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OsALMT7 Maintains Panicle Size and Grain Yield in Rice by Mediating Malate Transport

机译:OsALMT7通过介导苹果酸转运维持稻穗大小和籽粒产量

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摘要

Panicle size is a critical determinant of grain yield in rice (Oryza sativa) and other grain crops. During rice growth and development, spikelet abortion often occurs at either the top or the basal part of the panicle under unfavorable conditions, causing a reduction in fertile spikelet number and thus grain yield. In this study, we report the isolation and functional characterization of a panicle abortion mutant named panicle apical abortion1-1 (paab1-1). paab1-1 exhibits degeneration of spikelets on the apical portion of panicles during late stage of panicle development. Cellular and physiological analyses revealed that the apical spikelets in the paab1-1 mutant undergo programmed cell death, accompanied by nuclear DNA fragmentation and accumulation of higher levels of H2O2 and malondialdehyde. Molecular cloning revealed that paab1-1 harbors a mutation in OsALMT7, which encodes a putative aluminum-activated malate transporter (OsALMT7) localized to the plasma membrane, and is preferentially expressed in the vascular tissues of developing panicles. Consistent with a function for OsALMT7 as a malate transporter, the panicle of the paab1-1 mutant contained less malate than the wild type, particularly at the apical portions, and injection of malate into the paab1-1 panicle could alleviate the spikelet degeneration phenotype. Together, these results suggest that OsALMT7-mediated transport of malate into the apical portion of panicle is required for normal panicle development, thus highlighting a key role of malate in maintaining the sink size and grain yield in rice and probably other grain crops.
机译:穗粒大小是水稻(Oryza sativa)和其他粮食作物谷物产量的关键决定因素。在水稻生长发育过程中,在不利条件下,小穗流产通常发生在穗的顶部或基部,导致可育的小穗数减少,从而导致谷物产量下降。在这项研究中,我们报告了称为穗顶端流产1-1(paab1-1)的穗堕胎突变体的分离和功能表征。在穗发育的后期,paab1-1在穗的顶端部分表现出小穗的变性。细胞和生理学分析表明,paab1-1突变体的顶端小穗经历了程序性的细胞死亡,伴随着核DNA片段化以及更高水平的H2O2和丙二醛的积累。分子克隆表明,paab1-1在OsALMT7中具有一个突变,该突变编码一个假定的铝激活苹果酸转运蛋白(OsALMT7)定位于质膜,并优先在发育中的圆锥花序的血管组织中表达。与OsALMT7作为苹果酸转运蛋白的功能一致,paab1-1突变体的圆锥花序包含的苹果酸少于野生型,特别是在顶端部分,将苹果酸注入paab1-1圆锥花序可以缓解小穗变性的表型。总之,这些结果表明,正常的穗发育需要OsALMT7介导的将苹果酸转运到穗的顶端部分,因此突出了苹果酸在维持水稻和可能的其他谷物作物的库大小和谷物产量中的关键作用。

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