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作 者:MUNIER Umar 彭益全[1] 徐瑶[1] 毛轶清[1] 刘兆普[1] 郑青松[1]
机构地区:[1]南京农业大学资源与环境科学学院/江苏省海洋生物学重点实验室,江苏南京210095
出 处:《南京农业大学学报》2013年第3期77-82,共6页Journal of Nanjing Agricultural University
基 金:国家公益性行业(农业)科研专项(200903001-05);国家科技支撑计划项目(2011BAD13B09);江苏省科技支撑计划项目(BE2011368)
摘 要:研究600 mg.L-1多效唑(PP333)浸种对200 mmol.L-1NaCl胁迫处理下麻疯树幼苗相对生长速率(RGR)、干物质积累速率(DMAR)、含水量(WC)、根冠比(R/S)以及叶片电解质渗漏率(EL)、渗透调节能力(OAA)、抗氧化能力、离子分配等的效应。结果表明:与对照相比,PP333浸种处理显著降低植株RGR、叶片SOD和POD活性,显著提高植株DMAR、WC和R/S,显著提高叶片OAA、K+含量和K+/Na+比率;200 mmol.L-1NaCl胁迫下麻疯树幼苗RGR、DMAR、WC、R/S、SOD活性、CAT活性、K+含量和K+/Na+比率均显著下降,而EL、MDA含量、POD活性、Na+和Cl-含量均显著上升;600 mg.L-1PP333浸种处理能显著提高NaCl胁迫下植株的RGR、DMAR、WC和R/S,同时显著降低叶片EL、Na+和Cl-含量,显著提高叶片OAA、SOD和CAT活性,显著提高K+含量和K+/Na+比率,显著降低MDA含量和POD活性。结论:PP333浸种能显著促进麻疯树幼苗的生物量积累,抑制地上部伸长,即矮壮效应,从而大大改善其对盐渍的适应能力,其耐盐性的提高是因为PP333浸种改善了植株的抗氧化能力、渗透调节和离子平衡。This study evaluated the effects of seed soaking in 600 mg. L-1 paclobutrazol ( PP333 ) on the growth of Jatropha curcas seedlings under salt stress, and the relative growth rate ( RGR), dry matter accumulation rate (DMAR) , water content ( WC ), root/ shoot ratio (R/S) , leaf electrolyte leakage (EL) , osmotic adjustment ability(OAA) , antioxidation and ion distribution in leaf were de- termined. The results obtained were as follows: compared with the control, the treatment of seed soaking in 600 mg. L-1 PP333 significantly decreased RGR, and activities of SOD and POD, and increased DMAR, WC, R/S, and increased OAA, K+, K+/Na+ ratio in leaves. The treatment of 200 mmol.L-1 NaC1 significantly decreased the seedling RGR, DMAR, WC, R/S, SOD activity, CAT activity, K+ content and K+/Na+ ratio, and increased EL, MDA content, POD activity, contents of Na+ and Cl-. However, compared with only NaCl treatment, the plant RGR, DMAR, WC, R/S, and the leaf OAA, SOD activity, CAT activity, K+ content and K+/Na+ ratio also increased, but leaf EL, contents of Na+, Cl- and MDA, and POD activity obviously decreased with PP333 application under NaCl stress. To sum up, seed soaking in 600 mg.L-1 PP333 stimulated J. curcas seedlings' growth obviously, making the plant dwarf and strong, and their salt adaptation was improved remarkably. The above-mentioned stimulation and improvement were due to the improvement of leaf antioxidation, osmotic adjustment and ion homeostasis caused by PP333.
分 类 号:S792.99[农业科学—林木遗传育种]
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