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Mutation of SELF-PRUNING homologs in cotton promotes short-branching plant architecture

机译:棉花自修剪同源物的突变促进了短枝植物的结构

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摘要

In cotton, the formation of fruiting branches affects both plant architecture and fiber yield. Here, we report map-based cloning of the axillary flowering mutation gene (GbAF) that causes bolls to be borne directly on the main plant stem in Gossypium barbadense, and of the clustered boll mutation gene (cl1) in G. hirsutum. Both mutant alleles were found to represent point mutations at the Cl1 locus. Therefore, we propose that the GbAF mutation be referred to as cl1b. These Cl1 loci correspond to homologs of tomato SELF-PRUNING (SP), i.e. Gossypium spp. SP (GoSP) genes. In tetraploid cottons, single monogenic mutation of either duplicate GoSP gene (one in the A and one in the D subgenome) is associated with the axillary cluster flowering phenotype, although the shoot-indeterminate state of the inflorescence is maintained. By contrast, silencing of both GoSPs leads to the termination of flowering or determinate plants. The architecture of axillary flowering cotton allows higher planting density, contributing to increased fiber yield. Taken together the results provide new insights into the underlying mechanism of branching in cotton species, and characterization of GoSP genes may promote the development of compact cultivars to increase global cotton production.
机译:在棉花中,结果枝的形成会影响植物的结构和纤维产量。在这里,我们报告了腋生开花突变基因(GbAF)的基于图的克隆,该基因导致棉铃直接携带在巴布达棉(Gossypium barbadense)的主要植物茎上,而簇生的棉铃突变基因(cl1)在陆地棉中也存在。发现两个突变体等位基因均代表Cl1基因座处的点突变。因此,我们建议将GbAF突变称为cl1 b 。这些Cl1基因座对应于番茄自修剪(SP)的同系物,即棉属spp 。 SP GoSP )基因。在四倍体棉花中,重复的 GoSP 基因的一个单基因突变(一个在A亚基中一个在D亚基因组中)与腋生簇开花表型有关,尽管花序的不定芽状态是保持。相比之下,对两个 GoSP 的沉默都会导致开花植物或确定植物的终止。腋生开花棉的结构允许更高的种植密度,有助于提高纤维产量。综上所述,结果为了解棉种分支的潜在机理提供了新的见识,而 GoSP 基因的表征可能促进紧凑型品种的发展以增加全球棉花产量。

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