The development of an effective and green bioinsecticide is a research hotspot. This study demonstrated the possibility of using an arsenic (As) hyperaccumulator as a bioinsecticide. When the As concentration in the Pteris vittata fronds exceeded 138 mg kg(-1), the larva of the hawk moth (Theretra clotho) displayed apparent preference to lower-As-concentration P. vittata fronds. The As concentration in the larva body was as high as 850 mg kg(-1). Such high concentration of As in the larva body might have been the case that T. clotho lacks a process to exclude As. The larval frass showed an As concentration of only 1%-4% of that in the larva body. The predominant As species in the larva body and frass was As(III)-SH. The percentage of As(III)-SH was slightly higher in the frass than that in the larval body. Chelation with thiols may be a universal detoxification mechanism for As in both plants and insects. In general, the adoption of P. vittata as a bioinsecticide should be feasible. However, the exact processes to achieve this goal still need further study. The mechanism of different animals to detoxify As is another interesting research topic. (C) Higher Education Press 2021
机构:
Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
University of Chinese Academy ofInstitute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
Xiaoming Wan
Mei Lei
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Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
University of Chinese Academy ofInstitute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
Mei Lei
Tongbin Chen
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Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
University of Chinese Academy ofInstitute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences
机构:
Department of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,HachiojiDepartment of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,Hachioji
R.Shoji
R.Yajima
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Department of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,HachiojiDepartment of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,Hachioji
R.Yajima
Y.Yano
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Department of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,HachiojiDepartment of Chemical Science and Engineering,Tokyo National College of Technology,1220-2 Kunugida,Hachioji
机构:
Jiangsu Vocational College of Agriculture and Forestry
State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University
Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of SciencesJiangsu Vocational College of Agriculture and Forestry
YANG Guangmei
WANG Yuanguo
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Tongren PolytechnicJiangsu Vocational College of Agriculture and Forestry
WANG Yuanguo
ZHU Lingjia
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机构:
Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of SciencesJiangsu Vocational College of Agriculture and Forestry
ZHU Lingjia
HAN Yonghe
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State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing UniversityJiangsu Vocational College of Agriculture and Forestry