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首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Proline metabolism under water stress in the leaves and roots of Brassica juncea cultivars differing in drought tolerance
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Proline metabolism under water stress in the leaves and roots of Brassica juncea cultivars differing in drought tolerance

机译:水分胁迫下甘蓝型油菜叶片和根系水分胁迫下脯氨酸的代谢

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摘要

Plant water relations, proline content and activities of pyrroline-5-carboxylate synthetase (P5CS) and proline oxidase (PO) were studied in five Brassica juncea genotypes differing in drought response. Under water stress, drought tolerant cv Varuna showed maximum osmotic adjustment value (1/b) of 3.21. In this variety, proline content increased from 8.4 and 5.3 #mu#mol g~-1 dry weight under normal conditions to 128.2 and 44.5 #mu#mol g~-1 dry weight under stress conditions in the leaves and roots respectively. The increase in proline content in less drought tolerant variety Prakash was from 7.0 and 1.8 #mu#mol g~-1 dry weight in the absence of stress to 62.9 and 13.4 #mu#mol g~-1 dry weight in the presence of stress in leaves and roots respectively. Compared to the respective controls, increase in the activity of proline biosynthetic enzyme P5CS of roots and leaves under water stress was maximum (approx 94%) in Varuna and minimum in Prakash (approx 16%). Reduction in the activity of proline degrading enzyme PO due to stress was also maximum in the leaves (75%) and roots (87%) of Varuna. These results showed genotype dependent effect of water stress on plant water relations and proline metabolism.
机译:研究了5种不同干旱反应类型的芥菜型油菜的植物水分关系,脯氨酸含量以及吡咯啉-5-羧酸合成酶(P5CS)和脯氨酸氧化酶(PO)的活性。在水分胁迫下,耐旱的Cv Varuna的最大渗透调节值(1 / b)为3.21。在该品种中,脯氨酸含量从正常条件下的干重的8.4和5.3μμmol·g-1 -1增加到叶和根在胁迫下的干重的128.2和44.5μμmol·g-1 -1。耐旱性较低的Prakash品种中脯氨酸含量的增加从无胁迫下的7.0和1.8#mu#mol g〜-1干重增加到有胁迫下的62.9和13.4#mu#mol g〜-1干重。分别在叶子和根中。与相应的对照相比,在水分胁迫下,根和叶的脯氨酸生物合成酶P5CS活性的增加在Varuna中最大(大约94%),在Prakash中最小(大约16%)。由于压力,脯氨酸降解酶PO的活性降低在瓦鲁纳的叶子(75%)和根部(87%)中也最大。这些结果显示了水分胁迫对植物水分关系和脯氨酸代谢的基因型依赖性作用。

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