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Strigolactones Control Root System Architecture and Tip Anatomy in Solanum lycopersicum L. Plants under P Starvation

机译:P饥饿条件下松果内酯控制根系统结构和茄科植物的尖端解剖

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摘要

The hormones strigolactones accumulate in plant roots under phosphorus (P) shortage, inducing variations in plant phenotype. In this study, we aimed at understanding whether strigolactones control morphological and anatomical changes in tomato ( L.) roots under varying P supply. Root traits were evaluated in wild-type seedlings grown in high vs. low P, with or without exogenous strigolactones, and in wild-type and strigolactone-depleted plants grown first under high vs. no P, and then under high vs. no P after acclimation on low P. Exogenous strigolactones stimulated primary root and lateral root number under low P. Root growth was reduced in strigolactone-depleted plants maintained under continuous P deprivation. Total root and root hair length, lateral root number and root tip anatomy were impaired by low strigolactone biosynthesis in plants grown under low P or transferred from low to no P. Under adequate P conditions, root traits of strigolactone-depleted and wild-type plants were similar. Concluding, our results indicate that strigolactones (i) control macro- and microscopic changes of root in tomato depending on P supply; and (ii) do not affect root traits significantly when plants are supplemented with adequate P, but are needed for acclimation to no P and typical responses to low P.
机译:缺磷(P)不足时,激素strigolactones积累在植物根部,导致植物表型发生变化。在这项研究中,我们旨在了解在不同的磷供应下,strigolactones是否控制番茄(L.)根的形态和解剖变化。在高磷和低磷,有或没有外源松香内酯的野生型幼苗中,以及先在高磷与无磷,然后在高磷与无磷条件下生长的野生型和枯草酸内酯耗竭的植物中评估根系性状在低磷条件下适应后,外源的松果内酯刺激了低磷条件下的初生根和侧根数。在连续缺乏P的条件下,维持松果内酯消耗的植物的根系生长减少。在低磷或低磷或低磷条件下生长的植物中低草皮内酯生物合成会损害总根和根毛长度,侧根数和根尖解剖结构。在适当的磷条件下,缺草皮内酯和野生型植物的根性状是相似的。最后,我们的结果表明,Strigolactones(i)根据磷的供应来控制番茄根的宏观和微观变化; (ii)当植物补充了足够的磷后,不会显着影响根系性状,但需要适应无磷和对低磷的典型反应。

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