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Effects of Elevated CO2 and Nitrogen Nutrition on Cytokinins in the Xylem Sap and Leaves of Cotton

机译:CO2和氮营养水平升高对棉花木质部汁液和叶片中细胞分裂素的影响

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摘要

We measured the level of xylem-derived cytokinins (CKs) entering a cotton leaf, and the CK levels in the same leaf, thus enabling xylem sap and foliar CKs to be compared concurrently. Although zeatin was the dominant CK in xylem sap, zeatin, dihydrozeatin, and N6-(2-isopentenyl) adenine were present in approximately equimolar levels in leaves. Elevated [CO2] (EC) has an effect on the levels of cytokinins in sap and leaf tissues. This effect was modulated by the two levels of root nitrogen nutrition (2 and 12 mm nitrate). Growth enhancement (70%) in EC over plants in ambient [CO2] (AC) was observed for both nitrogen nutrition treatments. Low-nitrogen leaves growing in EC exhibited photosynthetic acclimation, whereas there was no sign of photosynthetic acclimation in high-nitrogen grown leaves. Under these prevailing conditions, xylem sap and leaf tissues were obtained for CK analysis. Higher nitrogen nutrition increased the delivery per unit leaf area of CKs to the leaf at AC. EC caused a greater increase in CK delivery to the leaf at low nitrogen conditions (106%) than at high nitrogen conditions (17%). EC induced a significant increase in CK content in low-nitrogen leaves, whereas CK content in leaf tissues was similar for high-nitrogen leaves growing in AC and EC.
机译:我们测量了进入棉叶的木质部来源的细胞分裂素(CKs)的水平,以及同一叶中CK的水平,从而能够同时比较木质部汁液和叶面CKs。尽管玉米素是木质部树液中的主要CK,但玉米叶片中玉米素,二氢玉米素和N 6 -(2-异戊烯基)腺嘌呤的含量大致等摩尔。升高的[CO2](EC)对汁液和叶片组织中细胞分裂素的水平有影响。根氮营养的两个水平(2和12毫米硝酸盐)调节了这种效果。两种氮素营养处理均观察到EC在环境中比植物在[CO2](AC)中的生长增强(70%)。 EC中生长的低氮叶片表现出光合适应性,而高氮生长的叶片中没有光合适应性的迹象。在这些普遍的条件下,获得木质部汁液和叶片组织用于CK分析。较高的氮营养水平提高了交流电下CKs向叶的单位叶面积的传递。在低氮条件下(106%),EC导致向叶片的CK传递比在高氮条件下(17%)更大。 EC导致低氮叶片中CK含量显着增加,而在AC和EC中生长的高氮叶片中叶片组织中的CK含量相似。

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