秘鲁基因组编辑促进可持续农业:进展、潜在应用和监管。

IF 4.4 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Frontiers in genome editing Pub Date : 2025-06-30 eCollection Date: 2025-01-01 DOI:10.3389/fgeed.2025.1611040
Marilu Mestanza, Angel David Hernández-Amasifuen, Alexandra Jherina Pineda-Lázaro, Dennis Eriksson, Juan Carlos Guerrero-Abad
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引用次数: 0

摘要

秘鲁农业的特色作物有土豆、玉米、大米、芦笋、芒果、香蕉、鳄梨、木薯、洋葱、油棕、辣椒、木瓜、蓝莓、咖啡、可可、葡萄、藜麦、橄榄、柑橘等。由于病虫害、疾病、盐碱化、干旱、寒冷等原因,它们在各自的农业生态系统中都面临着生产方面的挑战。通过CRISPR/Cas进行基因编辑是解决农业重大挑战的关键工具,可以提高作物对生物和非生物胁迫的抵御能力,提高产量和营养价值。这种方法允许在DNA水平上对位点特异性基因进行精确突变,当其功能改变时获得理想的性状。当核糖核蛋白(RNP)作为载体将CRISPR/Cas组分传递到植物细胞原生质体中,或trna样序列(TLS)基序与单导RNA (sgRNA)和Cas mRNA序列融合并在转基因植物砧木中表达,产生“可移动”的CRISPR/Cas组分到上部组织(接穗)时,CRISPR/Cas系统可作为无转基因基因组编辑工具。这些创新可能是加强秘鲁农业、粮食安全和农业经济,特别是在热带、安第斯和沿海地区的潜在办法。这篇综述文章审查了基因编辑的进展和策略,重点是可用于研究、开发和使用的无转基因方法,还确定了在秘鲁主要作物上的潜在应用,并分析了它们对生产力和减少农用化学品依赖的影响。最后,本综述强调需要制定监管政策,加强对生物技术精确创新的利用,确保农业生物多样性的保护和增值,以造福秘鲁农民。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genome editing for sustainable agriculture in Peru: advances, potential applications and regulation.

Genome editing for sustainable agriculture in Peru: advances, potential applications and regulation.

Genome editing for sustainable agriculture in Peru: advances, potential applications and regulation.

Genome editing for sustainable agriculture in Peru: advances, potential applications and regulation.

Peruvian agriculture is characterize by crops such as potato, maize, rice, asparagus, mango, banana, avocado, cassava, onion, oil palm, chili, papikra, blueberry, coffee, cacao, grapes, quinoa, olive, citrus and others. All of them have challenges in production in their specific agroecosystems under stress due to pests, diseases, salinity, drought, cold among others. Gene editing through CRISPR/Cas is a key tool for addressing critical challenges in agriculture by improving resilience to biotic and abiotic stress, increasing yield and enhancing the nutritional value of the crops. This approach allows precise mutation on site-specific gene at the DNA level, obtaining desirable traits when its function is altered. The CRISPR/Cas system could be used as a transgene-free genome editing tool when the ribonucleoprotein (RNP) acts as a carrier to delivered the CRISPR/Cas components into the plant cell protoplasts, or when the tRNA-like sequence (TLS) motifs are fused to single-guide RNA (sgRNA) and Cas mRNA sequence and expressed in transgenic plants rootstock to produce "mobile" CRISPR/Cas components to upper tissue (scion). Those innovations could be a potential approach to strengthen the Peruvian agriculture, food security and gricultural economy, especially in the tropical, Andean and coastal regions. This review article examines the advances and strategies of gene editing, focusing on transgene-free methodologies that could be adopted for research, development and use, and also identifies potential applications in key crops for Peru and analyzes their impact in the productivity and reduction of agrochemicals dependence. Finally, this review highlights the need to establish regulatory policies that strengthen the use of biotechnological precise innovations, ensuring the conservation and valorization of agrobiodiversity for the benefit of Peruvian farmers.

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CiteScore
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