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Short De-Etiolation Increases the Rooting of VC801 Avocado Rootstock

机译:短的去脱硫酸层增加了VC801鳄梨砧木的根

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摘要

Dark-grown (etiolated) branches of many recalcitrant plant species root better than their green counterparts. Here it was hypothesized that changes in cell-wall properties and hormones occurring during etiolation contribute to rooting efficiency. Measurements of chlorophyll, carbohydrate and auxin contents, as well as tissue compression, histological analysis and gene-expression profiles were determined in etiolated and de-etiolated branches of the avocado rootstock VC801. Differences in chlorophyll content and tissue rigidity, and changes in xyloglucan and pectin in cambium and parenchyma cells were found. Interestingly, lignin and sugar contents were similar, suggesting that de-etiolated branches resemble the etiolated ones in this respect. Surprisingly, the branches that underwent short de-etiolation rooted better than the etiolated ones, and only a slight difference in IAA content between the two was observed. Gene-expression profiles revealed an increase in ethylene-responsive transcripts in the etiolated branches, which correlated with enrichment in xyloglucan hydrolases. In contrast, transcripts encoding pectin methylesterase and pectolyases were enriched in the de-etiolated branches. Taken together, it seems that the short de-etiolation period led to fine tuning of the conditions favoring adventitious root formation in terms of auxin–ethylene balance and cell-wall properties.
机译:许多顽皮的植物物种的深色(精化)分支比其绿色对应物更好。在这里,它假设在金光酸层期间发生的细胞壁性质和激素的变化有助于生根效率。在鳄梨砧木VC801的硫酸化和去硫化物分支中测定叶绿素,碳水化合物和植物素含量的测量,以及组织压缩,组织学分析和基因表达谱。发现了叶绿素含量和组织刚性的差异,以及钩状葡聚糖和蛋白酶和薄壁细胞中的木糖葡聚糖和果胶的变化。有趣的是,木质素和糖含量相似,表明去硫化的分支类似于这方面的硫酸盐。令人惊讶的是,经过短的脱噻肟的分支生根而不是过硫化物质,并且观察到两者之间的IAA含量的轻微差异。基因表达型材显示出乙烯响应转录物中的乙烯响应转录物的增加,其与木葡聚糖水解酶中的富集相关。相反,编码果胶甲基酯酶和甲基聚碳的转录物富含去氧的分支。在一起,似乎短的脱硫期导致在助长乙烯平衡和细胞壁性质方面有利于不定根形成的条件的微调。

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