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大维管束韧皮部面积 4 通过源库流增强水稻的产量和品质。

Large Vascular Bundle Phloem Area 4 enhances grain yield and quality in rice via source-sink-flow.

机构信息

Rice Research Institute, Shenyang Agricultural University, Shenyang 110866, China.

Institute of Crop Sciences/National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

Plant Physiol. 2023 Jan 2;191(1):317-334. doi: 10.1093/plphys/kiac461.

Abstract

In rice (Oryza sativa L.), vascular bundle phloem tissue in the panicle neck is vital for the transport of photosynthetic products from leaf to panicle and is positively associated with grain yield. However, genetic regulation of the single large vascular bundle phloem area (LVPA) in rice panicle neck tissue remains poorly understood. In this study, we carried out genome-wide association analysis of LVPA in the panicle neck using 386 rice accessions and isolated and characterized the gene LVPA4, which is allelic to NARROW LEAF1 (NAL1). Phenotypic analyses were carried out on the near-isogenic line (NIL) NIL-LVPA4LT in the high-yielding indica (xian) cultivar Teqing and on overexpression lines transformed with a vector carrying the Lemont alleles of LVPA4. Both NIL-LVPA4LT and LVPA4 overexpression lines exhibited significantly increased LVPA, enlarged flag leaf size, and improved panicle type. NIL-LVPA4LT had a 7.6%-9.6% yield increase, mainly due to the significantly higher filled grain number per panicle, larger vascular system for transporting photoassimilates to spikelets, and more sufficient source supply that could service the increased sink capacity. Moreover, NIL-LVPA4LT had improved grain quality compared with Teqing, which was mainly attributed to substantial improvement in grain filling, especially for inferior spikelets in NIL-LVPA4LT. The single-nucleotide variation in the third exon of LVPA4 was associated with LVPA, spikelet number, and leaf size throughout sequencing analysis in 386 panels. The results demonstrate that LVPA4 has synergistic effects on source capacity, sink size, and flow transport and plays crucial roles in rice productivity and grain quality, thus revealing the value of LVPA4 in rice breeding programs for improved varieties.

摘要

在水稻(Oryza sativa L.)中,穗颈维管束韧皮组织对叶片到穗的光合产物运输至关重要,与粒产量呈正相关。然而,水稻穗颈组织中单一大维管束韧皮面积(LVPA)的遗传调控仍知之甚少。在这项研究中,我们使用 386 个水稻品种进行了穗颈 LVPA 的全基因组关联分析,分离并鉴定了与窄叶 1(NAL1)等位的基因 LVPA4。在高产籼稻品种特青的近等基因系(NIL)NIL-LVPA4LT 及其携带 Lemont 等位基因的 LVPA4 载体转化的过表达系上进行了表型分析。NIL-LVPA4LT 和 LVPA4 过表达系均表现出显著增加的 LVPA、增大的旗叶大小和改善的穗型。NIL-LVPA4LT 的产量增加了 7.6%-9.6%,主要是由于每穗的实粒数显著增加,为小穗运输光合同化物的维管束系统增大,以及更充足的源供应可以满足增加的库容量。此外,与特青相比,NIL-LVPA4LT 的粒质也有所改善,这主要归因于粒重充实的显著改善,尤其是在 NIL-LVPA4LT 的劣势小穗中。LVPA4 第三外显子的单核苷酸变异与 LVPA、小穗数和叶面积在 386 个群体的测序分析中相关。结果表明,LVPA4 对源能力、库大小和流运输具有协同作用,在水稻生产力和粒质中起着关键作用,从而揭示了 LVPA4 在水稻改良品种选育中的应用价值。

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