首页> 外文期刊>Geoderma: An International Journal of Soil Science >A preliminary investigation of the effect of mole cricket (Gryllotalpa unispina Saussure; Orthoptera: Gryllotalpidae) activity on soil evaporation in semiarid Loess Plateau of northwest China
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A preliminary investigation of the effect of mole cricket (Gryllotalpa unispina Saussure; Orthoptera: Gryllotalpidae) activity on soil evaporation in semiarid Loess Plateau of northwest China

机译:鼹鼠蟋蟀(GRYLLOTALPA UNISPINA SAUSSURE; ORTHOPTERA:GRYLLOTALPIDAE)活性对西北西北地区黄土高原土壤蒸发作用的初步调查

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摘要

Many insect species, especially soil-inhabiting ones, greatly affect the physical and chemical properties of soil. The widespread soil-inhabiting mole cricket on the northern Loess Plateau creates subterranean tunnels, damages topsoil structures, and likely alters soil infiltration, erosion, and evaporation. In this study, we assessed the effect of adult and immature mole crickets (Gryllotalpa unispina Saussure; Orthoptera: Gryllotalpidae) on soil water evaporation in loam soil. A series of simulation experiments was conducted in iron buckets (20 cm in diameter and 20 cm high) filled with disturbed soil at the Shenmu Erosion and Environment Research Station. The soil was saturated and drained until the water content approached the field moisture capacity (25.3%), and then the soil was subjected to evaporation for 58 days. Evaporation was found to occur in two stages. In the first 18 days, daily evaporation in soil with adult and immature mole crickets was significantly (P < 0.05) lower than that in soil without mole cricket. Compared with bare soil treatment, the cumulative evaporation of soil treated with adult and immature mole crickets decreased by 24.6% and 13.9%, respectively. In the second stage, daily evaporation in soil treated with mole cricket was greater than that in bare soil due to the higher soil moisture in treatments with mole cricket in the first stage. Under the condition of continuous drought, mole cricket activity had a lag effect on soil water evaporation. The effects of mole cricket activity on soil evaporation depended on the soil-surface disturbance area, i.e., a larger disturbance area corresponded to more greatly reduced soil-evaporation function. These results can help elucidate the effects of soil-inhabiting insects on water movement in semiarid areas.
机译:许多昆虫物种,特别是土壤居住的物种,极大地影响了土壤的物理和化学性质。北部黄土高原上广泛的土壤鼹鼠蟋蟀造成地下隧道,损害了表土结构,并且可能改变土壤浸润,侵蚀和蒸发。在这项研究中,我们评估了成人和未成熟的痣蟋蟀(Gryllotalpa Unispina Saussure; Orthoptera:Gryllotalpidae)对壤土水土蒸发的影响。一系列仿真实验是在沉默侵蚀和环境研究站的造成干扰土壤中的铁桶(直径20厘米和20厘米高)进行的模拟实验。土壤饱和并排出,直至水含量接近现场水分容量(25.3%),然后对土壤蒸发58天。发现蒸发发生在两个阶段。在前18天中,使用成人和未成熟的鼹鼠蟋蟀的土壤中的每日蒸发显着(P <0.05)低于没有鼹鼠板球的土壤中的土壤。与裸露土壤处理相比,分别用成人和未成熟摩尔蟋蟀处理的土壤累积蒸发分别下降了24.6%和13.9%。在第二阶段,由于在第一阶段的治疗方法中的土壤水分较高,用鼹鼠蟋蟀处理的土壤中的每日蒸发大于裸土。在连续干旱的条件下,鼹鼠蟋蟀活性对土壤水蒸发具有滞后作用。鼹鼠蟋蟀活性对土壤蒸发区域的影响,即土壤表面扰动区域,即较大的干扰区域对应于更大减少的土壤蒸发功能。这些结果可以帮助阐明土壤昆虫对半干旱地区水运动的影响。

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