Assessment of the Effects of Interactions between Climatic Conditions and Genetic Characteristics on the Agronomic Traits of Soybeans Grown in Six Different Experimental Fields

M. Park, C. Cai, Min-Jung Seo, H. Yun, Soo-Kwon Park, M. Choi, Chang-Hwan Park, J. Moon
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Abstract

Soybean [Glycine max (L.) Merr.] is a species of legume native to East Asia. The interactions between climatic conditions and genetic characteristics are known to affect the agricultural performance of soybean. Therefore, the present investigation was conducted to identify the main elements affecting the agricultural performances of 11 soybean varieties/lines from China [Harbin (45°12′N), Yanji (42°53′N), Dalian (39°30′N), Qingdao (36°26′N)] and the Republic of Korea [Suwon (37°16′N), and Jeonju (35°49′N)]. The days to flowering (DTF) of soybeans with the e1-nf and e1-as alleles and the E1e2e3e4 genotype, except in ‘Keumgangkong’, ‘Tawonkong’, and ‘Duyoukong’, were relatively short compared to those of soybeans with other alleles. Although DTF of the soybeans was highly correlated with all climatic conditions [negative: precipitation, average temperature (AVT), accumulated temperature; positive: day-length (DL)], days to maturity and 100-seed weight of the soybeans showed no significant correlation with any climatic conditions. The soybeans with a dominant Dt1 allele, except ‘Tawonkong’, had the longest stem length (STL). Moreover, STL of the soybeans grown in the test fields showed a positive correlation with only DL; however, the results of our chamber test that was conducted to complement the field tests showed that STL of soybean was positively affected by AVT and DL. Although soybean yield (YLD) showed positive correlations with latitude and DL (except L62-667, OT89-5, and OT89-6), the response of YLD to the climatic conditions was cultivar-specific. Our results show that DTF and STL of soybeans grown in six different latitudes are highly affected by DL, and AVT and genetic characteristic also affect DTF and STL.
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气候条件与遗传性状互作对6个不同试验田大豆农艺性状影响的评价
大豆[甘氨酸max (L.)]稳定。是一种原产于东亚的豆科植物。众所周知,气候条件和遗传特性之间的相互作用会影响大豆的农业生产性能。因此,本研究旨在确定影响中国[哈尔滨(45°12′n)、延吉(42°53′n)、大连(39°30′n)、青岛(36°26′n)]和韩国[水原(37°16′n)和全州(35°49′n)] 11个大豆品种/品系农业生产性能的主要因素。等位基因为e1-nf和e1-as以及E1e2e3e4的大豆,除‘金港港’、‘塔源港’和‘独优港’外,其他等位基因为e1-nf和e1-as的大豆的开花日数相对较短。尽管大豆的DTF与所有气候条件(负相关:降水、平均温度、积温;大豆的日长(DL)、成熟期和百粒重与任何气候条件均无显著相关。除“大源港”外,Dt1显性等位基因的大豆茎长最长。此外,试验田大豆的STL仅与DL呈正相关;然而,我们为补充田间试验而进行的室内试验结果表明,AVT和DL对大豆的STL有正向影响。除L62-667、OT89-5和OT89-6外,大豆产量与纬度和深度呈显著正相关,但对气候条件的响应存在品种差异。结果表明,6个不同纬度大豆的DTF和STL受DL的影响较大,AVT和遗传特性也对DTF和STL有影响。
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