首页|大小粒型藜麦籽粒表型、灌浆特性及淀粉合成酶活性的差异分析

大小粒型藜麦籽粒表型、灌浆特性及淀粉合成酶活性的差异分析

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[目的]籽粒大小是影响藜麦产量、商品性和加工特性的重要因素,考察灌浆期大小粒型藜麦籽粒表型、灌浆特性和淀粉合成酶活性的差异,可为大粒型藜麦品种的选育提供理论指导.[方法]选择千粒重大于5.0 g和小于3.0 g的藜麦材料各2份,在青海省农林科学院种质资源创新试验基地进行田间试验,比较自灌浆期始7 d、14 d、21 d和28 d籽粒表型、灌浆特性和淀粉合成酶活性等在大小粒型藜麦间的差异.[结果](1)大小粒型藜麦籽粒面积、周长、直径、粒长、粒宽表型性状随着生育时期均极显著增大,且粒型间存在显著差异,并以籽粒面积和周长差异最大,大粒型藜麦分别显著高于小粒型藜麦9.12%~11.54%和21.49~23.92%.(2)灌浆期间大粒型藜麦百粒干质量始终显著高于同期小粒型藜麦,平均增幅在21.23%~31.04%;大小粒型藜麦灌浆速率随生育期均先上升后下降,均符合"慢—快—慢"的变化规律,但达到峰值时间和峰高明显不同,大粒型峰值出现早而高,小粒型则低而迟.(3)淀粉分支酶(SBE)、蔗糖合成酶(SS)、可溶性淀粉合成酶(SSS)和ADPG焦磷酸化酶(AGP)在大小粒型藜麦籽粒灌浆期呈现不同的变化趋势,SBE和SS活性表现为小粒型藜麦强于大粒型藜麦,而SSS和AGP活性则表现为大粒型藜麦强于小粒型藜麦.[结论]藜麦籽粒灌浆期间4种淀粉合成酶活性的差异,致使淀粉合成积累量和灌浆速率峰值的不同,进而形成籽粒表型性状的差异,而SSS和AGPase是影响藜麦籽粒大小形成的关键酶.
Analysis of grain phenotype,filling characteristics,and starch synthase activity in Chenopodium quinoa with different grain sizes
[Objective]Grain size significantly influences the yield,marketability,and processing character-istics of quinoa(Chenopodium quinoa).Understanding the grain phenotypes,filling characteristics,and starch synthase activity of large-and small-grained quinoa during the filling period can provide guidance for the selection and breeding of large grain quinoa varieties.[Methods]Two quinoa samples,one with a thousand grain weight exceeding 5.0 g and the other is below 3.0 g,were selected for a field experiment at the Innovative Experimental Base of Germplasm Resources of Qinghai Academy of Agricultural and For-estry Sciences.The study compared the difference of grain phenotypes,filling characteristics,and starch synthase activity between large-and small-grained quinoa at 7,14,21,and 28 days of the filling stage.[Results](1)The phenotypic traits of large-and small-grained quinoa,including grain area,circumfer-ence,diameter,kernel length,and kernel width,were significantly increased during reproductive period.There were significant differences between grain types,where the largest differences were in grain area and circumference,with the large-grained quinoa was significantly higher than small-grained quinoa by 9.12%to 11.54%and 21.49 to 23.92%,respectively.(2)Throughout the filling period,the dry mass of 100 grains of large-grained quinoa exceeded that of small-grained quinoa,with an average increase of 21.23%to 31.04%;the filling rate of large and small-grained quinoa rose first and declined subsequently during the reproductive period,which was in the pattern of"slow-fast-slow".However,the time to reach the peak and the peak height were different,with large-grained quinoa was early and high,while small-grained quinoa was low and late.(3)The starch branching enzyme(SBE),sucrose synthase(SS),soluble starch synthase(SSS),and ADPG pyrophosphorylase(AGP)varied for both grain sizes,with SBE and SS activi-ties being stronger in small-grained quinoa than in large-grained quinoa,while SSS and AGP activities were stronger in large-grained quinoa than in small-grained quinoa.[Conclusion]Variations in the activities of four starch synthases during grain filling contribute to differences in starch accumulation and peak filling rate,which in turn leads to differences in grain phenotypic traits,whereas SSS and AGPase are the key en-zymes affecting quinoa grain size.

quinoagrain sizegrain phenotypefilling characteristicsstarch synthase activity

陶小所、姚晓华、姚有华

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青海大学农林科学院,西宁 810016

青藏高原种质资源研究与利用实验室,西宁 810016

藜麦 籽粒大小 籽粒表型 灌浆特性 淀粉合成酶活性

青海省科技成果转化专项项目青海省科技特派员专项

2022-NK-1122023-NK-P09

2024

西北植物学报
西北农林科技大学,陕西省植物学会

西北植物学报

CSTPCD北大核心
影响因子:1.031
ISSN:1000-4025
年,卷(期):2024.44(3)
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