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Balanced Xylan Acetylation is the Key Regulator of Plant Growth and Development and Cell Wall Structure and for Industrial Utilization

机译:平衡的木聚糖乙酰化是植物生长和开发的关键调节器以及细胞壁结构和工业利用率

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摘要

Xylan is the most abundant hemicellulose, constitutes about 25–35% of the dry biomass of woody and lignified tissues, and occurs up to 50% in some cereal grains. The accurate degree and position of xylan acetylation is necessary for xylan function and for plant growth and development. The post synthetic acetylation of cell wall xylan, mainly regulated by Reduced Wall Acetylation (RWA), Trichome Birefringence-Like (TBL), and Altered Xyloglucan 9 (AXY9) genes, is essential for effective bonding of xylan with cellulose. Recent studies have proven that not only xylan acetylation but also its deacetylation is vital for various plant functions. Thus, the present review focuses on the latest advances in understanding xylan acetylation and deacetylation and explores their effects on plant growth and development. Baseline knowledge about precise regulation of xylan acetylation and deacetylation is pivotal to developing plant biomass better suited for second-generation liquid biofuel production.
机译:Xylan是最丰富的半纤维素,构成了约25-35%的木质和番茄组织的干生物质,并且在一些谷物中发生了高达50%的50%。木聚糖乙酰化的准确程度和位置对于木聚糖功能和植物生长和发育是必需的。细胞壁木聚糖的后合成乙酰化,主要由壁乙酰化(RWA),滴毛组双折射(TBL)和改变的木糖葡聚糖9(AXY9)基因调节,对于木聚糖与纤维素有效键合是必不可少的。最近的研究证明,不仅是木聚糖乙酰化,而且其脱乙酰化对于各种植物功能至关重要。因此,本综述侧重于了解乙酰乙酰化和脱乙酰化的最新进展,并探讨其对植物生长发育的影响。关于木聚糖乙酰化和脱乙酰化的精确调节的基线知识对于开发植物生物量的致致力,更适合于第二代液体生物燃料生产。

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