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Impact of salt stress on the features and activities of root system for three desert halophyte species in their seedling stage

机译:盐胁迫对三种荒漠盐生植物幼苗期根系特征和活性的影响

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摘要

Linkage between belowground and aboveground sections of ecological system is mainly depending on root system. But root system is the parts of plant that people less understand. The absorption function of root system is closely related to their morphology and activity. Moreover root system can interact with the environmental stress under the adverse situation, and adjust its system to take adaptation responses in morphology and physiology to strengthen its survival chance. This research is focused on three desert halophyte species of H. ammodendron (C.A.Mey.) Bge., S. physophora Pall., and S. nitraria Pall, under solution culture, to study the differences of their root system morphology and activity in the seedling stage under varying salt concentration conditions. The study results show that: A certain salt concentration can promote development of these three halophytes; but rather high salt concentration will restrain their growth, in particular inhibit the root system development. Under the same salt concentration condition, S. nitraria Pall, grows fast and accumulates the largest amount of biomass. Under relatively low salt concentration, the length of axial root and the total length of root system of these three halophyte species are all increased; and compared to the checking samples, S. physophora Pall, occupies the top place of root system growth, but the high salt concentration will restrain the increase of total root length; among them, the impact intensity on S. physophora Pall, is lighter than to H. ammodendron (C.A.Mey.) Bge. and S. nitraria Pall, is lighter; the salinity does not bring distinct influence on the average diameter of root system of these three plant species, but trends to reducing the size; under the solution culture conditions, the middle and lower parts of the axial root of H. ammodendron (C.A.Mey.) Bge. and S. physophora Pall, are rather equally distributed, but the central zone of S. nitraria Pall, root system is more significantly increased than the upper and lower zones; salt concentration does not bring significant impact on the root system spatial distribution of each species. The root activity of the three plants is increased along with the increase of the salt concentration. When the salt concentration is low, the root activity is not significantly increased; but when the salt concentration is high, the root activity is increased significantly. The experimental results show that the saline tolerance capacity of H. ammodendron (C.A.Mey.) Bge. is lower than the other two species, and the capacity of S. physophora Pall, ranks the top place.
机译:生态系统地下部分与地下部分之间的联系主要取决于根系。但是根系是人们鲜为人知的植物部分。根系的吸收功能与其形态和活性密切相关。此外,根系可以在不利条件下与环境胁迫相互作用,调节根系以适应形态和生理上的适应性反应,从而增加其生存机会。这项研究的重点是在溶液培养条件下,H。ammodendron(CAMey。)Bge。,S。physophora Pall。和S.nitroaria Pall的三种沙漠盐生植物物种,研究其根系形态和活性的差异。在不同盐浓度条件下的苗期。研究结果表明:一定的盐浓度可以促进这三种盐生植物的发育。但是较高的盐浓度会抑制它们的生长,特别是抑制根系发育。在相同的盐浓度条件下,硝酸链球菌生长迅速,并积累了最大量的生物量。在相对较低的盐浓度下,这三种盐生植物物种的轴根长度和根系总长度都增加了。与检查样品相比,S。physophora Pall在根系生长中居首位,但高盐浓度会抑制根系总长的增加。其中,对S. physophora Pall的影响强度要比对H. ammodendron(C.A. Mey。)Bge轻。硝化沙门氏菌较轻;盐度不会对这三种植物的根系平均直径产生明显的影响,但是会减小其大小。在固溶培养条件下,H。ammodendron(C.A. Mey。)Bge的轴向根的中下部。与S. physophora Pall分布相当均匀,但S.nitroaria Pall的根部中央区域比上部和下部区域显着增加。盐浓度不会对每个物种的根系空间分布产生重大影响。三种植物的根系活性随盐浓度的增加而增加。当盐浓度低时,根系活性没有明显增加;但是当盐浓度高时,根系活性显着增加。实验结果表明,H。ammodendron(C.A. Mey。)Bge的耐盐能力。低于其他两个物种,而S. physophora Pall的容量居首位。

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