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Enhanced stolon growth and metabolic adjustment in creeping bentgrass with elevated CO2 concentration

机译:增强了匍匐的Bentgrass升高了CA2浓度的匍匐茎增长和代谢调整

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Stolon growth and proliferation are highly desirable traits for stoloniferous plant species. The objectives of this study were to elucidate the effects of elevated CO2 on stolon growth in a stoloniferous perennial grass species, creeping bentgrass (Agrosds stolonifera), and identify metabolites and associated metabolic pathways for CO2-regulation of stolon growth under well-watered and drought conditions. Plants were grown under either ambient CO2 concentration at 400 mu mol mol(-1) or elevated CO2 concentration at 800 mu mol mol(-1) and subjected to well watered control or drought stress by withholding irrigation in growth chambers. Elevated CO2 led to increased number of stolon internodes and stolon length, and mitigated drought damages to creeping bentgrass, as manifested by the increased leaf relative water content and reduced electrolyte leakage. Elevated CO2 increased stolon content of metabolites involved in carbohydrate reserves, respiratory metabolism, and membrane maintenance, including maltose, mannobiose, galactinol, 5-oxoproline, galacturonic acid, glycolic acid, gluconic acid, isoferulic acid, citric acid, threonic acid, lactic acid, succinic acid, and linolenic acid and linoleic acid. The CO2-reponsive metabolites for carbohydrate reserves, respiratory metabolism, and membrane maintenance could contribute to the enhanced stolon growth, thereby potentially facilitating rapid stand establishment and increasing shoot biomass production in perennial grass species.
机译:斯托伦生长和增殖对植物物种的高度理想的性状。本研究的目的是阐明二氧化碳升高对匍匐茎的多年生草种类的匍匐茎生长的影响,匍匐前进(Agrosds Stolonifera),并鉴定代谢物和相关的代谢途径,用于在浇水和干旱下的匍匐茎增长的二氧化碳增长状况。在400 mol摩尔(-1)的环境CO 2浓度下在800μmol(-1)中以800μmol(-1)的CO 2浓度升高,并通过预制灌溉在生长室中进行良好的浇水控制或干旱胁迫。高架二氧化碳导致斯托隆节间和匍匐长度的数量增加,并减少了爬行本草的干旱损害,如增加的叶片相对含水量和降低电解质泄漏。升高的二氧化碳增加了代谢物的代谢物含量增加,涉及碳水化合物储备,呼吸代谢和膜维持,包括麦芽糖,甘露糖,半乳糖醇,5-氧化申请,半乳糖醛酸,乙醇酸,葡萄糖酸,异甲酸,柠檬酸,脱康酸,乳酸,琥珀酸和亚麻酸和亚油酸。用于碳水化合物储备,呼吸代谢和膜维持的CO2 - 伴代代谢物可能有助于增强的匍匐茎增长,从而潜在促进快速站立和增加多年生草地的射击生物量产量。

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