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在矮牵牛花瓣中同时敲除六个β-半乳糖苷酶基因可防止果胶半乳糖醛酸聚糖的丢失,但会降低花瓣强度。

Simultaneous knock-down of six β-galactosidase genes in petunia petals prevents loss of pectic galactan but decreases petal strength.

机构信息

The New Zealand Institute for Plant & Food Research Limited, Food Industry Science Centre, Palmerston North, 4442, New Zealand.

The New Zealand Institute for Plant & Food Research Limited, Food Industry Science Centre, Palmerston North, 4442, New Zealand.

出版信息

Plant Physiol Biochem. 2017 Apr;113:208-221. doi: 10.1016/j.plaphy.2017.02.005. Epub 2017 Feb 8.

Abstract

Galactose (Gal) is incorporated into cell wall polysaccharides as flowers open, but then is lost because of β-galactosidase activity as flowers mature and wilt. The significance of this for flower physiology resides in the role of galactan-containing polysaccharides in the cell wall, which is still largely unresolved. To investigate this, transcript accumulation of six cell wall-associated β-galactosidases was simultaneously knocked down in 'Mitchell' petunia (Petunia axillaris x (P. axillaris x P. hybrida)) flower petals. The multi-PhBGAL RNAi construct targeted three bud- and three senescence-associated β-galactosidase genes. The petals of the most down-regulated line (GA19) were significantly disrupted in galactose turnover during flower opening, and at the onset of senescence had retained 86% of their galactose compared with 20% in the controls. The Gal content of NaCO-soluble cell wall extracts and the highly insoluble polysaccharides associated with cellulose were particularly affected. Immunodetection with the antibody LM5 showed that much of the cell wall Gal in GA19 was retained as galactan, presumably the side-chains of rhamnogalacturonan-I. The flowers of GA19, despite having retained substantially more galactan, were no different from controls in their internal cell arrangement, dimensions, weight or timing of opening and senescence. However, the GA19 petals had less petal integrity (as judged by force required to cause petal fracture) after opening and showed a greater decline in this integrity with time than controls, raising the possibility that galactan loss is a mechanism for helping to maintain petal tissue cohesion after flower opening.

摘要

半乳糖(Gal)在花朵开放时被掺入细胞壁多糖中,但随着花朵成熟和枯萎,由于β-半乳糖苷酶的活性,半乳糖会丢失。这对半乳糖在细胞壁中含有的多糖的作用对花生理学具有重要意义,但细胞壁中含有的多糖的作用仍在很大程度上尚未解决。为了研究这一点,我们同时敲低了‘Mitchell’矮牵牛(Petunia axillaris x (P. axillaris x P. hybrida))花瓣中 6 种与细胞壁相关的β-半乳糖苷酶的转录积累。多-PhBGAL RNAi 构建体靶向 3 个芽和 3 个衰老相关的β-半乳糖苷酶基因。下调最明显的线(GA19)的花瓣在花朵开放期间半乳糖转化中受到严重破坏,并且在衰老开始时保留了 86%的半乳糖,而对照中仅保留了 20%。NaCO 可溶性细胞壁提取物和与纤维素相关的高度不溶性多糖的 Gal 含量受到特别影响。用抗体 LM5 进行免疫检测表明,GA19 中的细胞壁 Gal 大部分被保留为半乳糖醛酸,可能是鼠李半乳糖醛酸聚糖-I 的侧链。尽管 GA19 保留了更多的半乳糖醛酸,但与对照相比,GA19 的花朵在内部细胞排列、尺寸、重量或开放和衰老的时间上没有差异。然而,GA19 的花瓣在开放后其花瓣完整性(根据引起花瓣断裂所需的力来判断)与对照不同,并且随着时间的推移其完整性下降更大,这表明半乳糖醛酸的丢失可能是一种在花朵开放后帮助维持花瓣组织内聚的机制。

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