Lotfollahi Parisa, Mehri-Heyran Hosein, Azimi Solmaz, de Lillo Enrico
Department of Plant Protection, Faculty of Agriculture, Azarbaijan Shahid Madani University, Tabriz 5375171379, Iran.
Dipartimento di Scienze del Suolo, della Pianta e degli Alimenti, University of Bari Aldo Moro, Via Amendola, 165/a, 70126 Bari, Italy.
Insects. 2023 Jul 13;14(7):633. doi: 10.3390/insects14070633.
Data on the life strategy of (population fluctuation in buds and on leaves, emergence and migration to the overwintering sites), as well as its temperature-dependent emergence from overwintering sites at constant temperatures, were determined. The eriophyid mite overwintered into buds and the density of active mites inside them from winter 2017 to spring 2018 was higher than that in winter 2018-spring 2019. In the second half of March 2018 and in winter 2018-spring 2019, the mite density inside the buds decreased gradually with a peak of emergence occurring at the beginning of plant blossoming. Population density on leaves increased in summer, reaching a higher and later peak in 2018, and gradually decreased in autumn with mites migrating to overwintering sites. A lower developmental threshold of 4.5 °C was calculated. About half of the mite population was estimated to emerge from the overwintering sites at an accumulation of degree days ranging, on average, between 85.5 (at 20 °C) and 104.4 (at 10 °C) degree days above the assessed threshold.
测定了(芽和叶片上的种群波动、羽化以及向越冬场所迁移)的生活史策略数据,以及其在恒温条件下从越冬场所羽化的温度依赖性。叶螨在芽中越冬,2017年冬季至2018年春季芽内活跃螨的密度高于2018年冬季至2019年春季。在2018年3月下旬以及2018年冬季至2019年春季,芽内螨的密度逐渐降低,在植物开花初期出现羽化高峰。叶片上的种群密度在夏季增加,在2018年达到更高且更晚的峰值,并在秋季随着螨迁移到越冬场所而逐渐降低。计算出较低的发育阈值为4.5℃。估计约一半的螨种群在高于评估阈值平均85.5(20℃时)至104.4(10℃时)度日的积温时从越冬场所羽化。