Hybrid Bt cotton is failing in India: cautions for Africa

IF 5.9 3区 环境科学与生态学 Q1 Environmental Science Environmental Sciences Europe Pub Date : 2023-11-07 DOI:10.1186/s12302-023-00804-6
Andrew Paul Gutierrez, Peter E. Kenmore, Luigi Ponti
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Abstract

This paper reviews the ongoing failure of hybrid transgenic Bt (Bacillus thuringiensis) cotton unique to India. The underlying cause for this failure is the high cost of hybrid seed that imposes a suboptimal long-season low plant density system that limits yield potential and has associated elevated levels of late-season pests. Indian hybrid Bt cotton production is further complicated by the development of resistance to Bt toxins in the key pest, the native pink bollworm (Pectinophora gossypiella Saunders, PBW), resulting in increased insecticide use that induces ecological disruption and outbreaks of highly destructive secondary pests. Rainfed cotton production uncertainty is further exacerbated by the variable monsoon rains. While hybrid cotton produces fertile seed, the resulting plant phenotypes are highly variable preventing farmers from replanting saved seed, forcing them to buy seed yearly (i.e., market capture), and effectively protecting industry Intellectual Property Rights (IPRs). The lessons gained from the ongoing market failure of hybrid Bt cotton in India are of utmost importance to its proposed introduction to Africa where, similar to India, cotton is grown mainly in poor rainfed smallholder family farms, and hence similar private–corporate conflicts of interest will occur. Holistic field agroecological studies and weather-driven mechanistic analyses are suggested to help foresee ecological and economic challenges in cotton production in Africa.

High-density short-season (HD-SS) non-hybrid non-genetically modified irrigated and rainfed cottons are viable alternatives for India that can potentially produce double the yields of the current low-density hybrid system.

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杂交Bt棉花在印度失败:对非洲的警告
本文综述了印度特有的转基因Bt(苏云金芽孢杆菌)杂交棉花的持续失败。造成这种失败的根本原因是杂交种子的高成本强加了一个次优的长季节低植物密度系统,限制了产量潜力,并导致季末害虫水平升高。印度的Bt杂交棉花生产因主要害虫——本地棉铃虫(Pectinophora gossypiella Saunders, PBW)对Bt毒素的抗性的发展而进一步复杂化,导致杀虫剂的使用增加,从而导致生态破坏和高破坏性次生害虫的爆发。多变的季风雨进一步加剧了雨养棉花生产的不确定性。虽然杂交棉花产生肥沃的种子,但由此产生的植物表型变化很大,使农民无法重新种植保存下来的种子,迫使他们每年购买种子(即市场占领),并有效地保护了行业知识产权(ipr)。从印度Bt杂交棉花持续的市场失败中获得的经验教训对于将其引入非洲至关重要。非洲与印度类似,棉花主要种植在贫困的雨养小农家庭农场,因此类似的私人-公司利益冲突将会发生。建议进行全面的田间农业生态研究和天气驱动机制分析,以帮助预测非洲棉花生产中的生态和经济挑战。高密度短季(HD-SS)非杂交、非转基因灌溉和雨养棉花是印度可行的替代方案,其产量可能是目前低密度杂交系统的两倍。
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来源期刊
Environmental Sciences Europe
Environmental Sciences Europe Environmental Science-Pollution
CiteScore
9.20
自引率
1.70%
发文量
110
审稿时长
13 weeks
期刊介绍: ESEU is an international journal, focusing primarily on Europe, with a broad scope covering all aspects of environmental sciences, including the main topic regulation. ESEU will discuss the entanglement between environmental sciences and regulation because, in recent years, there have been misunderstandings and even disagreement between stakeholders in these two areas. ESEU will help to improve the comprehension of issues between environmental sciences and regulation. ESEU will be an outlet from the German-speaking (DACH) countries to Europe and an inlet from Europe to the DACH countries regarding environmental sciences and regulation. Moreover, ESEU will facilitate the exchange of ideas and interaction between Europe and the DACH countries regarding environmental regulatory issues. Although Europe is at the center of ESEU, the journal will not exclude the rest of the world, because regulatory issues pertaining to environmental sciences can be fully seen only from a global perspective.
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