Guiboileau Anne, Yoshimoto Kohki, Soulay Fabienne, Bataillé Marie-Paule, Avice Jean-Christophe, Masclaux-Daubresse Céline
INRA, UMR1318, Institut Jean-Pierre Bourgin, RD10, F-78000 Versailles, France.
AgroParisTech, Institut Jean-Pierre Bourgin, RD10, F-78000 Versailles, France.
New Phytol. 2012 May;194(3):732-740. doi: 10.1111/j.1469-8137.2012.04084.x. Epub 2012 Mar 9.
• Processes allowing the recycling of organic nitrogen and export to young leaves and seeds are important determinants of plant yield, especially when plants are nitrate-limited. Because autophagy is induced during leaf ageing and in response to nitrogen starvation, its role in nitrogen remobilization was suspected. It was recently shown that autophagy participates in the trafficking of Rubisco-containing bodies to the vacuole. • To investigate the role of autophagy in nitrogen remobilization, several autophagy-defective (atg) Arabidopsis mutants were grown under low and high nitrate supplies and labeled with at the vegetative stage in order to determine (15) N partitioning in seeds at harvest. Because atg mutants displayed earlier and more rapid leaf senescence than wild type, we investigated whether their defects in nitrogen remobilization were related to premature leaf cell death by studying the stay-green atg5.sid2 and atg5.NahG mutants. • Results showed that nitrogen remobilization efficiency was significantly lower in all the atg mutants irrespective of biomass defects, harvest index reduction, leaf senescence phenotypes and nitrogen conditions. • We conclude that autophagy core machinery is needed for nitrogen remobilization and seed filling.
• 使有机氮再循环并输送到幼叶和种子的过程是植物产量的重要决定因素,尤其是当植物受到硝酸盐限制时。由于自噬在叶片衰老过程中以及对氮饥饿的反应中被诱导,因此人们怀疑它在氮素再利用中的作用。最近的研究表明,自噬参与了含 Rubisco 小体向液泡的运输。
• 为了研究自噬在氮素再利用中的作用,在低硝酸盐供应和高硝酸盐供应条件下培养了几种自噬缺陷型(atg)拟南芥突变体,并在营养生长阶段进行标记,以确定收获时种子中的氮分配情况。由于 atg 突变体比野生型表现出更早、更快的叶片衰老,我们通过研究持绿型 atg5.sid2 和 atg5.NahG 突变体,来探究它们在氮素再利用方面的缺陷是否与叶片细胞过早死亡有关。
• 结果表明,无论生物量缺陷、收获指数降低、叶片衰老表型和氮素条件如何,所有 atg 突变体的氮素再利用效率都显著较低。
• 我们得出结论,自噬核心机制是氮素再利用和种子充实所必需的。