园艺作物育种中的杂种优势:旧理论基础与现代基因组观点的结合

Silvia Farinati, Francesco Scariolo, Fabio Palumbo, Alessandro Vannozzi, Gianni Barcaccia, Margherita Lucchin
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引用次数: 0

摘要

植物杂种优势一直是世界范围内植物科学家面临的具有挑战性的课题之一。种子繁殖园艺植物杂种品种的生产是植物育种技术最成功的应用之一。杂种优势现象的利用促进了作物的同质性和产量的最大化,是育种者合法控制和保护其商品的一种方式。过去,人们在谷类作物系统中对杂种优势进行了大量的研究和探索,并将玉米作为理解这种现象的遗传基础的模型。迄今为止,园艺蔬菜的杂交育种也取得了迅速进展。F1杂交品种可用于许多园艺作物,包括异种和自交品种。几种遗传和非遗传机制已被应用于促进蔬菜作物F1杂交种子的大规模生产,以防止不良的自交。虽然F1杂交种的开发和商业化目前在农业中很常见,但这一现象仍在不同层次上进行研究。近年来,随着对植物基因组结构和基因活性知识的快速积累,以及新的基因组学平台和方法的发展,对杂种优势的遗传和分子基础的研究取得了重大进展。本文简要综述了植物杂种优势分子机制的最新理论进展和实际预测。本文旨在总结植物杂种优势的基本机制,并以园艺植物育种为重点,完善这一研究领域的现有知识。通过描述表型变异的定量遗传模型,结合进化、表型和分子遗传学的观点,阐述杂种优势的起源、表现及其对园艺作物F1杂交品种选育的意义。然后涵盖了基因组预测的原理及其在基因组选择中的应用。
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Heterosis in horticultural crop breeding: combining old theoretical bases with modern genomic views
Heterosis in plants has been among the challenging topics for plant scientists worldwide. The production of F1 hybrid varieties of seed-propagated horticultural species is one of the most successful applications of plant breeding techniques. The exploitation of the heterosis phenomenon promotes homogeneity and maximizes crop yields and is a way for breeders to legally control and protect their commercial products. In the past heterosis has been largely studied and explored in cereal crop systems, considering maize as a model for understanding the genetic bases of this phenomenon. To date, crossbreeding in horticultural vegetables has also rapidly progressed. F1 hybrid varieties are available for many horticultural crops, including both allogamous and autogamous species. Several genetic and nongenetic mechanisms have been applied to facilitate the large-scale production of F1 hybrid seeds in vegetable crops to prevent undesirable selfing. Although the development and commercialization of F1 hybrids is currently common in agriculture, this phenomenon is still being investigated at different levels. With the rapid accumulation of knowledge on plant genome structures and gene activities and the advancement of new genomics platforms and methodologies, significant progress has been achieved in recent years in the study of the genetic and molecular bases of heterosis. This paper provides a brief overview of current theoretical advances and practical predictions of the molecular mechanisms underlying heterosis in plants. The aim is to carefully summarize the fundamental mechanisms of heterosis in plants, focusing on horticultural plant breeding, to improve the existing knowledge in this research area. We describe the quantitative genetic model of phenotypic variation and combine evolutionary, phenotypic and molecular genetic views to explain the origin and manifestation of heterosis and its significance for breeding F1 hybrid varieties in horticultural crops. The principles of genomic prediction and its applications in genomic selection are then covered.
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