干旱影响了以多年生黑麦草为食的非洲黑甲虫

Q3 Environmental Science
Katrin Gabriela Hewitt, Craig B. Phillips, Rainer W. Hofmann, Olivier J. Ball, Dongwen Luo, Alison J. Popay
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引用次数: 0

摘要

植物,食草昆虫和真菌Epichloë内生菌之间的相互作用。然而,水资源供应波动,气候变化加剧了这一现象,对新西兰畜牧业的成功构成了挑战。气候变化(如干旱加剧)对草地害虫的影响很少受到重视。在一项无选择生物试验中,研究人员给非洲黑甲虫(ABB)喂食半合成饲料,其中含有冻干叶片材料,这些材料来自干旱暴露和水分充足的多年生黑麦草,其中含有内生菌株AR37或NZCT,或者不含内生菌(Nil)。测定并比较日粮消耗量、甲虫体重变化、真菌生物碱浓度、植物激素和氮反射指数(NRI)浓度。除了AR37外,ABB消耗的更多的是含有干旱暴露的食物而不是水分充足的食物,Nil增加了61%,含有NZCT的食物增加了50%,尽管这些影响没有伴随着相应的ABB体重变化。在此,我们讨论了在日益干旱的背景下,这些结果对新西兰牧场ABB损害的影响,并说明了ABB损害的空间格局在未来75年将如何变化。目前ABB人口不多的地区,如Manawatū-Whanganui、Wairarapa和Marlborough,将越来越容易受到破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drought impacts African black beetle feeding on perennial ryegrass
interactions between plants, herbivorous insects and fungal Epichloë endophytes. However, water availability fluctuates, a phenomenon intensified by climate change, challenging the success of NewZealand’s pastoral industry. The impacts of climatic changes, such as intensifying drought, on pastoral insect pests have received little attention. In a no-choice bioassay, African black beetle (ABB) were fed semi-synthetic diets containing freeze-dried foliage material from drought-exposed and well-watered perennial ryegrass containing endophyte strains AR37 or NZCT, or with material free of endophyte (Nil). Diet consumption, beetle weight change, fungal alkaloid concentrations, phytohormones, and NRI (nitrogen reflectance index) concentrations were measured and compared. Except for AR37, ABB consumed more diets containing drought-exposed rather than well-watered material, with a 61% increase in Nil and a 50% increase in diets containing NZCT, though these effects were not accompanied by corresponding ABB weight changes. Here, we discuss the implications of these results on ABB damage in New Zealand pastures in the context of increasing drought and illustrate how spatial patterns of ABB damage could change over the next 75 years. Areas that do not currently have high populations of ABB such as Manawatū-Whanganui, Wairarapa and Marlborough will become increasingly vulnerable to damage.
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来源期刊
Journal of New Zealand Grasslands
Journal of New Zealand Grasslands Environmental Science-Nature and Landscape Conservation
CiteScore
0.90
自引率
0.00%
发文量
27
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