Institute of Plant and Microbial Biology, Academia Sinica, Taipei 11529, Taiwan.
Plant Physiol. 2011 Sep;157(1):292-304. doi: 10.1104/pp.111.183210. Epub 2011 Jul 26.
To better define the still unclear role of proline (Pro) metabolism in drought resistance, we analyzed Arabidopsis (Arabidopsis thaliana) Δ(1)-pyrroline-5-carboxylate synthetase1 (p5cs1) mutants deficient in stress-induced Pro synthesis as well as proline dehydrogenase (pdh1) mutants blocked in Pro catabolism and found that both Pro synthesis and catabolism were required for optimal growth at low water potential (ψ(w)). The abscisic acid (ABA)-deficient mutant aba2-1 had similar reduction in root elongation as p5cs1 and p5cs1/aba2-1 double mutants. However, the reduced growth of aba2-1 but not p5cs1/aba2-1 could be complemented by exogenous ABA, indicating that Pro metabolism was required for ABA-mediated growth protection at low ψ(w). PDH1 maintained high expression in the root apex and shoot meristem at low ψ(w) rather than being repressed, as in the bulk of the shoot tissue. This, plus a reduced oxygen consumption and buildup of Pro in the root apex of pdh1-2, indicated that active Pro catabolism was needed to sustain growth at low ψ(w). Conversely, P5CS1 expression was most highly induced in shoot tissue. Both p5cs1-4 and pdh1-2 had a more reduced NADP/NADPH ratio than the wild type at low ψ(w). These results indicate a new model of Pro metabolism at low ψ(w) whereby Pro synthesis in the photosynthetic tissue regenerates NADP while Pro catabolism in meristematic and expanding cells is needed to sustain growth. Tissue-specific differences in Pro metabolism and function in maintaining a favorable NADP/NADPH ratio are relevant to understanding metabolic adaptations to drought and efforts to enhance drought resistance.
为了更好地定义脯氨酸(Pro)代谢在抗旱性中的作用,我们分析了拟南芥(Arabidopsis thaliana)Δ(1)-吡咯啉-5-羧酸合成酶 1(p5cs1)突变体,这些突变体缺乏应激诱导的 Pro 合成,以及脯氨酸脱氢酶(pdh1)突变体,这些突变体阻断了 Pro 的分解代谢,发现 Pro 的合成和分解代谢都需要在低水势(ψ(w))下最佳生长。缺乏脱落酸(ABA)的突变体 aba2-1 的根伸长与 p5cs1 和 p5cs1/aba2-1 双突变体相似。然而,aba2-1 的生长减少而不是 p5cs1/aba2-1 可以通过外源 ABA 来补充,这表明 Pro 代谢对于 ABA 介导的低 ψ(w)下的生长保护是必需的。PDH1 在低 ψ(w)时在根尖和茎分生组织中保持高表达,而不是在大部分茎组织中受到抑制。这一点,加上 pdh1-2 根尖中 Pro 的耗氧量降低和积累减少,表明在低 ψ(w)下需要积极的 Pro 分解代谢来维持生长。相反,P5CS1 表达在茎组织中被高度诱导。p5cs1-4 和 pdh1-2 在低 ψ(w)时比野生型具有更低的 NADP/NADPH 比值。这些结果表明了低 ψ(w)下 Pro 代谢的一个新模型,即在光合作用组织中 Pro 合成再生 NADP,而在分生组织和扩展细胞中 Pro 分解代谢对于维持生长是必需的。Pro 代谢和功能在维持有利的 NADP/NADPH 比值方面的组织特异性差异与理解对干旱的代谢适应以及提高抗旱性的努力有关。