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WBR7的自然变异通过调节库器官中的蔗糖供应赋予水稻高产和优质特性。

Natural variation of WBR7 confers rice high yield and quality by modulating sucrose supply in sink organs.

作者信息

Shi Huan, Yun Peng, Zhu Yun, Wang Lu, Wang Yipei, Li Pingbo, Zhou Hao, Cheng Shiyuan, Liu Rongjia, Gao Guanjun, Zhang Qinglu, Xiao Jinghua, Li Yibo, Xiong Lizhong, You Aiqing, He Yuqing

机构信息

National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.

Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei, China.

出版信息

Plant Biotechnol J. 2024 Nov;22(11):2985-2999. doi: 10.1111/pbi.14420. Epub 2024 Jun 29.

Abstract

Grain chalkiness is an undesirable trait that negatively regulates grain yield and quality in rice. However, the regulatory mechanism underlying chalkiness is complex and remains unclear. We identified a positive regulator of white-belly rate (WBR). The WBR7 gene encodes sucrose synthase 3 (SUS3). A weak functional allele of WBR7 is beneficial in increasing grain yield and quality. During the domestication of indica rice, a functional G/A variation in the coding region of WBR7 resulted in an E541K amino acid substitution in the GT-4 glycosyltransferase domain, leading to a significant decrease in decomposition activity of WBR7 (allele in cultivar Jin23B) compared with WBR7 (allele in cultivar Beilu130). The NIL(J23B) and knockout line NIL(BL130) exhibited lower WBR7 decomposition activity than that of NIL(BL130) and NIL(J23B), resulting in less sucrose decomposition and metabolism in the conducting organs. This caused more sucrose transportation to the endosperm, enhancing the synthesis of storage components in the endosperm and leading to decreased WBR. More sucrose was also transported to the anthers, providing sufficient substrate and energy supply for pollen maturation and germination, ultimately leading to an increase rate of seed setting and increased grain yield. Our findings elucidate a mechanism for enhancing rice yield and quality by modulating sucrose metabolism and allocation, and provides a valuable allele for improved rice quality.

摘要

稻米垩白是一种不良性状,会对水稻的产量和品质产生负面影响。然而,垩白形成的调控机制复杂,仍不清楚。我们鉴定出了一个白肚皮率(WBR)的正向调控因子。WBR7基因编码蔗糖合酶3(SUS3)。WBR7的一个弱功能等位基因有利于提高水稻产量和品质。在籼稻驯化过程中,WBR7编码区的一个功能性G/A变异导致GT-4糖基转移酶结构域中的氨基酸发生E541K替换,使得WBR7(品种金23B中的等位基因)的分解活性与WBR7(品种北陆130中的等位基因)相比显著降低。近等基因系NIL(J23B)和敲除系NIL(BL130)的WBR7分解活性低于NIL(BL130)和NIL(J23B),导致输导器官中的蔗糖分解和代谢减少。这使得更多蔗糖运输到胚乳,增强了胚乳中贮藏成分的合成,导致WBR降低。更多蔗糖也运输到花药,为花粉成熟和萌发提供了充足的底物和能量供应,最终导致结实率提高和籽粒产量增加。我们的研究结果阐明了通过调节蔗糖代谢和分配来提高水稻产量和品质的机制,并为改良水稻品质提供了一个有价值的等位基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2d4/11501006/4e572811f802/PBI-22-2985-g006.jpg

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