Department of Biochemistry, Michigan State University, East Lansing, MI 48824, USA.
Proc Natl Acad Sci U S A. 2012 Oct 2;109(40):16377-82. doi: 10.1073/pnas.1207906109. Epub 2012 Sep 17.
Glandular secreting trichomes on the surface of tomato plants and many of its relatives in the Solanaceae produce a mixture of O-acyl sugars that contribute to insect resistance. The majority of acyl sucroses produced by the cultivated tomato (Solanum lycopersicum) contain three or four short chain aliphatic acyl esters, and tetra-acyl sucroses have an acetyl group as one of the acyl chains. We previously reported overlapping S. lycopersicum × Solanum pennellii introgression lines (ILs) that fail to accumulate high levels of acetylated tetra-acyl sucroses. A survey of the annotated genes in this region of cultivated tomato chromosome 1 revealed three candidate acyltransferases that were tested for function using virus-induced gene silencing. A member of the BAHD family of acyltransferases (Solyc01g105580, SlAT2) was shown to encode an acetyl-CoA-dependent acyltransferase enzyme capable of acyl sucrose acetylation in vitro. RNAi suppression of SlAT2 in transgenic S. lycopersicum cv. M82 resulted in reduced acyl sugar acetylation, whereas expression of the functional S. lycopersicum allele of SlAT2 in the triacyl sucrose producing IL1-3 restored the ability of the IL to synthesize acetylated tetra-acyl sugars. Transgenic plants with the SlAT2 promoter driving GFP expression showed fluorescence in tips cells of long, slender trichomes that is consistent with acyl sugar acetylation occurring in these cells.
番茄植株及其茄科许多亲缘植物表面的腺毛分泌三酰基蔗糖,这有助于其抵御昆虫侵害。大多数栽培番茄(Solanum lycopersicum)产生的酰基蔗糖含有三到四个短链脂肪酰酯,而四酰基蔗糖则有一个乙酰基作为酰链之一。我们之前报道过,栽培番茄染色体 1 上的番茄×彭尼利氏茄重叠渐渗系(IL)无法积累高水平的乙酰化四酰基蔗糖。对该区域已注释基因的调查显示,有三个候选酰基转移酶,我们使用病毒诱导的基因沉默技术对其功能进行了测试。BAHD 家族酰基转移酶的一个成员(Solyc01g105580,SlAT2)被证明编码一种乙酰辅酶 A 依赖性酰基转移酶,能够在体外酰基化酰基蔗糖。在转基 M82 番茄 SlAT2 的 RNAi 抑制导致酰基糖乙酰化降低,而在产生三酰基蔗糖的 IL1-3 中表达功能性 SlAT2 番茄等位基因则恢复了该 IL 合成乙酰化四酰基糖的能力。具有 SlAT2 启动子驱动 GFP 表达的转基因植物在长而细的腺毛尖端细胞中显示出荧光,这与这些细胞中酰基糖乙酰化的发生相一致。