National Agricultural Research Center for Hokkaido Region, Hitsujigaoka 1, Toyohira, Sapporo 062-8555, Japan.
J Exp Bot. 2011 Jun;62(10):3421-31. doi: 10.1093/jxb/err018. Epub 2011 Feb 11.
The ability of grasses to regrow after defoliation by cutting or grazing is a vital factor in their survival and an important trait when they are used as forage crops. In temperate grass species accumulating fructans, defoliation induces the activity of a fructan exohydrolase (FEH) that degrades fructans to serve as a carbon source for regrowth. Here, a cDNA from timothy was cloned, named Pp6-FEH1, that showed similarity to wheat fructan 6-exohydrolase (6-FEH). The recombinant enzyme expressed in Pichia pastoris completely degraded fructans that were composed mainly of β(2,6)-linked and linear fructans (levan) with a high degree of polymerization (DP) in the crown tissues of timothy. The substrate specificity of Pp6-FEH1 differed from previously characterized enzymes with 6-FEH activity in fructan-accumulating plants: (i) Pp6-FEH1 showed 6-FEH activity against levan (mean DP 20) that was 4-fold higher than against 6-kestotriose (DP 3), indicating that Pp6-FEH1 has a preference for β(2,6)-linked fructans with high DP; (ii) Pp6-FEH1 had significant activity against β(2,1)-linked fructans, but considerably less than against β(2,6)-linked fructans; (iii) Pp6-FEH1 had weak invertase activity, and its 6-FEH activity was inhibited slightly by sucrose. In the stubble of seedlings and in young haplocorms from adult timothy plants, transcripts of Pp6-FEH1 were significantly increased within 3 h of defoliation, followed by an increase in 6-FEH activity and in the degradation of fructans. These results suggest that Pp6-FEH1 plays a role in the degradation of fructans and the mobilization of carbon sources for regrowth after defoliation in timothy.
在被刈割或放牧后能够再生的能力是禾本科植物生存的关键因素,也是它们作为饲料作物的一个重要特性。在积累了果聚糖的温带禾本科植物中,刈割会诱导果聚糖外切水解酶(FEH)的活性,这种酶将果聚糖降解为再生的碳源。本研究克隆了来自梯牧草的 cDNA,命名为 Pp6-FEH1,它与小麦果聚糖 6-外切水解酶(6-FEH)具有相似性。在巴斯德毕赤酵母中表达的重组酶可完全降解主要由β(2,6)-连接和线性果聚糖(以高聚合度(DP)存在于梯牧草冠层组织中的蔗果三糖)组成的果聚糖。Pp6-FEH1 的底物特异性与积累果聚糖植物中具有 6-FEH 活性的先前表征的酶不同:(i)Pp6-FEH1 对以高 DP 存在的蔗果三糖(DP 3)具有 4 倍更高的 6-FEH 活性,表明 Pp6-FEH1 对具有高 DP 的β(2,6)-连接的果聚糖具有偏好性;(ii)Pp6-FEH1 对β(2,1)-连接的果聚糖具有显著的活性,但显著低于β(2,6)-连接的果聚糖;(iii)Pp6-FEH1 具有较弱的转化酶活性,其 6-FEH 活性被蔗糖轻微抑制。在幼苗的残茬和成年梯牧草植株的单倍体幼体中,Pp6-FEH1 的转录物在刈割后 3 小时内显著增加,随后 6-FEH 活性增加,果聚糖降解。这些结果表明,Pp6-FEH1 在梯牧草刈割后果聚糖的降解和碳源的动员中发挥作用,以促进再生。