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1.
Oxygation Enhances Growth, Gas Exchange and Salt Tolerance of Vegetable Soybean and Cotton in a Saline Vertisol 总被引:2,自引:0,他引:2
Impacts of salinity become severe when the soil is deficient in oxygen. Oxygation (using aerated water for subsurface drip irrigation of crop) could minimize the impact of salinity on plants under oxygen-limiting soil environments. Pot experiments were conducted to evaluate the effects of oxygation (12% air volume/volume of water) on vegetable soybean (moderately salt tolerant) and cotton (salt tolerant) in a salinized vertisol at 2, 8, 14, 20 dS/m ECe. In vegetable soybean, oxygation increased above ground biomass yield and water use efficiency (WUE) by 13% and 22%, respectively, compared with the control. Higher yield with oxygation was accompanied by greater plant height and stem diameter and reduced specific leaf area and leaf Na+ and Cl-concentrations. In cotton, oxygation increased lint yield and WUE by 18% and 16%, respectively, compared with the control, and was accompanied by greater canopy light interception, plant height and stem diameter. Oxygation also led to a greater rate of photosynthesis, higher relative water content in the leaf, reduced crop water stress index and lower leaf water potential. It did not, however, affect leaf Na+ or Cl- concentration. Oxygation invariably increased, whereas salinity reduced the K+ : Na+ ratio in the leaves of both species. Oxygation improved yield and WUE performance of salt tolerant and moderately tolerant crops under saline soil environments, and this may have a significant impact for irrigated agriculture where saline soils pose constraints to crop production. 相似文献
2.
Liang Liu Ying Wang Nan Wang Yuan‐Yuan Dong Xiu‐Duo Fan Xiu‐Ming Liu Jing Yang Hai‐Yan Li 《植物学报(英文版)》2011,53(9):731-742
3.
Effect of NaCl (electrical conductivity of 0, 5, 10, 15, and 20 dS m–1) on growth, gas exchange, and ion uptake in two Ziziphus species (Z. rotundifolia and Z. nummularia) differing in salt tolerance was studied. At 30 and 45 d after first leaf initiation, the dry mass of shoot and leaves, and rates of net photosynthesis (P
N) and transpiration (E) decreased significantly with increasing NaCl concentration whereas membrane injury and accumulation of proline increased. The sodium content was highest in the roots of Z. rotundifolia and in the leaves of Z. nummularia. Potassium content did not differ much in the roots but it was significantly higher in the leaves of Z. rotundifolia at 30 and 45 d of observations. Thus both these species were tolerant to salinity but at high salinity Z. rotundifolia performed better owing to its higher P
N and E, restricted translocation of sodium from root to leaves, and larger accumulation of potassium in the leaves. 相似文献
4.
南疆机采棉田灌溉制度对土壤水盐变化和棉花产量的影响 总被引:1,自引:0,他引:1
土壤盐渍化在南疆干旱区的持续加重威胁到棉花生产,如何通过制定精准的膜下滴灌灌溉策略控制盐分累积是目前研究的一个关键科学问题.本研究从改善土壤状况、保证棉花产量出发,在南疆主要棉花产区设置生育期不同灌水定额试验,研究灌溉定额对土壤水盐运移和棉花产量、品质的影响.结果表明: 灌溉定额的增加有助于棉花光合产物的积累,但对生殖器官分配比例无显著影响;土壤脱盐程度与灌溉定额呈正相关关系,当棉花生育期灌溉定额高于2577.83 m3·hm-2时,土壤盐渍化程度不会加深;灌溉定额显著影响灌溉水利用效率(WUEI),但纤维品质没有显著差异,且棉花产量随灌溉定额增加呈现先增加后减少的趋势.研究认为生育期灌溉定额4200 m3·hm-2(蕾期灌水间隔7 d,花铃期灌水间隔5 d)是南疆干旱区较为适宜的灌溉制度. 相似文献
5.
Muhammad IQBAL Muhammad ASHRAF 《植物学报(英文版)》2005,47(11):1315-1325
The effects of presowing seed treatment with different concentrations of cytokinins (kinetin and benzylaminopurine; 100, 150, and 200 mg/L) on growth, photosynthetic capacity, and ion homeostasis were investigated in two spring wheat (Triticum aestivum L.) cultivars, namely MH-97 (salt sensitive) and Inqlab- 91 (salt tolerant). Primed and non-primed seeds were sown in a field in which NaC1 salinity of 15 dS/m was developed. Of the different concentrations of priming agents tested, the effect of a moderate concentration of kinetin (150 mg/L) was very pronounced, particularly in improving growth and grain yield, in both cultivars. In addition, priming with kinetin alleviated the adverse effect of salt stress on gaseous exchange characteristics (net CO2 assimilation rate and water use efficiency) in both cultivars. Seed priming with a moderate concentration of kinetin also altered the pattern of accumulation of Na^+ and Clˉ in the shoots, irrespective of the wheat cultivar, under conditions of salt stress. However, all other priming agents at the different concentrations tested did not show any consistent effect on ion levels, except hydropriming, which increased K^+ levels in the shoots of both cultivars under salt stress. In conclusion, a moderate concentration of kinetin showed a consistent effect in altering the growth and grain yield of both wheat cultivars, which was related to the beneficial effects of kinetin priming on water use efficiency and photosynthetic rate under conditions of salt stress. 相似文献