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首页> 外文期刊>Journal of Insect Physiology >A phloem-sap feeder mixes phloem and xylem sap to regulate osmotic potential
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A phloem-sap feeder mixes phloem and xylem sap to regulate osmotic potential

机译:韧皮部汁液进料器将韧皮部和木质部汁液混合以调节渗透势

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Phloem-sap feeders (Hemiptera) occasionally consume the dilute sap of xylem, a behaviour that has previously been associated with replenishing water balance following dehydration. However, a recent study reported that non-dehydrated aphids ingested xylem sap. Here, we tested the hypothesis that the consumption of xylem sap, which has a low osmolality, is a general response to osmotic stresses other than dehydration. Alate aphids were subjected to different treatments and subsequently transferred onto a plant, where electrical penetration graph (EPG) was used to estimate durations of passive phloem sap consumption and active sucking of xylem sap. The proportion of time aphids fed on xylem sap (i.e., time spent feeding on xylem sap/total time spent feeding on phloem plus xylem sap) was used as a proxy of the solute concentration of the uptake. The proportion of time alate aphids fed on xylem sap increased: (1) with the time spent imbibing an artificial diet containing a solution of sucrose, which is highly concentrated in phloem sap and is mainly responsible for the high osmotic potential of phloem sap; (2) with the osmotic potential of the artificial diet, when osmotic potential excess was not related to sucrose concentration; and (3) when aphids were deprived of primary symbionts, a condition previously shown to lead to a higher haemolymph osmotic potential. All our results converge to support the hypothesis that xylem sap consumption contributes to the regulation of the osmotic potential in phloem-sap feeders
机译:韧皮树汁饲喂器(半翅目)有时会消耗木质部的稀树液,这种行为以前与脱水后补充水平衡有关。但是,最近的一项研究报告说,未脱水的蚜虫会摄入木质部树液。在这里,我们测试了以下假设:渗透压低的木质部汁液的消耗是对除脱水以外的渗透压的一般反应。先对蚜虫进行不同处理,然后转移到植物上,用电渗透图(EPG)估算被动韧皮部汁液消耗和木质部树液的主动抽吸的持续时间。以蚜虫汁液为食的蚜虫的比例(即以木质液汁为食的时间/以韧皮部和木质素汁液为食的总时间)被用作摄取的溶质浓度的代表。以木质部汁液喂养的蚜虫蚜虫的时间比例增加了:(1)随着时间摄入含蔗糖溶液的人工饮食,蔗糖溶液高度集中在韧皮部汁液中,并且是造成韧皮部汁液高渗透力的主要原因; (2)与人工饮食的渗透势有关,当渗透势过量与蔗糖浓度无关时; (3)当蚜虫被剥夺了主要的共生菌时,以前显示的这种情况会导致更高的血淋巴渗透潜能。我们所有的结果都得到支持,支持了木质部汁液消耗有助于韧皮部汁液进料器渗透势调节的假设。

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