Enzymatic and metabolic diagnostic of nitrogen deficiency in Arabidopsis thaliana Wassileskija accession

Enzymatic and metabolic diagnostic of nitrogen deficiency in Arabidopsis thaliana Wassileskija accession
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DOI:
10.1093/pcp/pcn081
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发表时间:
2008-07-01
影响因子:
4.9
通讯作者:
Masclaux-Daubresse, Celine
Masclaux-Daubresse, Celine
中科院分区:
生物学2区
文献类型:
--
作者:
Lemaitre, Thomas;Gaufichon, Laure;Masclaux-Daubresse, Celine

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通过比较在 2 或 10 mM 硝酸盐下生长的拟南芥 Wassileskija (WS) 种质,研究了对稳态低养分利用率的适应。低氮条件导致莲座生物量和种子产量有限。后者主要是由于种子数量减少,而种子重量受影响较小。然而,与有限硝酸盐条件相比,高硝酸盐条件下的收获指数较低。在氮限制条件下,硝酸还原酶活性降低,而谷氨酰胺合成酶活性由于胞质酶的积累较高而增加。在低氮条件下,氮再动员到种子的水平较高,并且种子生产后剩余的植物营养部分储存的残留氮非常低。通过促进氮的再动员和再循环途径,氮限制改变了植物和种子的组成。在氮限制条件下生长时,莲座叶含有更多的糖和更少的游离氨基酸。与高氮相比,脯氨酸、天冬酰胺和谷氨酰胺水平降低。种子的氨基酸组成反映了莲座叶的氨基酸组成,因此表明用于种子灌浆的韧皮部负载的选择性较差。该报告的主要发现是,随着生物量和产量的下降,氮限制引发了植物产品和种子质量的巨大改变。
Adaptation to steady-state low-nutrient availability was investigated by comparing the Wassileskija (WS) accession of Arabidopsis thaliana grown on 2 or 10 mM nitrate. Low nitrogen conditions led to a limited rosette biomass and seed yield. The latter was mainly due to reduced seed number, while seed weight was less affected. However, harvest index was lower in high nitrate compared with limited nitrate conditions. Under nitrogen-limiting conditions, nitrate reductase activity was decreased while glutamine synthetase activity was increased due to a higher accumulation of the cytosolic enzyme. The level of nitrogen remobilization to the seeds was higher under low nitrogen, and the vegetative parts of the plants remaining after seed production stored very low residual nitrogen. Through promoting nitrogen remobilization and recycling pathways, nitrogen limitation modified plant and seed compositions. Rosette leaves contained more sugars and less free amino acids when grown under nitrogen-limiting conditions. Compared with high nitrogen, the levels of proline, asparagine and glutamine were decreased. The seed amino acid composition reflected that of the rosette leaves, thus suggesting that phloem loading for seed filling was poorly selective. The major finding of this report was that together with decreasing biomass and yield, nitrogen limitation triggers large modifications in vegetative products and seed quality.