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首页> 外文期刊>The Journal of Experimental Biology >HONEYDEW SUGARS AND OSMOREGULATION IN THE PEA APHID ACYRTHOSIPHON PISUM
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HONEYDEW SUGARS AND OSMOREGULATION IN THE PEA APHID ACYRTHOSIPHON PISUM

机译:豌豆蚜虫糖蜜中的蜜糖和渗透调节

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Pea aphids, Acyrthosiphon pisum, containing their symbiotic bacteria (untreated aphids) and experimentally deprived of their bacteria by treatment with the antibiotic rifampicin (antibiotic-treated aphids) were reared on the plant Vicia faba, The sugars in the honeydew produced by untreated aphids comprised predominantly the monosaccharides glucose and fructose, while the honeydew of antibiotic-treated aphids contained considerable amounts of oligosaccharides of up to 16 hexose units, The honeydew and haemolymph of the aphids were iso-osmotic, and their osmotic pressure was significantly lower in untreated aphids (0.91-0.95 MPa) than in antibiotic-treated aphids (1.01-1.05 MPa) (P<0.05). For insects reared on chemically defined diets containing 0.15-1.0 mol l(-1) sucrose (osmotic pressure 1.1-4.0 MPa), the osmotic pressure of the aphid haemolymph did not vary with dietary osmotic pressure, but was regulated to approximately 1.0 MPa in untreated and 1.3 MPa in antibiotic-treated aphids, The sugars in the aphid honeydew varied with dietary sucrose concentration; with monosaccharides dominant at low concentrations and oligosaccharides dominant at high concentrations of dietary sucrose, The lowest dietary sucrose concentration at which honeydew oligosaccharides were detected was 0.2 mol l(-1) for the antibiotic-treated aphids and 0.3 mol l(-1) for untreated aphids, These data indicate that the aphid, and not its associated microbiota, mediates the synthesis of oligosaccharides when the osmotic pressure of the ingesta is high. [References: 41]
机译:将豌豆蚜虫(Acyrthosiphon pisum),包含其共生细菌(未经处理的蚜虫),并通过利福平抗生素(经抗生素处理的蚜虫)进行处理,从实验上将其细菌剥夺,并在蚕豆植物Vicia faba上饲养。主要是单糖葡萄糖和果糖,而经过抗生素处理的蚜虫的蜜露中含有相当数量的低聚糖,最多为16己糖单位。蚜虫的蜜露和血淋巴是等渗的,未经处理的蚜虫的渗透压明显较低( 0.9-0.95 MPa)(1.01-1.05 MPa)(P <0.05)。对于使用含有0.15-1.0 mol l(-1)蔗糖(渗透压1.1-4.0 MPa)的化学成分确定的日粮饲养的昆虫,蚜虫血淋巴的渗透压没有随饮食渗透压而变化,但是在2000年被调节为大约1.0 MPa。未经处理的和经抗生素处理过的蚜虫为1.3 MPa,蚜虫蜜露中的糖随日粮中蔗糖浓度的变化而变化。在低浓度的蔗糖中单糖占优势,在高浓度的蔗糖中寡糖占优势,经抗生素处理的蚜虫中检测到的低聚糖的最低饮食蔗糖浓度为0.2 mol l(-1),而对于经处理的蚜虫,最低的饮食蔗糖浓度为0.3 mol l(-1)。这些数据表明,当食入物的渗透压较高时,蚜虫而不是其相关的微生物群会介导寡糖的合成。 [参考:41]

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