Department of Biology, Utah State University, Logan, UT, 84322, USA.
Department of Kinesiology and Health Science, Utah State University, Logan, UT, 84322, USA.
Sci Rep. 2024 Aug 23;14(1):19607. doi: 10.1038/s41598-024-70568-3.
Plants are attacked by diverse herbivorous pests with different host specializations. While host plant resistance influences pest pressure, how resistance impacts the behaviors of generalist and specialist herbivores, and the relationship to resistance, is less well known. Here, we investigated the short-term (< 1 h) behavioral changes of a generalist herbivore, the two-spotted spider mite (TSM), and a specialist herbivore, the Banks grass mite (BGM), after introduction to no-choice Tanglefoot leaf-arenas (2 × 2 cm) of three maize inbred lines (B73, B75, and B96). The widely-used inbred line B73 is susceptible to spider mites, while B75 and B96 are known to be mite resistant, especially to TSM. Video tracking was used to record TSM and BGM walking, probing, feeding, resting, web-building and travel distance on arenas of each line. Mite oviposition was also recorded after 72 h. B75, a resistant line, decreased the feeding behavior (i.e., time) of both mite species compared to B73 (susceptible control) and B96. Moreover, TSM appeared to be sensitive to both resistant lines (B75 and B96) with reduced oviposition, and increased resting and web-building times compared to susceptible B73. In contrast, the specialist BGM showed no difference in oviposition, resting and web-building time across all maize inbred lines. Our findings of quite broad and short-term responses of TSM to B75 and B96 are consistent with a role for constitutive or rapidly induced plant defenses in maize in conferring TSM resistance. Other mechanisms of plant resistance may be needed, however, for defense against specialists like BGM.
植物受到具有不同宿主专化性的各种草食性害虫的攻击。虽然寄主植物抗性会影响害虫压力,但抗性如何影响一般和专食性草食性动物的行为,以及与抗性的关系,人们知之甚少。在这里,我们研究了一种通用型草食性动物——二斑叶螨(TSM)和一种专食性草食性动物——黑麦草盲蝽(BGM)在接触到三个玉米自交系(B73、B75 和 B96)的无选择 Tanglefoot 叶片竞技场(2×2 cm)后的短期(<1 h)行为变化。广泛使用的自交系 B73 易受螨虫侵害,而 B75 和 B96 已知对螨虫具有抗性,尤其是对 TSM。视频跟踪用于记录 TSM 和 BGM 在每个系的竞技场中的行走、探测、进食、休息、结网和旅行距离。72 小时后还记录了螨虫的产卵情况。与易受影响的 B73(对照)和 B96 相比,抗性系 B75 减少了两种螨虫的进食行为(即时间)。此外,与易受影响的 B73 相比,TSM 似乎对两种抗性系(B75 和 B96)也很敏感,产卵减少,休息和结网时间增加。相比之下,专食性 BGM 在所有玉米自交系中产卵、休息和结网时间没有差异。我们发现 TSM 对 B75 和 B96 的广泛而短期的反应与玉米中组成型或快速诱导的植物防御在赋予 TSM 抗性方面的作用一致。然而,可能需要其他植物抗性机制来抵御像 BGM 这样的专家。