Leymarie Juliette, Bruneaux Elisabeth, Gibot-Leclerc Stéphanie, Corbineau Françoise
Université Pierre et Marie Curie-Paris 6, EA2388 Physiologie des semences, Site d'Ivry, Boîte 152, 4 place Jussieu, F-75005 Paris, France.
J Exp Bot. 2007;58(3):425-37. doi: 10.1093/jxb/erl211. Epub 2006 Dec 14.
Freshly harvested barley seeds are considered as dormant since they do not germinate at temperatures above 20 degrees C. This dormancy is broken during dry storage. Molecular regulation of dormancy was investigated using cDNA-AFLP to identify transcripts differentially expressed in dormant and non-dormant embryos. Transcript patterns in embryos from dry dormant and non-dormant seeds and from both seeds imbibed for 5 h at 30 degrees C, a temperature at which dormancy is expressed, were compared. Thirty-nine Transcript-Derived Fragments (TDF) that were reproducibly differentially expressed among treatments were identified, and 25 of these were cloned and sequenced. Among these, eight transcripts were observed to be differentially expressed during after-ripening, seven of which decline, probably due to post-maturation degradation. HV13B, TDF identified as having homology to fructose-6-phosphate-2-kinase/fructose-2,6-biphosphatase, may have a role in the maintenance of dormancy in barley and probably in other cereals. During the first 5 h of imbibition, there was expression of 24 TDF which was apparently independent of dormancy, revealing putative epigenetic regulation. This was typified by HV44A, a SET domain protein. Seven TDF differentially expressed, and especially HV12D, HV42B, and HV32B, in dormant and non-dormant seeds were potential signalling elements. HV12D had homology with an ARIADNE gene which could be implicated in ABA signalling.
刚收获的大麦种子被认为处于休眠状态,因为它们在20摄氏度以上的温度下不会发芽。这种休眠在干燥储存过程中被打破。利用cDNA-AFLP研究休眠的分子调控,以鉴定在休眠和非休眠胚中差异表达的转录本。比较了干休眠和非休眠种子以及在30摄氏度(表达休眠的温度)下吸胀5小时的两种种子胚中的转录本模式。鉴定出39个在处理间可重复差异表达的转录衍生片段(TDF),其中25个被克隆并测序。其中,观察到8个转录本在种子后熟过程中差异表达,其中7个可能由于成熟后降解而减少。HV13B,一个被鉴定为与果糖-6-磷酸-2-激酶/果糖-2,6-二磷酸酶具有同源性的TDF,可能在大麦以及可能在其他谷物的休眠维持中起作用。在吸胀的最初5小时内,有24个TDF表达,这显然与休眠无关,揭示了假定的表观遗传调控。这以HV44A为例,它是一个SET结构域蛋白。7个TDF在休眠和非休眠种子中差异表达,特别是HV12D、HV42B和HV32B,是潜在的信号元件。HV12D与一个可能参与脱落酸信号传导的ARIADNE基因具有同源性。