State Key Laboratory of Efficient Utilization of Arid and Semi-arid Arable Land in Northern China, Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing, China.
Trendbiotech Co., Ltd, Hangzhou, China.
Plant Biotechnol J. 2023 Jul;21(7):1373-1382. doi: 10.1111/pbi.14040. Epub 2023 Mar 15.
As a finite and non-renewable resource, phosphorus (P) is essential to all life and crucial for crop growth and food production. The boosted agricultural use and associated loss of P to the aquatic environment are increasing environmental pollution, harming ecosystems, and threatening future global food security. Thus, recovering and reusing P from water bodies is urgently needed to close the P cycle. As a natural, eco-friendly, and sustainable reclamation strategy, microalgae-based biological P recovery is considered a promising solution. However, the low P-accumulation capacity and P-removal efficiency of algal bioreactors restrict its application. Herein, it is demonstrated that manipulating genes involved in cellular P accumulation and signalling could triple the Chlamydomonas P-storage capacity to ~7% of dry biomass, which is the highest P concentration in plants to date. Furthermore, the engineered algae could recover P from wastewater almost three times faster than the unengineered one, which could be directly used as a P fertilizer. Thus, engineering genes involved in cellular P accumulation and signalling in microalgae could be a promising strategy to enhance P uptake and accumulation, which have the potential to accelerate the application of algae for P recovery from the water body and closing the P cycle.
磷(P)作为一种有限且不可再生的资源,对所有生命都是必不可少的,对作物生长和粮食生产也至关重要。农业对 P 的使用增加以及随之向水生环境中流失 P,加剧了环境污染,破坏了生态系统,威胁着未来全球粮食安全。因此,从水体中回收和再利用 P 以闭合 P 循环是当务之急。作为一种自然、环保且可持续的开垦策略,基于微藻的生物 P 回收被认为是一种很有前途的解决方案。然而,藻类生物反应器的 P 积累能力和去除效率低限制了其应用。本文证明,操纵与细胞 P 积累和信号转导相关的基因,可以将衣藻的 P 储存能力提高三倍,达到~7%的干生物量,这是迄今为止植物中 P 的最高浓度。此外,与未工程化的藻类相比,工程化藻类从废水中回收 P 的速度快了近三倍,可直接用作 P 肥料。因此,在微藻中对与细胞 P 积累和信号转导相关的基因进行工程化改造可能是一种增强 P 吸收和积累的有前途的策略,这有可能加速藻类从水体中回收 P 和闭合 P 循环的应用。