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南非玉米种质资源的引进及其利用 被引量:2
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作者 马春红 李运朝 +5 位作者 及增发 李晓煜 李良英 甄占萍 崔四平 贾银锁 《作物杂志》 CAS CSCD 北大核心 2012年第3期123-125,共3页
从南非引入24份玉米种质资源进行初步试种,结果表明:南非22号比对照农大108增产44.4%,子粒赖氨酸含量比对照略高;南非9号比对照增产37.5%,但子粒赖氨酸含量比对照低5.6%;南非3号增产11.2%。南非2号与5号的子粒赖氨酸含量分别比对照高10... 从南非引入24份玉米种质资源进行初步试种,结果表明:南非22号比对照农大108增产44.4%,子粒赖氨酸含量比对照略高;南非9号比对照增产37.5%,但子粒赖氨酸含量比对照低5.6%;南非3号增产11.2%。南非2号与5号的子粒赖氨酸含量分别比对照高10.3%与8.6%,达极显著水平,其他12个品种子粒赖氨酸含量也均超过了对照。通过南、北方4个生长季节的试种、产比与选育,已获得各类优株穗选资源共计300个穗,丰富了当地种质资源。 展开更多
关键词 南非玉米 种质资源 优质蛋白玉米 赖氨酸 品质分析
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Decomposition of Surface-Applied and Soil-Incorporated Bt Maize Leaf Litter and Cry1Ab Protein During Winter Fallow in South Africa 被引量:4
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作者 A.KAMOTA P.MUCHAONYERWA P.N.S.MNKENI 《Pedosphere》 SCIE CAS CSCD 2014年第2期251-257,共7页
Unintended effects of genetic modification on chemical composition of Bt maize leaf litter may have impacts on its decomposition. In most agricultural systems in South Africa, maize litter is either left on the soil s... Unintended effects of genetic modification on chemical composition of Bt maize leaf litter may have impacts on its decomposition. In most agricultural systems in South Africa, maize litter is either left on the soil surface or incorporated into the soil during tillage. A litterbag experiment, using leaf litter of three maize hybrids (DKC80-12B, DKC80-10 and DKC6-125), was carried out at the University of Fort Hare Research Farm, South Africa, to determine the effects of genetic modification on decomposition of maize leaf litter when left on the soil surface under field conditions between July and November, the normal fallow period, in 2008. Another litterbag experiment was conducted at the University of Fort Hare Research Farm and Zanyokwe Irrigation Scheme, South Africa, using leaf ~itter of two maize hybrids genetically modified with the erylAb gene (MONS10), DKC75-15B and PAN6Q-3OSB, and their corresponding near isolines, CRN3505 and PAN6Q-121. The degradation of CrylAb protein in the litter, both surface-applied and soil-incorporated, was also investigated. Decomposition of Bt maize litter was similar to that of non-Bt maize litter both when applied on the surface and when incorporated into soil. Soil-incorporated litter, as well as its CrylAb protein, decomposed faster than that applied on the surface. The leaf litter C:N ratios of PAN6Q-308B and PAN6Q-121 were similar throughout the study, whereas those of DKC75-15B and CRN3505 declined by similar amounts during a 12-week period. These findings suggested that decomposition of leaf litter of Bt maize, with the MON810 event, was not affected by maize genetic modification, and that the CrylAb protein broke down together with plant leaf litter during the winter fallow regardless of whether the litter was applied on the soil surface or incorporated into soil. 展开更多
关键词 genetic modification litterbag experiment maize hybrid MON810 event protein degradation
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