[目的]本文陈述国内外迷向技术的应用进展及影响迷向技术开展的生态因素,进而探讨不同缓释载体的剂型,旨在为利用昆虫性信息素迷向干扰害虫提供技术借鉴和参考。[方法]通过文献检索及个人研究方向,重点介绍国内外迷向干扰技术的应用情...[目的]本文陈述国内外迷向技术的应用进展及影响迷向技术开展的生态因素,进而探讨不同缓释载体的剂型,旨在为利用昆虫性信息素迷向干扰害虫提供技术借鉴和参考。[方法]通过文献检索及个人研究方向,重点介绍国内外迷向干扰技术的应用情况及环境影响因素,探索常见缓释载体的类型(毛细管迷向丝、微胶囊、Puffer、SPLAT、蜡滴、空气纤维、静电纺丝/纳米纤维),指出不同缓释装置的优缺点。[结果]昆虫性信息素迷向干扰技术作为一种高效专一、环境友好的新型绿色防控害虫技术,已经成为害虫综合防控体系IPM(Integrated Pest Management)的重要组成部分,在全球范围内广泛应用于鳞翅目害虫的防治,鞘翅目、同翅目、半翅目、膜翅目等也有少量报道,尤以舞毒蛾、苹果蠹蛾、葡萄花翅小卷蛾的应用最为成功;明确了昆虫性信息素缓释载体及释放速率控制是有效实施性信息素迷向干扰技术的前提,揭示昆虫性信息素迷向干扰技术的应用机理,得出限制昆虫性信息素迷向干扰技术的经济及政策因素,旨在为我国更好的开展性信息素迷向干扰技术防控害虫提供参考。[结论]昆虫性信息素迷向干扰防控害虫的应用前景广泛,在农林业害虫的绿色防控中至关重要。展开更多
A simulation experiment on the responses of maize (Zea mays L.) from the third leaf stage to maturity for different soil water levels (well-watered, moderately stressed, and severely stressed) was conducted by control...A simulation experiment on the responses of maize (Zea mays L.) from the third leaf stage to maturity for different soil water levels (well-watered, moderately stressed, and severely stressed) was conducted by controlling irrigation and using a mobile rain shelter in a neutral loam, meadow soil to determine the effects on leaf water status, membrane permeability and enzymatic antioxidant system for different growth stages. The results indicated that drought stress relied on drought intensity and duration, with more severe drought stress creating more serious effects on maize. Compared with well-watered conditions, during the silking and blister stages moderate stress did not significantly change the relative water content (RWC) and did change significantly the relative conductivity (RC) (P < 0.05) of the leaves; however, severe stress did significantly decrease (P < 0.01) the leaf RWC and increase (P < 0.01) membrane permeability (leaf relative conductivity). Furthermore, under severe drought stress antioxidant enzyme activities declined significantly (P < 0.01) in later stages, namely for superoxide dismutase (SOD) the tasseling and blister stages, for peroxidase (POD) the milk stage, and for catalase (CAT) during the tasseling, blister, and milk stages. Meanwhile, membrane lipid peroxidation (measured as malondialdehyde content) significantly increased (P < 0.01) in all stages.展开更多
It is vital to determine the effective photoperiods of maize for making full use of tropical germplasm, which is the foundation for determining the effect of latitude and planting date on the development of photoperio...It is vital to determine the effective photoperiods of maize for making full use of tropical germplasm, which is the foundation for determining the effect of latitude and planting date on the development of photoperiod-sensitive maize cultivars. The objective of this study is to determine the photoperiod-sensitive inductive phase using reciprocal transfer between long- day (LD) (15 h d^-1) and short-day conditions (SD) (9 h d^-1). For Huangzao 4 and CML288, days to tassel and pollen shedding were recorded, and stem apical meristems (SAM) were observed by a laser scanning confocal microscope. The results show that the seedlings are insensitive to photoperiod when they are very young (juvenile). However, after this period, LD delays flowering and increases the leaf numbers below the inflorescence, and the length of the interval of the photoperiod-sensitive inductive phase is longer under LD conditions than under SD conditions. Transferred from SD to LD, plants show a sudden decrease in leaf numbers once sufficient SD has been received for flower commitment. While transferred from LD to SD, plants have a continuous increase in leaf numbers during the photoperiod sensitive inductive phase under LD conditions. At the same time, when plants are competent to flowers, the obvious morphology is the elongation of maize SAM. There is an obvious variance of the photoperiod sensitive phase under LD and SD conditions in different maize.展开更多
