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严格调控硫同化作用:一种来自严重磷贫瘠生境植物的适应机制。

Tight control of sulfur assimilation: an adaptive mechanism for a plant from a severely phosphorus-impoverished habitat.

机构信息

School of Biological Sciences, The University of Western Australia, 35 Stirling Highway, Perth, WA, 6009, Australia.

Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, D-14476, Potsdam-Golm, Germany.

出版信息

New Phytol. 2017 Aug;215(3):1068-1079. doi: 10.1111/nph.14640. Epub 2017 Jun 28.

DOI:10.1111/nph.14640
PMID:28656667
Abstract

Hakea prostrata (Proteaceae) has evolved in extremely phosphorus (P)-impoverished habitats. Unlike species that evolved in P-richer environments, it tightly controls its nitrogen (N) acquisition, matching its low protein concentration, and thus limiting its P requirement for ribosomal RNA (rRNA). Protein is a major sink for sulfur (S), but the link between low protein concentrations and S metabolism in H. prostrata is unknown, although this is pivotal for understanding this species' supreme adaptation to P-impoverished soils. Plants were grown at different sulfate supplies for 5 wk and used for nutrient and metabolite analyses. Total S content in H. prostrata was unchanged with increasing S supply, in sharp contrast with species that typically evolved in environments where P is not a major limiting nutrient. Unlike H. prostrata, other plants typically store excess available sulfate in vacuoles. Like other species, S-starved H. prostrata accumulated arginine, lysine and O-acetylserine, indicating S deficiency. Hakea prostrata tightly controls its S acquisition to match its low protein concentration and low demand for rRNA, and thus P, the largest organic P pool in leaves. We conclude that the tight control of S acquisition, like that of N, helps H. prostrata to survive in P-impoverished environments.

摘要

匍匐希美香木(山龙眼科)进化于极度缺磷(P)的生境中。与在 P 更丰富的环境中进化的物种不同,它严格控制其氮(N)的获取,与低蛋白浓度相匹配,从而限制了核糖体 RNA(rRNA)对 P 的需求。蛋白质是硫(S)的主要储存库,但匍匐希美香木中低蛋白浓度与 S 代谢之间的联系尚不清楚,尽管这对于理解该物种对贫磷土壤的最高适应性至关重要。将植物在不同的硫酸盐供应下生长 5 周,并用于养分和代谢物分析。匍匐希美香木的总 S 含量随 S 供应的增加而不变,与通常在 P 不是主要限制养分的环境中进化的物种形成鲜明对比。与匍匐希美香木不同,其他植物通常将多余的可利用硫酸盐储存在液泡中。与其他物种一样,S 饥饿的匍匐希美香木积累精氨酸、赖氨酸和 O-乙酰丝氨酸,表明 S 缺乏。匍匐希美香木严格控制其 S 的获取,以与其低蛋白浓度和低 rRNA 需求相匹配,从而也与叶片中最大的有机 P 库 P 相匹配。我们的结论是,像 N 一样严格控制 S 的获取,有助于匍匐希美香木在贫磷环境中生存。

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