首页> 美国卫生研究院文献>Plant Physiology >Restoration of Mature Etiolated Cucumber Hypocotyl Cell Wall Susceptibility to Expansin by Pretreatment with Fungal Pectinases and EGTA in Vitro
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Restoration of Mature Etiolated Cucumber Hypocotyl Cell Wall Susceptibility to Expansin by Pretreatment with Fungal Pectinases and EGTA in Vitro

机译:真菌果胶酶和EGTA预处理恢复成熟的雌化黄瓜下胚轴细胞壁对expansin的敏感性

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摘要

Mature plant cell walls lose their ability to expand and become unresponsive to expansin. This phenomenon is believed to be due to cross-linking of hemicellulose, pectin, or phenolic groups in the wall. By screening various hydrolytic enzymes, we found that pretreatment of nongrowing, heat-inactivated, basal cucumber (Cucumis sativus) hypocotyls with pectin lyase (Pel1) from Aspergillus japonicus could restore reconstituted exogenous expansin-induced extension in mature cell walls in vitro. Recombinant pectate lyase A (PelA) and polygalacturonase (PG) from Aspergillus spp. exhibited similar capacity to Pel1. Pel1, PelA, and PG also enhanced the reconstituted expansin-induced extension of the apical (elongating) segments of cucumber hypocotyls. However, the effective concentrations of PelA and PG for enhancing the reconstituted expansin-induced extension were greater in the apical segments than in the basal segments, whereas Pel1 behaved in the opposite manner. These data are consistent with distribution of more methyl-esterified pectin in cell walls of the apical segments and less esterified pectin in the basal segments. Associated with the degree of esterification of pectin, more calcium was found in cell walls of basal segments compared to apical segments. Pretreatment of the calcium chelator EGTA could also restore mature cell walls' susceptibility to expansin by removing calcium from mature cell walls. Because recombinant pectinases do not hydrolyze other wall polysaccharides, and endoglucanase, xylanase, and protease cannot restore the mature wall's extensibility, we can conclude that the pectin network, especially calcium-pectate bridges, may be the primary factor that determines cucumber hypocotyl mature cell walls' unresponsiveness to expansin.
机译:成熟的植物细胞壁失去了扩展能力,对弹性蛋白无反应。据信这种现象是由于壁中半纤维素,果胶或酚基的交联所致。通过筛选各种水解酶,我们发现用日本曲霉的果胶裂解酶(Pel1)预处理未生长的,热灭活的基础黄瓜(Cucumis sativus)下胚轴可以在体外恢复成熟细胞壁中重构的外源性扩张蛋白诱导的延伸。来自曲霉属的重组果胶酸裂合酶A(PelA)和聚半乳糖醛酸酶(PG)。表现出与Pel1类似的容量。 Pel1,PelA和PG还增强了重构的扩张蛋白诱导的黄瓜下胚轴顶端(伸长)节段的延伸。但是,PelA和PG用于增强重构的扩张蛋白诱导的延伸的有效浓度在根尖段要比在基底段大,而Pel1的表现却相反。这些数据与在顶部段的细胞壁中更多的甲基酯化的果胶和在基础段的较少的酯化的果胶的分布是一致的。与果胶的酯化程度相关,与顶部相比,在基础部分的细胞壁中发现了更多的钙。钙螯合剂EGTA的预处理还可以通过从成熟细胞壁中去除钙来恢复成熟细胞壁对扩展蛋白的敏感性。由于重组果胶酶不会水解其他壁多糖,并且内切葡聚糖酶,木聚糖酶和蛋白酶无法恢复成熟壁的可扩展性,因此我们可以得出结论,果胶网络(尤其是果胶钙桥)可能是决定黄瓜下胚轴成熟细胞壁的主要因素。对弹性蛋白反应迟钝。

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