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冬小麦花后硝酸还原同化作用:旗叶原位削减。

Postanthesis nitrate assimilation in winter wheat : in situ flag leaf reduction.

机构信息

United States Department of Agriculture, Agricultural Research Service, University of Kentucky, Lexington, Kentucky 40546-0091.

出版信息

Plant Physiol. 1986 May;81(1):17-20. doi: 10.1104/pp.81.1.17.

Abstract

When adequate levels of soil NO(3) (-) are available, concurrent NO(3) (-) absorption and assimilation, and mobilization of vegetative N reserves accumulated prior to anthesis, may be used to supply N to developing wheat (Triticum aestivum L.) kernels. Vegetative wheat components (stems, leaves, spike) are known to possess NO(3) (-) reductase activity, but the in situ utilization of NO(3) (-) translocated to the shoot has not been studied. Assimilation and partitioning of (15)N was determined in winter wheat ;Doublecrop.' At 7 days after anthesis, the stem immediately above the peduncle node was heat girdled to block phloem export from the flag leaf. Control plants were not girdled. One day later, 50 micromoles of (15)NO(3) (-) (98 atom percent (15)N) was injected into the penultimate internodal lacuna, after which (15)NO(3) (-) utilization was determined sequentially over a 5 day period. Based on differences in spike accumulation of reduced (15)N excess between treatments and the amount of reduced (15)N excess remaining in the flag leaf, it was estimated that the flag leaf contributed 37% of the total reduced (15)N excess in the injected shoot. The lower shoot contribution was 18% and that of the peduncle plus spike was 45%.

摘要

当土壤中硝酸盐(NO3-)的含量充足时,小麦植株可以同时吸收和同化硝酸盐,以及动用开花前积累的营养氮储备,来为正在发育的麦粒提供氮素。众所周知,小麦的营养体部分(茎、叶、穗)具有硝酸盐还原酶活性,但尚未研究过向地上部转运的硝酸盐的原位利用情况。本研究以冬小麦‘Doublecrop’为材料,测定了(15)N 的同化和分配情况。在开花后 7 天,用热环法处理穗下第一节间,阻断旗叶韧皮部的养分输出。对照植株不进行环割处理。1 天后,将 50 微摩尔(15)NO3-(98 原子百分比(15)N)注入倒数第二节间的腔隙中,随后在 5 天内依次测定(15)NO3-的利用情况。根据处理间穗部积累的还原(15)N 过剩量与旗叶中剩余还原(15)N 过剩量的差异,估计旗叶为注射部位地上部总还原(15)N 过剩量的 37%。下部地上部的贡献为 18%,穗柄加穗的贡献为 45%。

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