
应用生态工程技术控制水稻害虫对水生昆虫数量的影响
网络出版日期: 2017-03-10
基金资助
国家重点研发计划资助项目(2016YFD0200800);浙江省重点研发计划资助项目(2015C02014)
Aquatic Insect Populations in Paddy Fields as Affected by Management of Rice Insect Pests Through Ecological Engineering Technology
Online published: 2017-03-10
朱平阳, 郑许松, 张发成, 徐红星, 姚晓明, 杨亚军, 陈桂华, 吕仲贤 . 应用生态工程技术控制水稻害虫对水生昆虫数量的影响[J]. 中国水稻科学, 2017 , 31(2) : 207 -215 . DOI: 10.16819/j.1001-7216.2017.6065
【Objective】With the constant development of the sustainable rice pest management technologies, great progresses are expected to be made in the conservation of aquatic insects in paddy fields by controlling rice insect pests through ecological engineering technology. 【Method】We investigated the effects of the ecological engineering technology on the populations of aquatic insects in rice fields for continuous three years. 【Result】The results showed that the numbers of aquatic predatory damselflies, other predators and neutral insects in ecological engineering rice fields were significantly higher than those in farmer-managed fields, while the numbers of predatory damselflies and neutral insects near the ridges of rice field were significantly higher than those in the middle area of field. 【Conclusion】All results revealed that the ecological engineering technology could promote the breeding of aquatic predators and neutral insects in paddy fields, and could play a positive role in improving the natural control capacity during the later rice stage.
| [1] | Yuan L P.Development of hybrid rice to ensure food security.Rice Sci, 2014, 21(1): 1-2. |
| [2] | 夏敬源. 我国重大农业生物灾害暴发现状与防控成效. 中国植保导刊, 2008, 28(1): 5-9. |
| [2] | Xia J Y.Outbreaks of major agricultural pests and the control achievements in China.China Plant Prot, 2008, 28(1): 5-9. (in Chinese) |
| [3] | Gurr G M.Prospects for ecological engineering for planthoppers and other arthropod pests in rice. //Heong K L, Hardy B.Planthoppers: New Threats to the Sustainability of Intensive Rice Production Systems in Asia. Los Baños (Philippines): International Rice Research Institute Press, 2009: 371-388. |
| [4] | Gurr G M, Wratten S D, Altieri M A.Ecological Engineering for Pest Management: Advances in Habitat Manipulation for Arthropods. Australia: CSIRO Publishing, Collingwood, Vic. 2004. |
| [5] | Gurr G M, Wratten S D, Tylianakis J, Kean J, Keller M.Providing plant foods for natural enemies in farming systems: Balancing practicalities and theory// Wäckers F L, Rijn P C J V, Bruin J. Plant-Provided Food for Carnivorous Insects: A Protective Mutualism and Its Applications. Cambridge, UK: Cambridge University Press, 2005: 326-347. |
| [6] | Winkler K, Wäckers F, Pinto D M.Nectar-providing plants enhance the energetic state of herbivores as well as their parasitoids under field conditions.Ecol Entomol, 2009, 34(2): 221-227. |
| [7] | Gurr G M, Wratten S D, Altieri M A.Ecological engineering: A new direction for agricultural pest management.Aus Farm Busin Manag J, 2004, 1(1): 28-35. |
