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The Transport of Indole-3-Acetic Acid in Boron- and Calcium-Deficient Sunflower Hypocotyl Segments

机译:缺硼和缺钙向日葵下胚轴段中吲哚-3-乙酸的转运

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摘要

Transfer of sunflower (Helianthus annuus L. cv Russian Mammoth) seedlings from complete nutrient solution to solutions deficient in either boron or calcium resulted in a steady decline in the rate of auxin transport, compared to seedlings that remained in the complete solution. In seedlings transferred to solutions deficient in both B and Ca, the decline in auxin transport was greater than seedlings deficient in only one element. The transfer of B- or Ca-deficient seedlings back to the complete solution prevented further decline in auxin transport, but auxin transport did not increase to the same level as seedlings maintained in complete solution. The significant reduction in auxin transport during the early stages of B or Ca deficiency was not related to (a) reduced growth rate of the hypocotyl, (b) increased acropetal movement of auxin, or (c) lack of respiratory substrates in the hypocotyl. In addition, no difference was found in the water-extractable total and ionic Ca in B-deficient and control nondeficient hypocotyls, indicating a direct effect of B on auxin transport, rather than indirectly by affecting Ca absorption. The rate of auxin transport in hypocotyls deficient in either B or Ca, was inversely correlated with K+ leakage and rate of respiration. The data presented strongly support the view that there are separate sites for B and Ca in the basipetal transport of the plant hormone indoleacetic acid.
机译:与完整溶液中残留的幼苗相比,向日葵(幼苗从完整的营养液中转移至硼或钙缺乏的溶液中)导致植物生长素运输速率的稳定下降。在转移到同时缺乏B和Ca的溶液中的幼苗中,生长素运输的下降大于仅缺乏一种元素的幼苗。将缺乏B或Ca的幼苗转移回完全溶液可防止植物生长素运输的进一步下降,但植物生长素的运输并未达到与维持在完全溶液中的幼苗相同的水平。在B或Ca缺乏的早期阶段,生长素运输的显着减少与(a)下胚轴的生长速率降低,(b)生长素的顶囊运动增加或(c)下胚轴缺乏呼吸底物无关。此外,在缺硼和对照缺不足的下胚轴中水可萃取的总钙和离子钙没有发现差异,表明B对植物生长素运输的直接影响,而不是间接地影响Ca的吸收。 B或Ca缺乏的下胚轴中生长素的运输速率与K + 泄漏和呼吸速率呈负相关。所提供的数据强烈支持这样的观点,即植物激素吲哚乙酸的基团转运中存在B和Ca的单独位置。

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