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首页> 外文期刊>Plant physiology >Effect of antisense suppression of endopolygalacturonase activity on polyuronide molecular weight in ripening tomato fruit and in fruit homogenates.
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Effect of antisense suppression of endopolygalacturonase activity on polyuronide molecular weight in ripening tomato fruit and in fruit homogenates.

机译:反义抑制内聚半乳糖醛酸内切酶活性对成熟番茄果实和果实匀浆中聚脲醛酸分子量的影响。

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摘要

Tomato (Lycopersicon esculentum) fruits in which endopolygalacturonase (PG) activity had been suppressed to <1% of wild-type levels were slightly firmer than nontransgenic controls later in ripening. Enzymically inactive cell walls were prepared from these ripening fruit using Tris-buffered phenol. When extracted with chelator followed by Na2CO3, the amounts of pectin solubilized from cell walls of nontransgenic control or from transgenic antisense PG fruit were similar. Size-exclusion chromatography analysis showed that, relative to controls, in antisense PG fruit polyuronide depolymerization was delayed in the chelator-soluble fraction throughout ripening and reduced in the Na2CO3-soluble fraction at the overripe stage. Reduced pectin depolymerization rather than altered extractability thus may have contributed to enhanced fruit firmness. Substantially larger effects of suppressed PG activity were detected in tomato fruit homogenates processed to paste. In control paste the majority of the polyuronide was readily soluble in water and was very highly depolymerized. In antisense PG paste the proportion of polyuronide solubilized by water was reduced, and polyuronides retained a high degree of polymerization. The suppression of fruit PG activitythus has a small effect on polyuronide depolymerization in the fruit but a much larger effect in paste derived from these fruit. This indicates that in the cell wall PG-mediated degradation of polyuronide is normally restricted but that in tissue homogenates or in isolated cell walls this restriction is removed and extensive pectin disassembly results unless PG is inactivated.
机译:番茄(Lycopersicon esculentum)果实中的内聚半乳糖醛酸酶(PG)活性已被抑制至野生型水平的<1%,其结果在成熟后比非转基因对照稍强。使用Tris缓冲酚从这些成熟的果实中制备无酶活性的细胞壁。当先用螯合剂再用Na2CO3提取时,从非转基因对照的细胞壁或从转基因反义PG果实中溶解的果胶的量相似。尺寸排阻色谱分析表明,相对于对照而言,在反义PG中,聚脲化合物在成熟期间螯合剂可溶级分的解聚被延迟,而在熟熟阶段,Na2CO3可溶级分的解聚减少。因此,减少果胶解聚而不是改变提取率可能有助于提高水果的硬度。在加工成糊状的番茄果实匀浆中检测到了抑制PG活性的较大影响。在对照糊剂中,大多数聚脲醛酸酯易于溶于水并且非常高度解聚。在反义PG糊剂中,被水溶解的聚脲醛酸酯的比例降低了,聚脲醛酸酯保持了高聚合度。因此,抑制水果中PG的活性对水果中聚脲醛酸酯解聚的影响很小,但对衍生自这些水果的糊剂的影响则大得多。这表明在细胞壁中,PG介导的聚脲醛酸酯的降解通常受到限制,但是在组织匀浆中或在分离的细胞壁中,这种限制被消除,除非PG失活,否则果胶会大量分解。

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