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玉米脆茎 2 样蛋白 3,编码 COBRA 蛋白,在细胞壁形成和碳水化合物分配中发挥作用。

Maize Brittle Stalk2-Like3, encoding a COBRA protein, functions in cell wall formation and carbohydrate partitioning.

机构信息

Divisions of Plant Science and Technology, Biological Sciences, Interdisciplinary Plant Group, and the Missouri Maize Center, University of Missouri, Columbia, Missouri 65211, USA.

Bayer Crop Science, Chesterfield, Missouri 63017, USA.

出版信息

Plant Cell. 2021 Oct 11;33(10):3348-3366. doi: 10.1093/plcell/koab193.

Abstract

Carbohydrate partitioning from leaves to sink tissues is essential for plant growth and development. The maize (Zea mays) recessive carbohydrate partitioning defective28 (cpd28) and cpd47 mutants exhibit leaf chlorosis and accumulation of starch and soluble sugars. Transport studies with 14C-sucrose (Suc) found drastically decreased export from mature leaves in cpd28 and cpd47 mutants relative to wild-type siblings. Consistent with decreased Suc export, cpd28 mutants exhibited decreased phloem pressure in mature leaves, and altered phloem cell wall ultrastructure in immature and mature leaves. We identified the causative mutations in the Brittle Stalk2-Like3 (Bk2L3) gene, a member of the COBRA family, which is involved in cell wall development across angiosperms. None of the previously characterized COBRA genes are reported to affect carbohydrate export. Consistent with other characterized COBRA members, the BK2L3 protein localized to the plasma membrane, and the mutants condition a dwarf phenotype in dark-grown shoots and primary roots, as well as the loss of anisotropic cell elongation in the root elongation zone. Likewise, both mutants exhibit a significant cellulose deficiency in mature leaves. Therefore, Bk2L3 functions in tissue growth and cell wall development, and this work elucidates a unique connection between cellulose deposition in the phloem and whole-plant carbohydrate partitioning.

摘要

碳水化合物从叶片向库组织的分配对于植物的生长和发育至关重要。玉米(Zea mays)隐性碳水化合物分配缺陷 28(cpd28)和 cpd47 突变体表现出叶片黄化和淀粉及可溶性糖的积累。用 14C-蔗糖(Suc)进行的运输研究发现,与野生型同窝相比,cpd28 和 cpd47 突变体从中成熟叶片中蔗糖的输出量明显减少。与蔗糖输出减少一致,cpd28 突变体表现出成熟叶片中韧皮部压力降低,以及未成熟和成熟叶片中韧皮部细胞壁超微结构改变。我们鉴定了 Brittle Stalk2-Like3(Bk2L3)基因中的致病突变,该基因是 COBRA 家族的成员,参与被子植物细胞壁的发育。以前报道的 COBRA 基因都没有报道影响碳水化合物的输出。与其他已鉴定的 COBRA 成员一致,BK2L3 蛋白定位于质膜,突变体在黑暗生长的枝条和主根中表现出矮化表型,以及根伸长区的各向异性细胞伸长丧失。同样,两个突变体在成熟叶片中都表现出明显的纤维素缺乏。因此,Bk2L3 参与组织生长和细胞壁发育,本工作阐明了韧皮部纤维素沉积与整株植物碳水化合物分配之间的独特联系。

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