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Mitigating Root Knot Nematode Propagation on Transgenic Tobacco via <i>in Planta</i>Hairpin RNA Expression of <i>Meloidogyne incognita</i>—Specific PolA1 Sequence
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作者 Peter Nkachukwu Chukwurah Samuel Aduse Poku +3 位作者 Akira Yokoyama Ai Takeda Masahiro Shishido Ikuo Nakamura 《American Journal of Plant Sciences》 2019年第5期866-884,共19页
Root knot nematodes are top priority nematode pests that significantly constrain agricultural productivity globally especially in developing countries. However, expressing double stranded RNA (dsRNA) of essential nema... Root knot nematodes are top priority nematode pests that significantly constrain agricultural productivity globally especially in developing countries. However, expressing double stranded RNA (dsRNA) of essential nematode genes in susceptible plants is known to confer protection against these pests via RNA silencing. This molecular-based strategy is called host induced gene silencing (HIGS) and the selection of appropriate target nematode gene is critical to its success. In this study, therefore, we focused on root knot nematode PolA1, an essential single copy nuclear gene encoding the largest subunit of RNA polymerase I enzyme and evaluated its effectiveness as a target in conferring nematode resistance on Agrobacterium-mediated transformed tobacco plants. Transgenic tobacco expressing Meloidogyne incognita-specific (MiS) dsRNA of PolA1 gene showed significant reduction in nematode fecundity and multiplication compared to wild type plants in both T0 and T1 generations. T0 plants showed varying degrees of agronomic vigorover WT plants possibly due to varying levels of processed siRNA. However, production of MiS siRNAs in the transgenic plants coupled with significant reduction of PolA1 transcript expression in nematodes feeding on roots of transgenic plants provided evidence of HIGS. Taken together, our results show that PolA1 is a potentially effective target for HIGS-mediated reduction of root knot nematode damage on transgenic tobacco. Given the homology of our target sequence among Meloidogyne species, this protection could be broad range against other root knot nematodes aside M. incognita. 展开更多
关键词 M. incognita NEMATODE Resistance N. tabacum RNA Silencing pola1 gene
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女性X-连锁网状色素异常症 被引量:1
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作者 高涛 江雪 +5 位作者 张钟 林茂 钱思宇 刁庆春 阎衡 李彦希 《临床皮肤科杂志》 CAS CSCD 北大核心 2019年第9期534-538,共5页
目的:报告国内首例女性X-连锁网状色素异常症(XLRPD),并初步研究其遗传及免疫组化特征。方法:抽外周血提取DNA,PCR扩增POLA1基因的第13内含子后测序,检测其突变情况。取患者典型皮损行HE、刚果红染色及免疫组化检测细胞角蛋白(CK)、CK5/... 目的:报告国内首例女性X-连锁网状色素异常症(XLRPD),并初步研究其遗传及免疫组化特征。方法:抽外周血提取DNA,PCR扩增POLA1基因的第13内含子后测序,检测其突变情况。取患者典型皮损行HE、刚果红染色及免疫组化检测细胞角蛋白(CK)、CK5/6、高分子细胞角蛋白(CK-H)、低分子细胞角蛋白(CK-L)、λ轻链、κ轻链。结果:POLA1基因第13内含子目标碱基(NC000023.10:g.24744696)未见突变。皮损组织病理检查示真皮乳头层见明显淀粉样物质,刚果红染色阳性,免疫组化示CK(-)、CK5/6(-)、CK-H(+)、CK-L(-)、λ轻链(+)、κ轻链(+)。结论:除POLA1基因(NC000023.10:g.24744696A>G)突变外,XLRPD还存在其他突变位点,具有遗传异质性。XLRPD中淀粉样物质具有角蛋白属性,免疫球蛋白介导的免疫调理作用参与了本病的发生。 展开更多
关键词 色素异常 网状色素沉着 皮肤淀粉样变性 pola1基因
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1例POLA1基因半合变异致X-连锁网状色素异常症的基因诊断
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作者 杨森 孙小瀑 +6 位作者 朱惠怡 郭一霖 张亚文 卢成瑜 陈德晖 黄展航 梁欢欣 《中国优生与遗传杂志》 2022年第3期486-489,共4页
目的 对临床症状疑似1例X-连锁网状色素异常症(XLRPD)的患儿进行基因诊断。方法 利用高通量测序技术对患者及其父母进行全外显子组测序,筛选候选致病位点,对其家系进行Sanger测序验证。结果 全外显子测序和Sanger测序验证发现家系中患儿... 目的 对临床症状疑似1例X-连锁网状色素异常症(XLRPD)的患儿进行基因诊断。方法 利用高通量测序技术对患者及其父母进行全外显子组测序,筛选候选致病位点,对其家系进行Sanger测序验证。结果 全外显子测序和Sanger测序验证发现家系中患儿X染色体携带POLA1基因半合变异c.1375-354A>G,患儿母亲携带该变异,但无任何临床症状。患儿出现全身皮肤弥漫性黝黑,反复呼吸道感染,前额和双鬓毛发向后上倾斜,生长发育阻滞。结论 结合患儿的临床症状和体征,POLA1基因半合变异c.1375-354 A>G很可能该病的致病基因,符合X连锁遗传规律。为该病的遗传发病机制研究提供了临床资料。 展开更多
关键词 全外显子测序 家族性X连锁网状色素异常症 pola1基因
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