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具有淀粉缺乏胚乳的玉米突变体中的源库关系。

Source-sink relations in maize mutants with starch-deficient endosperms.

作者信息

Koch K E, Tsui C L, Schrader L E, Nelson O E

机构信息

Department of Agronomy, University of Wisconsin, Madison, Wisconsin 53706.

出版信息

Plant Physiol. 1982 Jul;70(1):322-5. doi: 10.1104/pp.70.1.322.

Abstract

Partitioning and translocation of photosynthates were compared between a nonmutant genotype (Oh 43) of corn (Zea mays L.) and two starch-deficient endosperm mutants, shruken-2 (sh2) and brittle-1 (bt1), with similar genetic backgrounds. Steady-state levels of (14)CO(2) were supplied to source leaf blades for 2-hour periods, followed by separation and identification of (14)C-assimilates in the leaf, kernel, and along the translocation path. An average of 14.1% of the total (14)C assimilated was translocated to normal kernels, versus 0.9% in sh2 kernels and 2.6% in btl kernels. Over 98% of the kernel (14)C was in free sugars, and further analysis of nonmutant kernels showed 46% of this label in glucose and fructose. Source leaves of mutant plants exported significantly less total photosynthate (24.0% and 36.3% in sh2 and bt1 compared to 48.0% in the normal plants) and accumulated greater portions of label in the insoluble (starch) fraction. Mutant plants also showed lower percentages of photosynthate in the leaf blade and sheath below the exposed blade area. The starch-deficient endosperm mutants influence the partitioning and translocation of photosynthates and provide a valuable tool for the study of source-sink relations.

摘要

在具有相似遗传背景的玉米(Zea mays L.)非突变基因型(Oh 43)与两个淀粉缺陷型胚乳突变体——皱缩-2(sh2)和脆-1(bt1)之间,对光合产物的分配和转运进行了比较。在2小时内,向源叶片供应稳态水平的(14)CO(2),随后对叶片、籽粒以及沿转运路径的(14)C同化物进行分离和鉴定。平均而言,所同化的总(14)C中有14.1%转运到正常籽粒中,而在sh2籽粒中为0.9%,在bt1籽粒中为2.6%。籽粒中超过98%的(14)C存在于游离糖中,对非突变籽粒的进一步分析表明,该标记的46%存在于葡萄糖和果糖中。突变植株的源叶输出的光合产物总量显著减少(sh2和bt1分别为24.0%和36.3%,而正常植株为48.0%),并且在不溶性(淀粉)部分积累了更大比例的标记。突变植株在暴露叶片区域下方的叶片和叶鞘中的光合产物百分比也较低。淀粉缺陷型胚乳突变体影响光合产物的分配和转运,并为研究源库关系提供了一个有价值的工具。

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