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Isolation and Characterization of Storage Protein Subunit-null-dwarf Mutants in Soybean(Glycine max(L.) Merr.)
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作者 Luo Ting-ting song ying-ji +7 位作者 Pang Ze Liu Han-miao Waqar Ahmed Khuhro Li Ming-xue Qiu Zhen-dong Wei Xiao-shuang song Bo Liu Shan-shan 《Journal of Northeast Agricultural University(English Edition)》 CAS 2019年第4期11-22,共12页
Dwarfing is useful to reduce plant height,when breeding high-yielding and non-lodging crops.In this study,a set of natural storage protein subunit-null dwarf mutants of soybean was reported that showed strongly reduce... Dwarfing is useful to reduce plant height,when breeding high-yielding and non-lodging crops.In this study,a set of natural storage protein subunit-null dwarf mutants of soybean was reported that showed strongly reduced plant stature and deficiency in various 7S and 11S subunits,designated as snd1 mutants.Under normal growth conditions,the snd1 mutants showed a severe dwarf phenotype,with plant height of about 25 cm.Compared with wild-type DN47,the mutant snd1 exhibited no obvious morphological differences at the early stage of development.All the snd1 mutants examined had fewer nodes and shorter than normal internodes;the leaves were similar in shape to normal parents,but were dark-green at the mature stage.The flower size was similar to DN47;however,the flowering period was shorter than in the wild-type.Significant variation was noted for protein content,oil content of the seeds and size of seeds(weight of 100 seeds)among 17 snd1 dwarf lines.Genetic analysis indicated that the dwarfism of snd1 was controlled by a single recessive gene.The snd1 dwarf mutant had markedly different dynamic levels of the endogenous hormones gibberellin(GA),brassinosteroid,indole-3-acetic acid and abscisic acid,at the seedling stage.Exogenous GA3 treatment led to recovery of the plant height phenotype of the snd1 mutant;GA3 at 0.1 mm had the largest effect on enhancing plant height.Using molecular markers,snd1 gene was approximately mapped in an interval of 603 kb between markers Satt166 and Satt561 on chromosome 19.Snd1 mutant provided valuable material for hypoallergenic soybean breeding and the snd1 gene might be a novel gene related to plant height in soybean. 展开更多
关键词 soybean(Glycine max) storage protein subunit-null dwarf mutant genetic analysis gibberellic acid mapping
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Identification of Co-dominant SSR Markers Associated with Genes Controlling α'- and cr-subunit-null β-conglycinin Phenotypes in Soybean (Glycine max (L.) Merr.)
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作者 Pang Ze Li Ming-xue +6 位作者 Zhou Jin-tao Qiu Zhen-dong song ying-ji song Yan-ru Waqar Ahmed song Bo Liu Shan-shan 《Journal of Northeast Agricultural University(English Edition)》 CAS 2021年第1期1-14,共14页
Studies have shown that the three subunits of β-conglycinin are the main potential allergens of soybean sensitive patients.And β-conglycinin has adverse effects on nutrition and food processing.So solation and produ... Studies have shown that the three subunits of β-conglycinin are the main potential allergens of soybean sensitive patients.And β-conglycinin has adverse effects on nutrition and food processing.So solation and production of lines with lowerβ-conglycinin content has been the focus of recent soybean breeding projects.Soybean lines with deficiency in one or all subunits of β-congIycinin have been obtained.An effective and rapid system to identify such mutations will facilitate genetic manipulation of the β-conglycinin subunit composition.Here,two segregating F2 populations were developed from crosses between Cgy-1/cgy-1(CC),anα'-lacking line(△α'),and DongNong 47(DN47),a wild-type(Wt)Chinese soybean cultivar with normal globulin components,and Cgy-2/cgy-2(CB),an a-lacking line(△α),and DN47.These populations were used to estimate linkage among the egy-1(conferring α'-null)and cgy-2(α-null)loci and simple sequence repeat(SSR)markers.Seven SSR markers(Sat_038,Satt243,Sat_307,Sat_109,Sat_231,Sat_108 and Sat_190)were determined to co-scgregate with cgy-1,and six SSR markers(Satt650,Satt671,Sat_418,Sat_170,Satt292 and Sat_324)co-segregated with cgy-2.Linkage maps being composed of seven SSR markers and egy-1 locus,and six SSR markers and the cgy-2 locus were then constructed.It assigned that the egy-1 gene to chromosome 10 at a position between Sat_307 and Sat_231,and the cgy-2 gene to chromosome 20 at a position between Satt650 and Satt671.These markers should enable map-based cloning of the egy-1 and cgy-2 genes.For different subunit-deficiency types[α'-null,α-null and(α'+α)-null types],the two sets of SSR markers could also detect of polymorphism between three normal cultivars and seven related mutant lines.The identification of these markers is great significance to the molecular marker-assisted breeding of soybean/9-conglycinin subunits. 展开更多
关键词 soybean(Glycine max) Β-CONGLYCININ egy-1 and cgy-2 loci SSR marker genetic linkage map
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施用生物炭对白菜根际土壤中有机质含量及酶活性的影响 被引量:21
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作者 高凤 杨凤军 +4 位作者 吴瑕 赵立琴 李玥铮 宋英吉 于宝龙 《土壤通报》 CAS CSCD 北大核心 2019年第1期103-108,共6页
为研究生物炭土壤有机质及白菜叶片中糖含量的影响。试验采用盆栽方法共设4个处理:不施用生物炭为对照(CK);施用1%,3%,5%生物炭等4个处理。结果表明,随着生物炭施用量的增加,白菜根际土壤蔗糖酶活性和有机质含量显著增加。同时施用3%和5... 为研究生物炭土壤有机质及白菜叶片中糖含量的影响。试验采用盆栽方法共设4个处理:不施用生物炭为对照(CK);施用1%,3%,5%生物炭等4个处理。结果表明,随着生物炭施用量的增加,白菜根际土壤蔗糖酶活性和有机质含量显著增加。同时施用3%和5%生物炭提高了白菜叶片中糖含量,根际土壤中多酚氧化酶,纤维素酶以及EC值显著提高,而土壤pH的变化并不明显。综上,土壤中施用生物炭提高了白菜根际土壤有机质含量和土壤酶的活性,促进了白菜生长并提高叶片中可溶性糖含量,施用3%生物炭改善效果较为明显,相当于在每公顷农田施入10 t的生物炭,可以在白菜生产上试用推广。 展开更多
关键词 白菜 生物炭 有机质 土壤酶活性 可溶性糖含量
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