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突变淀粉分支酶 2a 抑制了大麦中缺失异淀粉酶 1 引起的性状。

Mutations in starch BRANCHING ENZYME 2a suppress the traits caused by the loss of ISOAMYLASE1 in barley.

机构信息

Institute of Plant Science and Resources, Okayama University, 2-20-1 Chuo, Kurashiki, Okayama, 710-0046, Japan.

John Innes Centre, Norwich Research Park, Norwich,, NR4 7UH, UK.

出版信息

Theor Appl Genet. 2024 Aug 31;137(9):212. doi: 10.1007/s00122-024-04725-7.

Abstract

The hvbe2a mutations restore the starch-deficient phenotype caused by the hvisa1 and hvflo6 mutations in barley endosperm. The genetic interactions among starch biosynthesis genes can be exploited to alter starch properties, but they remain poorly understood due to the various combinations of mutations to be tested. Here, we isolated two novel barley mutants defective in starch BRANCHING ENZYME 2a (hvbe2a-1 and hvbe2a-2) based on the starch granule (SG) morphology. Both hvbe2a mutants showed elongated SGs in the endosperm and increased resistant starch content. hvbe2a-1 had a base change in HvBE2a gene, substituting the amino acid essential for its enzyme activity, while hvbe2a-2 is completely missing HvBE2a due to a chromosomal deletion. Further genetic crosses with barley isoamylase1 mutants (hvisa1) revealed that both hvbe2a mutations could suppress defects in endosperm caused by hvisa1, such as reduction in starch, increase in phytoglycogen, and changes in the glucan chain length distribution. Remarkably, hvbe2a mutations also transformed the endosperm SG morphology from the compound SG caused by hvisa1 to bimodal simple SGs, resembling that of wild-type barley. The suppressive impact was in competition with floury endosperm 6 mutation (hvflo6), which could enhance the phenotype of hvisa1 in the endosperm. In contrast, the compound SG formation induced by the hvflo6 hvisa1 mutation in pollen was not suppressed by hvbe2a mutations. Our findings provide new insights into genetic interactions in the starch biosynthetic pathway, demonstrating how specific genetic alterations can influence starch properties and SG morphology, with potential applications in cereal breeding for desired starch properties.

摘要

hvbe2a 突变恢复了大麦胚乳中 hvisa1 和 hvflo6 突变引起的淀粉缺乏表型。淀粉生物合成基因的遗传相互作用可以用来改变淀粉特性,但由于要测试的突变组合多种多样,它们的理解仍然很差。在这里,我们基于淀粉粒 (SG) 形态分离了两个新型大麦突变体,它们在淀粉分支酶 2a (hvbe2a-1 和 hvbe2a-2) 中存在缺陷。这两个 hvbe2a 突变体在胚乳中显示出伸长的 SG 和增加的抗性淀粉含量。hvbe2a-1 在 HvBE2a 基因中发生碱基变化,取代了其酶活性所必需的氨基酸,而 hvbe2a-2 由于染色体缺失完全缺失 HvBE2a。与大麦异淀粉酶 1 突变体 (hvisa1) 的进一步遗传杂交表明,hvbe2a 的两种突变都可以抑制 hvisa1 引起的胚乳缺陷,例如淀粉减少、植酸糖原增加以及葡聚糖链长分布的变化。值得注意的是,hvbe2a 突变还将由 hvisa1 引起的胚乳 SG 形态从复合 SG 转变为双峰简单 SG,类似于野生型大麦。这种抑制作用与粉质胚乳 6 突变 (hvflo6) 竞争,后者可以增强胚乳中 hvisa1 的表型。相比之下,hvflo6 hvisa1 突变在花粉中诱导的复合 SG 形成不受 hvbe2a 突变的抑制。我们的研究结果为淀粉生物合成途径中的遗传相互作用提供了新的见解,展示了特定的遗传改变如何影响淀粉特性和 SG 形态,这在理想淀粉特性的谷物育种中具有潜在的应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b21/11365852/0f0b3fa56b1e/122_2024_4725_Fig1_HTML.jpg

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