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生活在临界状态:新热带植绥螨Typhlodromalus aripo在哪里度过旱季?

Living at the threshold: where does the neotropical phytoseiid mite Typhlodromalus aripo survive the dry season?

作者信息

Zundel Christine, Hanna Rachid, Scheidegger Urs, Nagel Peter

机构信息

Swiss College of Agriculture, Länggasse 85, 3052, Zollikofen, Switzerland.

出版信息

Exp Appl Acarol. 2007;41(1-2):11-26. doi: 10.1007/s10493-007-9055-4. Epub 2007 Mar 1.

Abstract

The establishment of the neotropical predatory mite Typhlodromalus aripo in sub-Saharan Africa has resulted in broadly successful biological control of the cassava green mite Mononychellus tanajoa throughout the cassava belt of Africa. In some mid-altitude areas and drier lowland savannahs of sub-Saharan Africa, which are characterized by cool or hot long (> or =5 months) dry seasons, the predator disappears from its habitat in the cassava apex during the dry season and reappears after the onset of rains. It is not known, however, where the predator remains during this time period. In this study, we conducted a field enclosure experiment of cassava plants with the objectives to determine if (a) T. aripo survives at very low densities in the apex, if (b) it survives in the soil or leaf litter below the cassava plant, and if (c) it recolonizes the cassava plant from the surrounding vegetation. Towards the end of the dry season, when the predators had disappeared from all cassava plants included in the experiment, five treatments were applied: (1) plants without enclosure; (2) plants with enclosure; (3) plants with enclosure, apices removed; (4) plants with enclosure, glue barrier around stem; and (5) plants kept free of T. aripo, without enclosure. Predator (re)appearance on cassava apices was monitored non-destructively at weekly intervals and was expressed as the proportion of plants with at least one apex with T. aripo per total number of plants of the treatment. The predators reappeared first on the plants of the treatments (1), (2), and (4). With a time lag of 7-8 weeks, the predators appeared also on the plants of the treatments (3) and (5). The time pattern of the predator's (re)appearance in the cassava apex of the different treatments suggests that (a) T. aripo survives the dry season in very low densities in the cassava apex; this result is supported by an assessment of the efficiency of non-destructive visual in-field apex inspections which proved that about 10% of the cassava apices that had T. aripo were not recognized as such; (b) T. aripo does not survive in the soil or leaf litter, but we did document cases in a screenhouse experiment, where few individuals migrated down to the ground and walked over exposed soil until they reached the apex bouquet traps; additionally, microclimate measurements in various cassava plant strata proved that the cassava apex and the cassava stem base are the locations with the highest relative humidity during the dry season--which makes the stem base a potentially interesting refuge; (c) T. aripo does not survive in the surrounding vegetation, which is supported by a vegetation survey, where T. aripo was not found on any other plant species than cassava.

摘要

新热带捕食螨阿里波钝绥螨在撒哈拉以南非洲的定殖,已在非洲木薯种植带对木薯绿螨(Mononychellus tanajoa)实现了广泛成功的生物防治。在撒哈拉以南非洲的一些中海拔地区以及较干燥的低地稀树草原,其特点是有凉爽或炎热的长(≥5个月)旱季,这种捕食螨在旱季会从木薯顶端的栖息地消失,降雨开始后又重新出现。然而,在此期间捕食螨在哪里留存并不清楚。在本研究中,我们对木薯植株进行了田间围栏试验,目的是确定:(a)阿里波钝绥螨是否能在顶端以极低密度存活;(b)它是否能在木薯植株下方的土壤或落叶层中存活;以及(c)它是否能从周围植被重新定殖到木薯植株上。在旱季快结束时,当捕食螨已从试验中所有木薯植株上消失时,设置了五种处理:(1)无围栏的植株;(2)有围栏的植株;(3)有围栏且顶端去除的植株;(4)有围栏且在茎周围设置胶水屏障的植株;(5)无阿里波钝绥螨且无围栏的植株。每周对木薯顶端捕食螨的(重新)出现情况进行无损监测,并表示为每个处理中至少有一个顶端有阿里波钝绥螨的植株占该处理植株总数的比例。捕食螨首先在处理(1)、(2)和(4)的植株上重新出现。有7 - 8周的时间滞后,捕食螨也出现在处理(3)和(5)的植株上。不同处理的木薯顶端捕食螨(重新)出现的时间模式表明:(a)阿里波钝绥螨在旱季能以极低密度在木薯顶端存活;对无损田间顶端目视检查效率的评估支持了这一结果,该评估证明约10%有阿里波钝绥螨的木薯顶端未被识别出来;(b)阿里波钝绥螨不在土壤或落叶层中存活,但我们在温室试验中记录到了一些情况,即有少数个体迁移到地面并走过裸露的土壤,直到它们到达顶端花束诱捕器;此外,对木薯植株不同层次的小气候测量证明,木薯顶端和木薯茎基部是旱季相对湿度最高的位置——这使得茎基部成为一个潜在有趣的避难所;(c)阿里波钝绥螨不在周围植被中存活,植被调查支持了这一点,在该调查中,除了木薯外,未在任何其他植物物种上发现阿里波钝绥螨。

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