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Physiological and nutritional indicators of tolerance to salinity in chickpea plants growing under symbiotic conditions.

机译:在共生条件下生长的鹰嘴豆植物对盐分耐受的生理和营养指标。

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Alterations of plant growth, nitrogenase activity and nutrient concentration as a consequence of salt treatments were studied in five chickpea (Cicer arietinum L.) cultivars from Spain and Syria. Plants, in symbiosis with Mesorhizobium ciceri ch-191 strain, were grown under controlled conditions for 32 days and subjected to salinity stress. Parameters of growth and nitrogen fixation were affected under salt stress in all cultivars tested; plant dry weight decreased by about 15% in ILC1919; and in Sirio and Lechoso about 50% with the highest salt dosage (100 mM NaCl). ILC1919 showed a less growth accompanied by a lower dry matter formation under low salt conditions compared with most of the salt sensitive cultivar. Nitrogenase activity decreased by about 60% in the salt-resistant cultivar (cv. ILC1919) and more than 90% in salt-sensitive cultivars (cv. Sirio and Lechoso) with the highest salt dosage during the reproductive growth. We show that the higher NaCl tolerance of the ILC1919 cultivar is supported by the less N2 fixation inhibition, a higher root-to-shoot ratio, normalized nodule weight and shoot K/Na ratio; and a reduced foliar accumulation of Na+. Moreover, our results reveal the effectiveness of these nutritional and physiological indicators in the selection of salinity-tolerant chickpea plants growing under symbiotic conditions..
机译:在五个西班牙和叙利亚的鹰嘴豆(Cicer arietinum L.)品种中研究了盐处理导致的植物生长,固氮酶活性和养分浓度的变化。与中型根瘤菌ch-191菌株共生的植物在受控条件下生长32天,并受到盐胁迫。在盐胁迫下,所有试验品种的生长和固氮参数均受到影响。在ILC1919中,植物干重降低了约15%;在Sirio和Lechoso中,约50%的盐用量最高(100 mM NaCl)。与大多数对盐敏感的品种相比,ILC1919在低盐条件下显示出较少的生长并伴随着较低的干物质形成。在生殖生长过程中,盐剂量最高的抗盐品种(cv。ILC1919)的氮酶活性下降约60%,而盐敏感品种(sirio和Lechoso的cv。)则下降90%以上。我们显示,较低的氮固定抑制,较高的根茎比,较高的根瘤重和茎秆钾/钠比可支持ILC1919品种较高的NaCl耐性。并且减少了Na +的叶面积累。此外,我们的结果揭示了这些营养和生理指标在选择在共生条件下生长的耐盐鹰嘴豆植物中的有效性。

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