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番茄中ABC转运蛋白SlABCG23调控茉莉酸信号途径 被引量:1
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作者 刘玉菡 陶宁 +1 位作者 王庆国 李清清 《园艺学报》 CAS CSCD 北大核心 2023年第3期559-568,共10页
茉莉酸(jasmonic acid,JA)的运输依赖于转运蛋白的参与。ABC(ATP binding cassette)转运蛋白参与植物体内多种物质的运输。已知在番茄中存在4个与拟南芥中JA转运蛋白具有较高同源性的ABC转运蛋白。对其进行了Motif、蛋白质结构域和跨膜... 茉莉酸(jasmonic acid,JA)的运输依赖于转运蛋白的参与。ABC(ATP binding cassette)转运蛋白参与植物体内多种物质的运输。已知在番茄中存在4个与拟南芥中JA转运蛋白具有较高同源性的ABC转运蛋白。对其进行了Motif、蛋白质结构域和跨膜结构分析,并选取其中的SlABCG23进行功能初步鉴定,推测其可能与JA信号途径的调控有关。构建了SlABCG23的过表达载体,通过农杆菌侵染法得到3株过表达番茄植株。通过表型分析发现,SlABCG23过表达植株的花器官增大,花粉萌发受阻,果实内种子发育异常且体内JA含量降低。推测SlABCG23可能通过影响JA的含量参与调控JA信号途径。 展开更多
关键词 番茄 茉莉酸 转运蛋白 slabcg23
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Manipulation of a strigolactone transporter in tomato confers resistance to the parasitic weed broomrape
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作者 Xinwei Ban Li Qin +21 位作者 Jijun Yan Jianxin Wu Qianjin Li Xiao Su Yanrong Hao Qingliang Hu Liquan Kou Zongyun Yan Peiyong Xin Yuqin Zhang Lemeng Dong Harro Bouwmeester Hong Yu Qinghui Yu Sanwen Huang Tao Lin Qi Xie Yuhang Chen Jinfang Chu Xia Cui Jiayang Li Bing Wang 《The Innovation》 2025年第3期60-72,59,共14页
Parasitic weeds of the Orobanchaceae family cause substantial economic losses and pose significant threats to global agriculture.However,management of such parasitism is challenging,and very few resistance genes have ... Parasitic weeds of the Orobanchaceae family cause substantial economic losses and pose significant threats to global agriculture.However,management of such parasitism is challenging,and very few resistance genes have been cloned and characterized in depth.Here,we performed a genome-wide association study using 152 tomato accessions and identified SlABCG45 as a key gene that mediates host resistance to Phelipanche aegyptiaca by affecting the level of strigolactones(SLs)in root exudates.SLs are synthesized and released by host plants and act as germination stimulants for parasitic weeds.We found that SlABCG45 and its close homolog SlABCG44 were membrane-localized SL transporters with essential roles in exudation of SLs to the rhizosphere,resistance to Phelipanche and Orobanche,and upward transport of SLs from roots to shoots.As a predominant environmental stimulant exacerbates parasitism,phosphorus deficiency dramatically induced SlABCG45 expression and weakly induced SlABCG44 expression via the transcription factors SlNSP1 and SlNSP2.Knockout of SlABCG45 in tomato had little effect on yield traits in a broomrape-free field,but conferred increased resistance to different Phelipanche and Orobanche species,resulting in an30%yield increase in a Phelipanche-infested field.Our findings reveal that targeting a single gene by genome editing can confer broad-spectrum parasite resistance in tomato,providing an effective strategy for the sustainable control of parasitic plants in agriculture. 展开更多
关键词 phelipanche aegyptiaca slabcg parasitic weeds root exudatessls mediates host resistance genome wide association study strigolactone transporter resistance genes
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