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大豆适应中欧农业气候条件的分子选择

Molecular selection of soybean towards adaptation to Central European agroclimatic conditions.

作者信息

Rychel-Bielska Sandra, Książkiewicz Michał, Kurasiak-Popowska Danuta, Tomkowiak Agnieszka, Bielski Wojciech, Weigt Dorota, Niemann Janetta, Surma Anna, Kozak Bartosz, Nawracała Jerzy

机构信息

Department of Genetics, Plant Breeding and Seed Production, Wroclaw University of Environmental and Life Sciences, 50-363, Wrocław, Poland.

Department of Gene Structure and Function, Institute of Plant Genetics, Polish Academy of Sciences, 60-479, Poznań, Poland.

出版信息

J Appl Genet. 2025 Feb;66(1):29-45. doi: 10.1007/s13353-024-00889-6. Epub 2024 Jul 2.

Abstract

Europe is highly dependent on soybean meal imports and anticipates an increase of domestic plant protein production. Ongoing climate change resulted in northward shift of plant hardiness zones, enabling spring-sowing of freezing-sensitive crops, including soybean. However, it requires efficient reselection of germplasm adapted to relatively short growing season and long-day photoperiod. In the present study, a PCR array has been implemented, targeting early maturity (E1-E4, E7, E9, and E10), pod shattering (qPHD1), and growth determination (Dt1) genes. This array was optimized for routine screening of soybean diversity panel (204 accessions), subjected to the 2018-2020 survey of phenology, morphology, and yield-related traits in a potential cultivation region in Poland. High broad-sense heritability (0.84-0.88) was observed for plant height, thousand grain weight, maturity date, and the first pod height. Significant positive correlations were identified between the number of seeds and pods per plant, between these two traits and seed yield per plant as well as between flowering, maturity, plant height, and first pod height. PCR array genotyping revealed high genetic diversity, yielding 98 allelic combinations. The most remarkable correlations were identified between flowering and E7 or E1, between maturity and E4 or E7 and between plant height and Dt1 or E4. The study demonstrated high applicability of this PCR array for molecular selection of soybean towards adaptation to Central Europe, designating recessive qPHD1 and dominant Dt1, E3, and E4 alleles as major targets to align soybean growth season requirements with the length of the frost-free period, improve plant performance, and increase yield.

摘要

欧洲高度依赖豆粕进口,并期望增加国内植物蛋白产量。持续的气候变化导致植物耐寒区向北转移,使得包括大豆在内的对霜冻敏感的作物能够进行春播。然而,这需要高效地重新选择适应相对较短生长季节和长日照光周期的种质。在本研究中,实施了一种PCR芯片,其靶向早熟(E1-E4、E7、E9和E10)、豆荚炸裂(qPHD1)和生长决定(Dt1)基因。该芯片针对大豆多样性面板(204份材料)的常规筛选进行了优化,并于2018 - 2020年在波兰一个潜在种植区域对物候、形态和产量相关性状进行了调查。观察到株高、千粒重、成熟日期和第一荚高度具有较高的广义遗传力(0.84 - 0.88)。在单株种子数和豆荚数之间、这两个性状与单株种子产量之间以及开花、成熟、株高和第一荚高度之间发现了显著的正相关。PCR芯片基因分型显示出高遗传多样性,产生了98种等位基因组合。最显著的相关性存在于开花与E7或E1之间、成熟与E4或E7之间以及株高与Dt1或E4之间。该研究证明了这种PCR芯片在大豆适应中欧的分子选择方面具有很高的适用性,将隐性qPHD1和显性Dt1、E3和E4等位基因指定为主要目标,以使大豆生长季节需求与无霜期长度相匹配,改善植株性能并提高产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d4/11761526/3f11ad9a8aa3/13353_2024_889_Fig1_HTML.jpg

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