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The genetic program at the root of the biological stock exchange

机译:生物证券交易所根本的遗传计划

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Beneath the gardens, farmlands and forest floors that surround us, a hidden world blooms in careful cooperation and intense competition. The mutualistic symbiosis of the thread-like hyphae of fungi and plant roots (collectively termed mycorrhizae from the Greek mykes - meaning 'fungus', and rhiza - for 'root') is present in the vast majority of plant species. As with most intimate relationships, this symbiosis functions on a principle of 'give and take'. As an autotroph, the plant is able to synthesize all the sugars it requires through photosynthesis; however, its immobility hinders its capacity to forage for nutrients vital for its growth and survival. With an expansive network of hyphae, the heterotrophic fungus is able to locate and remobilize water and nutrients, such as phosphorus (P) and nitrogen (N), and barter them for precious sugars with the plant. An article in this issue of Physiologia Plantarum (Zhao et al. 2019) describes alterations in the genetic programming that takes place in the plant root upon the establishment of this fascinating relationship, which has profound implications for plant productivity and soil management methods.
机译:在花园,农田和森林地板下面,周围的森林地板,一个隐藏的世界绽放,仔细合作和激烈的竞争。在绝大多数植物物种中存在植物根系卵状菌丝(统称从希腊迈克斯的菌根)的循环菌丝(集体称为'真菌'和Rhiza')。与大多数亲密关系一样,这种共生作用于“给予和采取”的原则。作为自动饮料,工厂能够合成通过光合作用所需的所有糖;然而,其不动力阻碍了其饲养能力,以便为其生长和生存至关重要。通过膨胀网络的菌丝,杂养真菌能够定位和重新染色水和营养,例如磷(P)和氮气(N),并将它们用植物用珍贵的糖。这篇文章在这一问题的生理植物(Zhao等,2019)描述了在建立这种迷人关系的遗传编程中发生的遗传编程的改变,这对植物生产力和土壤管理方法产生了深远的影响。

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