2 and 3. Using double and triple mutant combinations we show that these three copine genes have overlapping functions essential for the viability of plants. The loss of function of BON1 combined with that of BON2 or BON3 leads to extensive cell death phenotypes resembling the hypersensitive response (HR) in defense responses. The resulting lethality can be suppressed by mutations in PAD4 or EDS1 which are required for R gene signaling and cell death control. Accession-dependent phenotypes of the mutant combinations suggest that the BON/CPN genes may together repress several R genes other than SNC1. Moreover, the mutant combinations exhibit developmental defects when R-gene-mediated defense responses are largely suppressed in pad4 and eds1 mutants. Thus, the copine family in Arabidopsis may have effects in promoting growth and development in addition to repressing cell death, and these two processes might be intricately intertwined.
柯平蛋白是钙依赖性膜结合蛋白,在原生动物、植物、线虫和哺乳动物中高度保守。尽管它们参与膜运输和信号转导,但这些蛋白的功能尚未完全了解。拟南芥柯平蛋白基因BON1/CPN1先前已被证明对抗病(R)基因SNC1起负调控作用。在此我们报道,在拟南芥中,与其他生物体一样,存在一个柯平蛋白基因家族,即BON1、2和3。通过双突变和三突变组合,我们表明这三个柯平蛋白基因具有重叠功能,对植物的生存能力至关重要。BON1功能缺失与BON2或BON3功能缺失相结合会导致广泛的细胞死亡表型,类似于防御反应中的超敏反应(HR)。由此产生的致死性可被PAD4或EDS1中的突变所抑制,而PAD4或EDS1是R基因信号传导和细胞死亡控制所必需的。突变组合的依赖于种质的表型表明,BON/CPN基因可能共同抑制除SNC1之外的几个R基因。此外,当pad4和eds1突变体中R基因介导的防御反应被大幅抑制时,突变组合表现出发育缺陷。因此,拟南芥中的柯平蛋白家族除了抑制细胞死亡外,可能还对促进生长和发育有影响,并且这两个过程可能错综复杂地交织在一起。