首页> 外文期刊>Biocontrol Science and Technology >Pre-release evaluation of absolute spillover impact risk of Physonota maculiventris (Chrysomelidae: Cassidinae) on non-target plant species Helianthus annuus (Asteraceae) and Zea mays (Poaceae) in South Africa
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Pre-release evaluation of absolute spillover impact risk of Physonota maculiventris (Chrysomelidae: Cassidinae) on non-target plant species Helianthus annuus (Asteraceae) and Zea mays (Poaceae) in South Africa

机译:对南非的非靶植物物种Helianthus(Asteraceae)和Zea Archers(Asteraceae)和Zea Archys(植物科)和Zea Arges(茶叶)和Zea Arms(Poaceae)对南非的非靶向溢出危险的预释放危险

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摘要

The tortoise beetle, Physonota maculiventris (Coleoptera: Chrysomelidae), a candidate biological control agent of Tithonia diversifolia (Hemsl.) A.?Gray (Asteraceae) was screened for spillover risks on non-target plant species in South Africa. Studies were conducted to measure the absolute feeding damage and reproductive performance of P.?maculiventris on non-target plant species, Helianthus annuus L.?(Asteraceae) and Zea mays L.?(Poaceae). The influence of spillover on generational build-up performance on the non-target plant species was also investigated. Adult female beetles were switched from T.?diversifolia at 14 (actively feeding colony) or 24 (gravid colony) days to the non-target species. Likewise, as a backup or control, female beetles were exposed to H.?annuus in a no-choice situation and switched to T.?diversifolia and Z.?mays. Feeding damage, adult longevity and egg production of P.?maculiventris were significantly lower on H.?annuus, compared to those metrics on T.?diversifolia. Gravid P.?maculiventris adults switched from T.?diversifolia on the 14th day after emergence laid a few egg batches on the leaf surfaces of Z.?mays, but no signs of feeding were observed. Furthermore, the population of P.?maculiventris significantly increased by 11.7 fold (26.8–312.5 adults) between the first (F1) and second (F2) generations on T.?diversifolia, while on the non-target, H.?annuus, it decreased from 6.3 to zero (0). The study concludes that P.?maculiventris will sustain its populations entirely on the target, T.?diversifolia population stands associated with or without H.?annuus and Z.?mays cultivations at different scales in South Africa.
机译:乌龟甲虫,physononoota maculiventris(鞘翅目:Chrysomelidae),一种候选人的植物植物植物(Hemsl。)A.?gray(Asteraceae)被筛查南非非靶植物物种的溢出风险。进行研究以测量非靶植物物种的P.? Maculiventris的绝对饲养损伤和生殖性能,Helianthus Anuus L.?(asteraceae)和Zea mays L.?(poaceae)。还研究了溢出对非靶植物物种对非靶植物物种的产生性能的影响。成年女性甲虫从T.?diversifolia切换到14(积极喂养菌落)或24天(妊娠菌落)天到非靶标物种。同样,作为备用或控制,雌性甲虫在无选择性情况下暴露于H.Annuus,并切换到T.?diversifolia和Z.? Mays。与T.Ondiversifolia上的指标相比,在H.Nmaculiventris的喂养损伤,成人寿命和卵产量显着降低。妊娠P.?Maculiventris成年人从T.?diversifolia切换出来的第14天在出现后占据了Z的叶片表面上的几个蛋批次,但没有观察到饲养迹象。此外,P.?Maculiventris的群体在T.Ondiverifolia上的第一(F1)和第二(F2)代之间显着增加11.7倍(26.8-312.5天),而非目标,H.?Annuus,它从6.3减少到零(0)。该研究的结论是,P.?Maculiventris将完全掌握其目标,T.?diversifolia人口与南非不同尺度的不同鳞片和Z.?Mays培养。

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