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塑造香蕉的未来:在后基因组时代推进遗传性状调控与育种

Shaping the future of bananas: advancing genetic trait regulation and breeding in the postgenomics era.

作者信息

Miao Hongxia, Zhang Jianbin, Zheng Yunke, Jia Caihong, Hu Yulin, Wang Jingyi, Zhang Jing, Sun Peiguang, Jin Zhiqiang, Zhou Yongfeng, Zheng Sijun, Wang Wei, Rouard Mathieu, Xie Jianghui, Liu Juhua

机构信息

National key Laboratory of Tropical Crop Breeding, Institute of Tropical Bioscience and Biotechnology & Sanya Research Institute, Chinese Academy of Tropical Agricultural Sciences, Xueyuan Road 4, Longhua District, Sanya/Haikou 571101, China.

Hainan Key Laboratory for Protection and Utilization of Tropical Bioresources, Hainan Institute for Tropical Agricultural Resources, Chinese Academy of Tropical Agricultural Sciences, Xueyuan Road 4, Longhua District, Haikou 571101, China.

出版信息

Hortic Res. 2025 Feb 12;12(5):uhaf044. doi: 10.1093/hr/uhaf044. eCollection 2025 May.

Abstract

Bananas ( spp.) are among the top-produced food crops, serving as a primary source of food for millions of people. Cultivated bananas originated primarily from the wild diploid species (A genome) and (B genome) through intra- and interspecific hybridization and selections via somatic variation. Following the publication of complete A- and B-genome sequences, prospects for complementary studies on S- and T-genome traits, key gene identification for yield, ripening, quality, and stress resistance, and advances in molecular breeding have significantly expanded. In this review, latest research progress on banana A, B, S, and T genomes is briefly summarized, highlighting key advances in banana cytoplasmic inheritance, flower and fruit development, sterility, and parthenocarpy, postharvest ripening and quality regulation, and biotic and abiotic stress resistance associated with desirable economic traits. We provide updates on transgenic, gene editing, and molecular breeding. We also explore future directions for banana breeding and genetic improvement.

摘要

香蕉( spp.)是产量最高的粮食作物之一,是数百万人的主要食物来源。栽培香蕉主要起源于野生二倍体物种 (A基因组)和 (B基因组),通过种内和种间杂交以及体细胞变异选择而来。随着A基因组和B基因组完整序列的公布,对S基因组和T基因组性状进行互补研究、鉴定产量、成熟、品质和抗逆性的关键基因以及分子育种进展的前景显著扩大。在这篇综述中,简要总结了香蕉A、B、S和T基因组的最新研究进展,突出了香蕉细胞质遗传、花和果实发育、不育和单性结实、采后成熟和品质调控以及与理想经济性状相关的生物和非生物抗逆性方面的关键进展。我们提供了转基因、基因编辑和分子育种的最新情况。我们还探讨了香蕉育种和遗传改良的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abb7/11997438/44b267462588/uhaf044f1.jpg

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