Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Danzhou, Hainan, China; College of Agronomy, Hainan University, Haikou, China.
FEBS J. 2014 Jan;281(1):291-305. doi: 10.1111/febs.12595. Epub 2013 Nov 26.
Sucrose synthase (Sus, EC 2.4.1.13) is widely recognized as a key enzyme in sucrose metabolism in plants. However, nothing is known about this gene family in Hevea brasiliensis (para rubber tree). Here, we identified six Sus genes in H. brasiliensis that comprise the entire Sus family in this species. Analysis of the gene structure and phylogeny of the Sus genes demonstrates evolutionary conservation in the Sus families across Hevea and other plant species. The expression of Sus genes was investigated via Solexa sequencing and quantitative PCR in various tissues, at various phases of leaf development, and under abiotic stresses and ethylene treatment. The Sus genes exhibited distinct but partially redundant expression profiles. Each tissue has one abundant Sus isoform, with HbSus3, 4 and 5 being the predominant isoforms in latex (cytoplasm of rubber-producing laticifers), bark and root, respectively. HbSus1 and 6 were barely expressed in any tissue examined. In mature leaves (source), all HbSus genes were expressed at low levels, but HbSus3 and 4 were abundantly expressed in immature leaves (sink). Low temperature and drought treatments conspicuously induced HbSus5 expression in root and leaf, suggesting a role in stress responses. HbSus2 and 3 transcripts were decreased by ethylene treatment, consistent with the reduced sucrose-synthesizing activity of Sus enzymes in the latex in response to ethylene stimulation. Our results are beneficial to further determination of functions for the Sus genes in Hevea trees, especially roles in regulating latex regeneration.
蔗糖合酶(Sus,EC 2.4.1.13)被广泛认为是植物中蔗糖代谢的关键酶。然而,巴西橡胶树(三叶橡胶树)中这个基因家族的情况尚不清楚。在这里,我们在巴西橡胶树中鉴定了六个 Sus 基因,它们构成了该物种中整个 Sus 家族。Sus 基因的结构和系统发育分析表明,在巴西橡胶树和其他植物物种中,Sus 家族具有进化保守性。通过 Solexa 测序和定量 PCR 分析了 Sus 基因在不同组织、叶片发育的不同阶段以及在非生物胁迫和乙烯处理下的表达情况。Sus 基因表现出不同但部分冗余的表达谱。每种组织都有一种丰富的 Sus 同工型,其中 HbSus3、4 和 5 是乳管细胞质(产胶细胞)、树皮和根中的主要同工型,而 HbSus1 和 6 在任何检查的组织中几乎都不表达。在成熟叶片(源)中,所有 HbSus 基因的表达水平都较低,但 HbSus3 和 4 在未成熟叶片(汇)中大量表达。低温和干旱处理明显诱导根和叶中 HbSus5 的表达,表明其在胁迫响应中起作用。乙烯处理后 HbSus2 和 3 的转录物减少,这与 Sus 酶在应对乙烯刺激时乳管中蔗糖合成活性降低一致。我们的研究结果有助于进一步确定巴西橡胶树 Sus 基因的功能,特别是在调节乳胶再生方面的作用。