Soil mite communities (Acari, Mesostigmata) in pure stands on post-agricultural lands: does season matter?

IF 1.8 2区 农林科学 Q2 ENTOMOLOGY Experimental and Applied Acarology Pub Date : 2024-12-05 DOI:10.1007/s10493-024-00968-7
Jacek Malica, Cezary K Urbanowski, Krzysztof Turczański, Grzegorz Rączka, Agnieszka Andrzejewska, Maciej Skorupski, Jacek Kamczyc
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Abstract

Post-agricultural land differs from typical forest land in physical, chemical and biological features. In addition, the environment of this land type is determined, among other things, by the introduced tree species. These differences may be revealed by the biodiversity and abundance of the soil fauna. We analysed the abundance, species richness and diversity of different instars of mesostigmatid mites inhabiting three different habitat types on post-agricultural land (shaped by pure Pinus sylvestris L., Tilia cordata Mill. and Betula pendula Roth stands). We collected 288 soil samples from eight plots in three stands. The collection was conducted in July and October in two consecutive vegetation seasons (2021 and 2022) for Mesostigmata mites community. Soil characteristics (determination of soil group and analysis of physical and chemical properties of soil and litter) were done in July 2021. In total, 399 individuals (266 females, 50 males and 83 juveniles) were classified into 38 taxa (33 species, five genera). Most individuals belonged to the Parasitidae, Laelapidae and Veigaiidae families. The most abundant species were Hypoaspis aculeifer (Canestini) (21.6% of all recorded mites), Veigaia nemorensis (C.L.Koch) (7.8%) and Trachytes aegrota (C.L.Koch) (7.0%). Abundance, species richness and diversity were shaped by collection month and Fe content in soil. The abundance was influenced by N litter content and was significantly lower in P. sylvestris stand in July (0.57 ± 0.23; mean ± SE) than in P. sylvestris (2.17 ± 0.54) and T. cordata (2.15 ± 0.48) stands in October. Moreover, abundance in P. sylvestris stand in October was higher than in B. pendula stand in July (0.78 ± 0.26). Similarly, species richness was significantly lower in P. sylvestris stand in July than in P. sylvestris and T. cordata stands in October (2.17 ± 0.54 and 2.15 ± 0.48, respectively). Higher Shannon's diversity of mite communities was reported in P. sylvestris stand in October (0.40 ± 0.10) than in P. sylvestris and B. pendula stands in July (0.12 ± 0.06 and 0.14 ± 0.08, respectively). Large fluctuations of abundance, species richness and diversity of soil mite communities in P. sylvestris and B. pendula stands between collection months give the insights for creating mixed stands on post-agricultural land. It is worth noticing that the wet season creates the most favourable living environment for mesostigmatid mites in P. sylvestris litter.

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后农用地纯林分土壤螨(蜱螨、中鞭毛螨)群落:季节有影响吗?
后农用地在物理、化学和生物特征上与典型林地不同。此外,这种土地类型的环境,除其他外,是由引进的树种决定的。这些差异可以通过土壤动物的多样性和丰度来揭示。本文分析了后农用地上3种不同生境类型中皮螨的丰度、物种丰富度和不同龄期的多样性。和白桦(Betula pendula)。在3个林分的8个样地采集土壤样品288份。采集时间为7月和10月,连续两个植被季节(2021年和2022年)对中污螨群落进行采集。土壤特征(测定土壤类群,分析土壤和凋落物的理化性质)于2021年7月完成。共有399只(雌虫266只,雄虫50只,幼虫83只),隶属于5属33种38个分类群。大部分幼虫属于寄生科、夜蛾科和夜蛾科。蜱螨种类最多的是小针叶螨(Canestini)(21.6%)、nemorensis (c.l.c hch)(7.8%)和agrota (c.l.c hch)(7.0%)。丰度、物种丰富度和多样性受采集月份和土壤铁含量的影响。丰度受N凋落物含量的影响,7月份林分丰度极显著降低(0.57±0.23;平均值±SE)高于10月份的西洋参(2.17±0.54)和冬虫夏草(2.15±0.48)。10月林分的丰度高于7月林分的丰度(0.78±0.26)。7月林分物种丰富度显著低于10月林分物种丰富度(2.17±0.54和2.15±0.48)。10月林分香农指数(0.40±0.10)高于7月林分香农指数(0.12±0.06和0.14±0.08)。在不同的采集月间,林分土壤螨群落的丰度、物种丰富度和多样性波动较大,这为在农后土地上建立混合林分提供了参考。值得注意的是,湿季为西林凋落物中间皮螨创造了最有利的生存环境。
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来源期刊
CiteScore
3.90
自引率
9.10%
发文量
81
审稿时长
4-8 weeks
期刊介绍: Experimental and Applied Acarology publishes peer-reviewed original papers describing advances in basic and applied research on mites and ticks. Coverage encompasses all Acari, including those of environmental, agricultural, medical and veterinary importance, and all the ways in which they interact with other organisms (plants, arthropods and other animals). The subject matter draws upon a wide variety of disciplines, including evolutionary biology, ecology, epidemiology, physiology, biochemistry, toxicology, immunology, genetics, molecular biology and pest management sciences.
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