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首页> 外文期刊>Acta Physiologiae Plantarum >Effects of salt stress on physio-biochemical characters and gene expressions in halophyte grass Leptochloa fusca (L.) Kunth
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Effects of salt stress on physio-biochemical characters and gene expressions in halophyte grass Leptochloa fusca (L.) Kunth

机译:盐胁迫对嗜毒草乳清菌(L.)kunth的生理生化特征和基因表达的影响

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Kallar grass (Leptochloa fusca) is a perennial C4 halophytic species with high salt tolerant. The present research was made to investigate the physio-biochemical characters and transcriptional changes of L. fusca under varying salinity levels (0-600mM NaCl). The Na+ level in shoots and roots increased significantly, whereas the K+ content was maintained high in 300mM NaCl and then declined with increasing salinity in both tissues. The content of proline in seedlings exposed to extreme salinity level was 15.5-fold higher than control. Photosynthetic pigments, total soluble proteins, PAL activity, and total phenolic compounds in salt-stressed plants increased gradually up to 450mM and declined at 600mM NaCl. High salt concentration led to oxidative stress that was manifested by increased MDA level. To tackle with oxidative damages, L. fusca enhanced the activity of antioxidant enzymes like superoxide dismutase (SOD), catalase (CAT), and ascorbate peroxidase (APX). Moreover, under NaCl stress, the mRNA levels of SOS1, PM H+-ATPase, and NHX1 were up-regulated in both tissues, but higher in roots than in shoots. Our results demonstrate that L. fusca could use an osmotic adjustment, antioxidant defense system,and regulating the ion homeostasis as the most effective salt tolerance mechanisms for better plant growth under saline conditions.
机译:Kallar Grass(Leptochloa Fusca)是一种常年C4嗜睡物种,具有高耐盐剂。本研究探讨了在不同盐度水平(0-600mm NaCl)下L.FUSCA的物理生化特性和转录变化。芽和根部的Na +水平显着增加,而K +含量在300mm NaCl中保持高,然后在两种组织中增加盐度的升高。暴露于极端盐度水平的幼苗中脯氨酸含量比对照高15.5倍。光合色素,总可溶性蛋白质,PAL活性和盐胁迫植物的总酚类化合物逐渐增加至450mm,并在600mm NaCl下下降。高盐浓度导致氧化应激,其表现为增加的MDA水平。为了用氧化损伤来解决,L.FUSCA增强了超氧化物歧化酶(SOD),过氧化氢酶(CAT)和抗坏血酸过氧化物酶(APX)等抗氧化酶的活性。此外,在NaCl应力下,SOS1,PM H + -ATP酶和NHX1的mRNA水平在两种组织中调节,但根部较高而不是芽。我们的结果表明,L.FUSCA可以使用渗透调节,抗氧化防御系统,并将离子稳态调节为最有效的耐盐机制,以便在盐水条件下更好的植物生长。

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