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Inheritance of Seed Longevity and Its Association with Other Seed-Related Traits in Soybean ( Glycine max)

机译:种子寿命的遗传及其与大豆中其他种子相关性状的关联(<重点型=“斜体”>甘氨酸Max

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摘要

Soybean seeds are highly susceptible to field weathering and mechanical damage during storage, thereby adversely affecting their longevity. To study the inheritance of seed longevity crossing was undertaken between two well-adopted genotypes (DS-228 and MAUS-71) having low seed longevity and two genotypes (Birsa Soya-1 and Kalitur) having high seed longevity and their total of 1138 F ~(2)segregants were subjected to accelerated ageing test. F ~(2)population data for seed longevity trait fitted in 3:1 Mendelian ratio indicated that it was governed by a single major gene in all the four crosses was further confirmed by test cross which fits the ratio 1:1. The segregants obtained from this study could be utilized for the development of high seed longevity soybean breeding program. The results of various six generations ( P ~(1), P ~(2), F ~(1), F ~(2), B ~(1)and B ~(2)) of four crosses exhibited varietal differences in seed vigour as clearly evident by standard germination after 8?days of accelerated ageing (ranged from 53.16 to 83.09%). Seed longevity had a positive association with germination percentage, seed density, proportion of the seed coat and lignin content in all four crosses, while seed coat permeability had negative association. The black-seeded parents were found to inherit good storability trait to their yellow-seeded progenies.
机译:大豆种子对储存期间的现场风化和机械损坏高度敏感,从而不利地影响他们的寿命。为了研究种子寿命过渡的遗传,在两种良好的基因型(DS-228和Maus-71)之间进行了低种子寿命和两个基因型(Birsa Soya-1和Kalitur),具有高种子寿命,总共1138°F 〜(2)进行分离,进行加速衰老试验。 F〜(2)种群寿命性状的人口数据适用于3:1孟德尔的比例表明它受到所有四个交叉中的单个主要基因的治理,通过测试交叉进一步证实,符合1:1的比例。本研究中获得的分离物可用于开发高种子寿命大豆育种计划。各种六代的结果(p〜(1),p〜(2),f〜(1),f〜(2),b〜(1)和b〜(2))的四十时表现出变像差异在8?天加速老化后的标准萌发中,种子活力显然(范围从53.16〜83.09%)。种子寿命与萌发百分比,种子密度,种子涂层比例和所有四个十字叶中的木质素含量的阳性结合,而种子涂层渗透性具有负关联。发现黑色种子父母将良好的储存性特性继承到黄色种子的后代。

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