文摘[目的]本文陈述国内外迷向技术的应用进展及影响迷向技术开展的生态因素,进而探讨不同缓释载体的剂型,旨在为利用昆虫性信息素迷向干扰害虫提供技术借鉴和参考。[方法]通过文献检索及个人研究方向,重点介绍国内外迷向干扰技术的应用情况及环境影响因素,探索常见缓释载体的类型(毛细管迷向丝、微胶囊、Puffer、SPLAT、蜡滴、空气纤维、静电纺丝/纳米纤维),指出不同缓释装置的优缺点。[结果]昆虫性信息素迷向干扰技术作为一种高效专一、环境友好的新型绿色防控害虫技术,已经成为害虫综合防控体系IPM(Integrated Pest Management)的重要组成部分,在全球范围内广泛应用于鳞翅目害虫的防治,鞘翅目、同翅目、半翅目、膜翅目等也有少量报道,尤以舞毒蛾、苹果蠹蛾、葡萄花翅小卷蛾的应用最为成功;明确了昆虫性信息素缓释载体及释放速率控制是有效实施性信息素迷向干扰技术的前提,揭示昆虫性信息素迷向干扰技术的应用机理,得出限制昆虫性信息素迷向干扰技术的经济及政策因素,旨在为我国更好的开展性信息素迷向干扰技术防控害虫提供参考。[结论]昆虫性信息素迷向干扰防控害虫的应用前景广泛,在农林业害虫的绿色防控中至关重要。
基金Project supported by the National Key Basic Research Support Foundation of China (No. G1999043407)the National Natural Science Foundation of China (No. 40231018)
文摘A simulation experiment on the responses of maize (Zea mays L.) from the third leaf stage to maturity for different soil water levels (well-watered, moderately stressed, and severely stressed) was conducted by controlling irrigation and using a mobile rain shelter in a neutral loam, meadow soil to determine the effects on leaf water status, membrane permeability and enzymatic antioxidant system for different growth stages. The results indicated that drought stress relied on drought intensity and duration, with more severe drought stress creating more serious effects on maize. Compared with well-watered conditions, during the silking and blister stages moderate stress did not significantly change the relative water content (RWC) and did change significantly the relative conductivity (RC) (P < 0.05) of the leaves; however, severe stress did significantly decrease (P < 0.01) the leaf RWC and increase (P < 0.01) membrane permeability (leaf relative conductivity). Furthermore, under severe drought stress antioxidant enzyme activities declined significantly (P < 0.01) in later stages, namely for superoxide dismutase (SOD) the tasseling and blister stages, for peroxidase (POD) the milk stage, and for catalase (CAT) during the tasseling, blister, and milk stages. Meanwhile, membrane lipid peroxidation (measured as malondialdehyde content) significantly increased (P < 0.01) in all stages.
文摘It is vital to determine the effective photoperiods of maize for making full use of tropical germplasm, which is the foundation for determining the effect of latitude and planting date on the development of photoperiod-sensitive maize cultivars. The objective of this study is to determine the photoperiod-sensitive inductive phase using reciprocal transfer between long- day (LD) (15 h d^-1) and short-day conditions (SD) (9 h d^-1). For Huangzao 4 and CML288, days to tassel and pollen shedding were recorded, and stem apical meristems (SAM) were observed by a laser scanning confocal microscope. The results show that the seedlings are insensitive to photoperiod when they are very young (juvenile). However, after this period, LD delays flowering and increases the leaf numbers below the inflorescence, and the length of the interval of the photoperiod-sensitive inductive phase is longer under LD conditions than under SD conditions. Transferred from SD to LD, plants show a sudden decrease in leaf numbers once sufficient SD has been received for flower commitment. While transferred from LD to SD, plants have a continuous increase in leaf numbers during the photoperiod sensitive inductive phase under LD conditions. At the same time, when plants are competent to flowers, the obvious morphology is the elongation of maize SAM. There is an obvious variance of the photoperiod sensitive phase under LD and SD conditions in different maize.