| [8] | Gurr G M, Lv Z X, Zheng X S, Xu H X, Zhu P Y, Chen G H, Yao X M, Cheng J A, Zhu Z R, Catingdig J L, Villareal S, van Chien H, Cuong L Q, Channoo C, Chengwattana N, Lan L P, Hai L H, Chaiwong J, Nicol H I, Perovic D J, Wratten S D, Heong K L. Multi-country evidence that crop diversification promotes ecological intensification of agriculture.Nat Plants, 2016, 14(2): 16014. |
| [9] | 陈桂华, 朱平阳, 郑许松, 姚晓明, 张发成, 盛仙俏, 徐红星, 吕仲贤. 应用生态工程控制水稻害虫技术在金华的实践. 中国植保导刊, 2016, 36(1): 31-36. |
| [9] | Chen G H, Zhu P Y, Zheng X S, Yao X M, Zhang F C, Sheng X Q, Xu H X, Lv Z X.Practical demonstration on rice insect pest management by ecological engineering technology in Jinhua.China Plant Prot, 2016, 36(1):31-36. (in Chinese) |
| [10] | Zhu P Y, Lu Z X, Heong K L, Chen G H, Zheng X S, Xu H X, Yang Y J, Nicol H I, Gurr G M.Selection of nectar plants for use in ecological engineering to promote biological control of rice pests by the predatory bug,Cyrtorhinus lividipennis,(Heteroptera: Miridae). Plos One, 2014, 9(9): e108669. |
| [11] | 朱平阳, 郑许松, 姚晓明, 徐红星, 张发成, 陈桂华, 吕仲贤. 提高稻飞虱卵期天敌的控害能力的稻田生态工程技术. 中国植保导刊, 2015, 35(7): 27-32, 56. |
| [11] | Zhu P Y, Zheng X S, Yao X M, Xu H X, Zhang F C, Chen G H, Lv Z X.Ecological engineering technology for enhancement of biological control capacity of egg parasitoids against rice planthoppers in paddy fields.China Plant Prot, 2015, 35(7): 27-32. (in Chinese) |
| [12] | Lu Z X, Zhu P Y, Gurr G M, Zheng X S, Chen G H, Heong K L.Rice pest management by ecological engineering: A pioneering attempt in China // Heong K L, Cheng J A, Escalada M M. Rice Planthoppers: Ecology, Management, Socio Economics and Policy. Hangzhou and Springer-Verlag Berlin Heidelberg: Zhejiang University Press, 2015: 161-178. |
| [13] | Settele J, Spangenberg J H, Heong K L, Burkhard B, Bustamante J V.Agricultural landscapes and ecosystem services in South-East Asia—the LEGATO-Project. Basic & Appl Ecol, 2016, 16(8): 661-664. |
| [14] | Westphal C, Vidal S, Horgan F G, Gurr G M, Escalada M, van Chien H, Tscharntke T, Heong K L, Settele J. Promoting multiple ecosystem services with flower strips and participatory approaches in rice production landscapes.Basic & Applied Ecol, 2015, 16(8): 681-689. |
| [15] | 刘桂良, 张晓萌, 赵丽稳, 张佳丽, 王先挺, 陈宇博, 郑许松. 应用生态工程控制水稻害虫技术及效益分析. 浙江农业科学, 2014 (12): 1809-1811. |
| [15] | Liu G L, Zhang X M, Zhao L W, Zhang J L, Wang X T, Chen Y B, Zheng X S.Rice pest management by ecological engineering technology and the cost-benefit analysis.J Zhejiang Agric Sci, 2014 (12): 1809-1811. (in Chinese) |
| [16] | 吕仲贤, 郭荣. 水稻害虫生态工程控制技术// 中华人民共和国农业部. 2015年农业主导品种和主推技术. 北京: 中国农业出版社, 2015: 274. |
| [16] | Lv Z X, Guo R.Rice pest management by ecological engineering technology// Ministry of Agriculture of the People's Republic of China. The Main Crop Breed Direction and Technology Extension of Agricultural in 2015. Beijing: China Agriculture Press, 2015: 274. (in Chinese) |
| [17] | 桂芳艳, 刘雨芳, 莫书银, 孙丽川, 刘文海, 戈峰. 转 Cry1Ab / Ac 基因水稻对稻田底栖动物群落的生态安全性. 植物保护学报, 2015, 42(5): 715-723. |
| [17] | Gui F Y, Liu Y F, Mo S Y, Sun L C, Liu W H, Ge F.Ecological safety of transgenic Cry1Ab /Ac rice on zoobenthos community in paddy fields.J Plant Prot, 2015, 42(5): 715-723. (in Chinese with English abstract) |
| [18] | 刘雨芳, 桂芳艳, 莫书银, 孙丽川, 戈峰. 稻田水生昆虫的采样技术方法与应用. 应用昆虫学报, 2015, 52(3): 770-775. |
