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生菜细胞壁特性的改良可延长其货架期。

Modification of cell wall properties in lettuce improves shelf life.

机构信息

School of Biological Sciences, University of Southampton, Bassett Crescent East, Southampton, SO16 7PX, UK.

出版信息

J Exp Bot. 2010 Feb;61(4):1239-48. doi: 10.1093/jxb/erq038.

Abstract

It is proposed that post-harvest longevity and appearance of salad crops is closely linked to pre-harvest leaf morphology (cell and leaf size) and biophysical structure (leaf strength). Transgenic lettuce plants (Lactuca sativa cv. Valeria) were produced in which the production of the cell wall-modifying enzyme xyloglucan endotransglucosylase/hydrolase (XTH) was down-regulated by antisense inhibition. Independently transformed lines were shown to have multiple members of the LsXTH gene family down-regulated in mature leaves of 6-week-old plants and during the course of shelf life. Consequently, xyloglucan endotransglucosylase (XET) enzyme activity and action were down-regulated in the cell walls of these leaves and it was established that leaf area and fresh weight were decreased while leaf strength was increased in the transgenic lines. Membrane permeability was reduced towards the end of shelf life in the transgenic lines relative to the controls and bacteria were evident inside the leaves of control plants only. Most importantly, an extended shelf-life of transgenic lines was observed relative to the non-transgenic control plants. These data illustrate the potential for engineering cell wall traits for improving quality and longevity of salad crops using either genetic modification directly, or by using markers associated with XTH genes to inform a commercial breeding programme.

摘要

有人提出,沙拉作物的采后寿命和外观与采前叶片形态(细胞和叶片大小)和生物物理结构(叶片强度)密切相关。通过反义抑制,生产出了细胞壁修饰酶木葡聚糖内转糖基酶/水解酶(XTH)产量降低的转基因生菜(Lactuca sativa cv. Valeria)植物。结果表明,在 6 周龄植物的成熟叶片中和货架期过程中,多个独立转化的线系中 LsXTH 基因家族的成员被下调。因此,这些叶片细胞壁中的木葡聚糖内转糖基酶(XET)酶活性和作用被下调,并且发现转基因系的叶片面积和鲜重减少,而叶片强度增加。在货架期结束时,与对照相比,转基因系的膜通透性降低,只有对照植物的叶片内部有细菌。最重要的是,与非转基因对照植物相比,观察到转基因系的货架期延长。这些数据表明,使用遗传修饰或使用与 XTH 基因相关的标记来告知商业育种计划,直接对细胞壁特性进行工程改造,有可能提高沙拉作物的品质和寿命。

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