The State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, The Innovative Academy of Seed Design, Chinese Academy of Sciences, Beijing, 100101, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
New Phytol. 2021 Oct;232(1):279-289. doi: 10.1111/nph.17575. Epub 2021 Jul 21.
Hybrid necrosis, caused by complementary genes Ne1 and Ne2, is a serious barrier for combining desirable traits from different genotypes of wheat, affecting the full utilisation of heterosis. To date, both Ne1 and Ne2 are still not isolated although they were documented decades ago. We report here the map-based cloning and functional characterisation of Ne2, encoding a coiled coil-nucleotide-binding site-leucine-rich repeat (CC-NBS-LRR) protein. Homozygous frameshift mutations generated using the CRISPR/Cas9 approach confirmed the Ne2-inducing hybrid necrosis in wheat. Upregulated expression of Ne2 induced by Ne1 and excess hydrogen peroxide accumulation are associated with the necrosis formation. Genetic analyses of a Ne2 allele (Ne2 ) and leaf rust resistance gene LrLC10/Lr13 revealed that they might be the same gene. Furthermore, we demonstrated that the frequency of the Ne2 allele was much lower in landraces (2.00%) compared with that in modern cultivars (13.62%), suggesting that Ne2 allele has been partially applied in wheat genetic improvement. Our findings open opportunities of thoroughly investigating the molecular mechanism of hybrid necrosis, selecting Lr13 and simultaneously avoiding hybrid necrosis in wheat breeding through marker-assisted selection.
杂种坏死,由互补基因 Ne1 和 Ne2 引起,是将不同小麦基因型的优良性状结合起来的严重障碍,影响杂种优势的充分利用。迄今为止,尽管这两个基因几十年前就有记载,但仍未被分离出来。我们在这里报告了 Ne2 的图谱克隆和功能特征,Ne2 编码一个卷曲螺旋-核苷酸结合位点-亮氨酸丰富重复(CC-NBS-LRR)蛋白。使用 CRISPR/Cas9 方法产生的纯合移码突变证实了小麦中由 Ne2 诱导的杂种坏死。Ne1 诱导的 Ne2 上调表达和过量过氧化氢积累与坏死形成有关。对 Ne2 等位基因(Ne2)和叶锈病抗性基因 LrLC10/Lr13 的遗传分析表明,它们可能是同一个基因。此外,我们证明了 Ne2 等位基因在地方品种(2.00%)中的频率明显低于现代品种(13.62%),表明 Ne2 等位基因已部分应用于小麦遗传改良。我们的发现为深入研究杂种坏死的分子机制、通过标记辅助选择选择 Lr13 并同时避免小麦育种中的杂种坏死提供了机会。