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作 者:杨凤娇[1] 李红英[1] 卢存福[1] 陈玉珍[1]
机构地区:[1]北京林业大学 生物科学与技术学院 林木育种国家工程实验室 林木花卉遗传育种教育部重点实验室,北京100083
出 处:《亚热带植物科学》2015年第1期1-7,共7页Subtropical Plant Science
基 金:国家科技支撑计划项目(2011BAI13B06);国家自然科学基金(31270737);北京市自然科学基金(6112016)
摘 要:以玉米基础自交系(AS-9)及其化学诱变自交系M4为实验材料进行耐盐性鉴定,同时利用44对可能与根系性状有关联的SSR引物进行遗传变异分析。结果表明,诱变M4幼苗经200和250 mmol·L-1 Na Cl盐胁迫处理7 d后,IV400、IV1600根数比AS-9对照分别增加23.1%、19.1%,诱变IV1600初生根1、2、3根长分别为对照的1.33、1.70、2.15倍;同时在M4玉米试材中扩增出多态性条带的引物25对,占引物总数的56.82%;诱变自交系M4与AS-9的遗传相似系数平均值为0.6563,遗传相似系数中心化后,数据在-0.04处可把材料分为三个类群,基础材料AS-9为Ⅰ类,M4代IV1400、IV1600、IV2000聚为Ⅲ类,其余诱变系为Ⅱ类。此外,6对引物的SSR-PCR产物进行序列差异检测,结果产生新的基元和基元重复次数变化,说明系列化学诱变已使玉米自交系AS-9产生了显著的遗传变异。Chemical mutation was an effective way of creating new germplasm resources. To analyze the impact of chemical mutagenesis on AS-9 maize inbred offspring, the salt tolerance and genetic variation between mutant M4 and the corresponding original material(AS-9) were evaluated by using 44 pairs of SSR markers that may be associated with root traits. Seed germination, bud length and root number of M4 were higher than that of AS-9. After treatment with 200 and 250 mmol·L-1 Na Cl for 7 days, root numbers of IV400 and IV1600 seedlings were higher than that of AS-9, with increases of 23.1% and 19.1%, respectively. IV1600 primary root lengths of 1, 2, 3 were 1.33, 1.70, and 2.15 times longer than that of AS-9, respectively. Twenty five pairs of SSR primers gave profiles amplified in sample of M4 mutants, accounting for 56.82% of the total pairs of primers. The average value of genetic similarity coefficient between IVCK and M4 was 0.6563. With the centered genetic similarity coefficient of-0.04 by UPGMA, the maize inbred line materials were divided into three groups: the original material(IVCK), the M4 mutants including IV1400, IV1600, IV2000, and other M4 mutants(IV200, IV400, IV800, IV1200). Principal component analysis and clustering results were similar. In addition, SSR-PCR products amplified by six pairs of primers were sequenced, the results showed that there was distinct variation between AS-9 and the induced M4, indicating chemical mutagenesis made maize inbred AS-9 produce a wide range of genetic variation.
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