首页> 美国卫生研究院文献>Journal of Insect Science >Host Plant Effects on Alkaline Phosphatase Activity in the Whiteflies Bemisia tabaci Biotype B and Trialeurodes vaporariorum
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Host Plant Effects on Alkaline Phosphatase Activity in the Whiteflies Bemisia tabaci Biotype B and Trialeurodes vaporariorum

机译:寄主植物对粉虱烟粉虱生物型B和小麦粉虱的碱性磷酸酶活性的影响

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摘要

Bemisia tabaci (Gennadius) B-biotype and Trialeurodes vaporariorum (Westwood) (Hemiptera: Aleyrodidae) often coexist on greenhouse-grown vegetable crops in northern China. The recent spread of B. tabaci B-biotype has largely replaced T. vaporariorum, and B-biotype now overlaps with T. vaporariorum where common hosts occur in most invaded areas. The impact of the B-biotype on the agro eco system appears to be widespread, and involves the ability to compete with and perhaps replace other phytophages like T. vaporariorum. An emerging hypothesis is that the B-biotype is physiologically superior due at least in part to an improved ability to metabolically utilize the alkaline phosphatase pathway. To test this hypothesis, alkaline phosphatase activity was studied in the B-biotype and T. vaporariorum after feeding on a number of different hosts for a range of durations, with and without host switching. Alkaline phosphatase activity in T. vaporariorum was 1.45 to 2.53-fold higher than that of the B-biotype when fed on tomato for 4 and 24 h, or switched from tomato to cotton and cabbage for the same durations. However, alkaline phosphatase activity in the B-biotype was 1.40 to 3.35-fold higher than that of T. vaporariorum when the host switching time was ∼72 and ∼120 h on the same plant. Both short-term (4 h) and long-term (72 h) switching of plant hosts can significantly affect the alkaline phosphatase activity in the two species. After ∼120 h, feeding on tomato and cotton alkaline phosphatase activity in the B-biotype was significantly higher than that of T. vaporariorum. It was shown that alkaline phosphatase aids the species feeding on different plant species, and that the B-biotype is physiologically superior to T. vaporariorum in utilizing the enzyme compared to T. vaporariorum over longer periods of feeding.
机译:烟粉虱(Bemisia tabaci(Gennadius)B-biotype和Trialeurodes vaporariorum(Westwood)(Hemiptera:Aleyrodidae)通常在中国北方温室种植的蔬菜作物上共存。烟粉虱B-生物型最近的传播已大大取代了T.vaporariorum,而B-生物型现在与T.vaporariorum重叠,在大多数入侵地区常见寄主。 B-生物型对农业生态系统的影响看来是广泛的,并且涉及与其他噬菌体竞争的能力,并可能替代其像T.vaporariorum。一个新出现的假说是,B-生物型在生理上是优越的,至少部分原因是由于代谢利用碱性磷酸酶途径的能力提高。为了检验这一假设,在饲喂许多不同的宿主一段时间后,在有和没有宿主切换的情况下,在B-生物型和T.vaporariorum中研究了碱性磷酸酶的活性。饲喂番茄4小时和24小时,或在相同的时间里从番茄转为棉花和卷心菜后,蒸气杆菌中的碱性磷酸酶活性比B生物型高1.45至2.53倍。然而,当同一植物上的宿主切换时间分别为〜72和〜120 h时,B生物型的碱性磷酸酶活性比蒸气青霉高1.40至3.35倍。短期(4小时)和长期(72小时)植物寄主的转换都可以显着影响这两个物种的碱性磷酸酶活性。约120小时后,以B型生物为食的番茄和棉花上碱性磷酸酶的活性显着高于气单胞菌。结果表明,碱性磷酸酶可帮助以不同植物种为食的物种,并且在较长的摄食期间,在利用该酶方面,B-生物型在生理上优于汽提木霉,优于汽提木霉。

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