| [18] | Liu Y F, Gui F Y, Mo S Y, Sun L C, Ge F.Sampling technologies and collecting methods for aquatic insects in rice paddy fields and their application.Chin J Appl Entomol, 2015, 52(3): 770-775. (in Chinese with English abstract) |
| [19] | Watanabe K, Koji S, Hidaka K, Koji N.Abundance, diversity, and seasonal population dynamics of aquatic Coleoptera and Heteroptera in rice fields: Effects of direct seeding management. Environ Entomol, 2013, 42(5): 841-850. |
| [20] | 李志宇, 杨洪, 赖凤香, 傅强, 胡阳. 早稻田发生的摇蚊种类及动态. 中国水稻科学, 2010, 24(6): 630-634. |
| [20] | Li Z Y, Yang H, Lai F X, Fu Q, Hu Y.Occurrence and population dynamics of Chironomid midges in early rice field.Chin J Rice Sci, 2010, 24(6): 630-634. (in Chinese with English abstract) |
| [21] | Ponraman G, Anbalagan S, Dinakaran S.Diversity of aquatic insects in irrigated rice fields of South India with reference to mosquitoes (Diptera: Culicidae).J Entomol & Zool Stud, 2016, 4(4): 252-256. |
| [22] | 白耀宇, 蒋明星, 程家安. Bt稻Cry1Ab杀虫蛋白在水体中的残留和Bt稻田三类水生昆虫数量调查. 四川农业大学学报, 2006, 24(1): 25-28. |
| [22] | Bai Y Y, Jiang M X, Cheng J A.Residues of Cry1Ab insecticidal protein in water released from Bt rice tissue litter and surveying of three aquatic insect groups in Bt rice fields.J Sichuan Agric Univ, 2006, 24(1): 25-28. (in Chinese) |
| [23] | Li G, Wang Y, Liu B, Zhang G.TransgenicBacillus thuringiensis (Bt) rice is safer to aquatic ecosystems than its non-transgenic counterpart. PloS One, 2014, 9(8): e104270. |
| [24] | Suter G W, Cormier S M.Why care about aquatic insects: Uses, benefits and services benefits of aquatic insects. Integr Environ Assess & Manag, 2015, 11(2): 188-194. |
| [25] | Ohba S Y, Matsuo T, Takagi M.Mosquitoes and other aquatic insects in fallow field biotopes and rice paddy fields.Med Vet Entomol, 2013, 27(1): 96-103. |
| [26] | 贾凤龙, 徐润林. 应用四种数值法研究稻田水生昆虫多样性. 中山大学学报: 自然科学版, 2002, 41(5): 73-76. |
| [26] | Jia F L, Xu R L.Applying four numerical methods to analyze aquatic insects diversity in rice fields.Acta Sci Nat Univ Sunyatseni, 2002, 41(5):73-76. (in Chinese with English abstract) |
| [27] | 江云珠, 汤圣祥, 金田彰二, 林希一郎, 张本郭, 余汉勇. 灌溉水质对稻田沟渠水栖无脊椎动物多样性的影响. 浙江农业学报, 1998, 10(2): 71-74. |
| [27] | Jiang Y Z, Tang S X, Kanada S, Hayashi K, Zhang B G, Yu H Y.Effect of irrigation water quality on biodiversity of invertebrates living in water of rice field and ditch. Acta Agric Zhejiang, 1998, 10(2): 71-74. (in Chinese with English abstract) |
| [28] | Wang Y M, Huang J C, Hu H W, et al.Field and laboratory studies on the impact of two Bt rice lines expressing a fusion protein Cry1Ab/1Ac on aquatic organisms.Ecotoxicol Environ Safe, 2013, 92: 87-93. |
| [29] | Chang X L, Zhai B P, Wang M, Wang B X.Relationship between exposure to an inseetieide and fluetuating asymmetry in a damselfly (Odonata, Coenagriidae).Hydrobiologia, 2007, 586, 213-220. |
| [30] | 常晓丽. 农业面源水污染对水生昆虫的波动性不对称的影响, 南京:南京农业大学, 2007. |
| [30] | Chang X L.The utility of fluctuating asymmetry in the bilaterally symmetrical aquatic insects as a bioindicator to assess water quality affected by nonpoint pollution of agriculture. Nanjing: Nanjing Agricultural University, 2007. (in Chinese with English abstract) |
/
| 〈 |
|
〉 |