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基于聚乙烯袋水培法9个甜瓜品种对埃及列当的抗性鉴定 被引量:1
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作者 张红 王豪杰 +5 位作者 毛建才 李俊华 翟文强 伊鸿平 Hanan Eizenberg yaakov tadmor 《新疆农业科学》 CAS CSCD 北大核心 2019年第9期1619-1625,共7页
【目的】基于聚乙烯袋水培法研究甜瓜不同品种对列当的抗性鉴定方法,为甜瓜抗列当品种选育提供技术支撑。【方法】利用聚乙烯袋水培法,研究不同甜瓜品种根系分泌物对埃及列当种子萌发诱导活性及寄生的影响,评价甜瓜品种抗性。【结果】... 【目的】基于聚乙烯袋水培法研究甜瓜不同品种对列当的抗性鉴定方法,为甜瓜抗列当品种选育提供技术支撑。【方法】利用聚乙烯袋水培法,研究不同甜瓜品种根系分泌物对埃及列当种子萌发诱导活性及寄生的影响,评价甜瓜品种抗性。【结果】聚乙烯袋水培9个接种埃及列当种子的甜瓜品种,其根系分泌物都可刺激列当种子发芽,但瘤状茎数量差异显著。用瘤状茎数量评价9个甜瓜品种对埃及列当的抗性,结果表明,参试甜瓜品种对列当寄生的抗感性存在差异,k2-2、k2-7及CEZ这3个品种抗性优于其他品种。【结论】聚乙烯袋水培法可作为有效的甜瓜列当抗性室内鉴定方法。 展开更多
关键词 甜瓜 埃及列当 聚乙烯袋水培法 抗性鉴定
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西瓜液泡糖转运蛋白是西瓜含糖量QTL区间的主效基因
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作者 丁双玉 许勇 +9 位作者 任毅(编译) 郭绍贵 张洁 何洪巨 孙宏贺 田守蔚 宫国义 张海英 Amnon Levi yaakov tadmor 《中国瓜菜》 CAS 北大核心 2019年第8期221-222,共2页
目的与意义:西瓜(Citrullus lanatus)果实中的可溶性糖积累是西瓜长期驯化过程中主要品质性状之一.目前,关于西瓜中糖转运蛋白是如何调节果实中各种糖积累的这一机制尚不清楚,特别是像西瓜这种储存高浓度蔗糖的作物.笔者旨在缩小已报道... 目的与意义:西瓜(Citrullus lanatus)果实中的可溶性糖积累是西瓜长期驯化过程中主要品质性状之一.目前,关于西瓜中糖转运蛋白是如何调节果实中各种糖积累的这一机制尚不清楚,特别是像西瓜这种储存高浓度蔗糖的作物.笔者旨在缩小已报道的糖含量QTL的区间,以及构建超高密度SNP遗传图谱来确定QBRX2-1 QTL的决定基因,并阐明西瓜驯化过程中糖分积累的分子机制. 展开更多
关键词 糖转运蛋白 主效基因 QTL 西瓜 区间 含糖量 液泡 驯化过程
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Carotenoid Pigment Accumulation in Horticultural Plants 被引量:21
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作者 Anna S.Hermanns Xuesong Zhou +2 位作者 Qiang Xu yaakov tadmor Li Li 《Horticultural Plant Journal》 SCIE 2020年第6期343-360,共18页
Carotenoids are a group of widely distributed natural pigments.They give many horticultural plants the bright red,orange,and yellow colors,as well as the aroma and flavor.Carotenoids enhance the health value and repre... Carotenoids are a group of widely distributed natural pigments.They give many horticultural plants the bright red,orange,and yellow colors,as well as the aroma and flavor.Carotenoids enhance the health value and represent an essential quality trait of horticultural products.Significant efforts have been made to correlate specific carotenoid production with pathway gene expression.Some transcription factors that directly regulate transcription of the pathway genes have been identified.Horticultural crops have evolved with complicated and multifaceted regulatory mechanisms to generate the enormous diversity in carotenoid content and composition.However,the diverse and complex control of carotenoid accumulation is still not well understood.In this review,we depict carotenoid accumulation pathways and highlight the recent progress in the regulatory control of carotenoid accumulation in horticultural plants.Because of the critical roles of chromoplasts for carotenoid hyperproduction,we evaluate chromoplast ultrastructures and carotenoid sequestrations.A perspective on carotenoid research in horticultural crops is provided. 展开更多
关键词 CAROTENOID CHROMOPLAST PATHWAY REGULATION Horticultural crops
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Comparative transcriptome analyses shed light on carotenoid production and plastid development in melon fruit 被引量:3
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作者 Noam Chayut Hui Yuan +12 位作者 Yuval Saar Yi Zheng Tianhu Sun Xuesong Zhou Anna Hermanns Elad Oren Adi Faigenboim Maixia Hui Zhangjun Fei Michael Mazourek Joseph Burger yaakov tadmor Li Li 《Horticulture Research》 SCIE 2021年第1期1229-1241,共13页
Carotenoids,such asβ-carotene,accumulate in chromoplasts of various fleshy fruits,awarding them with colors,aromas,and nutrients.The Orange(CmOr)gene controlsβ-carotene accumulation in melon fruit by posttranslation... Carotenoids,such asβ-carotene,accumulate in chromoplasts of various fleshy fruits,awarding them with colors,aromas,and nutrients.The Orange(CmOr)gene controlsβ-carotene accumulation in melon fruit by posttranslationally enhancing carotenogenesis and repressingβ-carotene turnover in chromoplasts.Carotenoid isomerase(CRTISO)isomerizes yellow prolycopene into red lycopene,a prerequisite for further metabolism intoβ-carotene.We comparatively analyzed the developing fruit transcriptomes of orange-colored melon and its two isogenic EMS-induced mutants,low-β(Cmor)and yofi(Cmcrtiso).The Cmor mutation in low-βcaused a major transcriptomic change in the mature fruit.In contrast,the Cmcrtiso mutation in yofi significantly changed the transcriptome only in early fruit developmental stages.These findings indicate that melon fruit transcriptome is primarily altered by changes in carotenoid metabolic flux and plastid conversion,but minimally by carotenoid composition in the ripe fruit.Clustering of the differentially expressed genes into functional groups revealed an association between fruit carotenoid metabolic flux with the maintenance of the photosynthetic apparatus in fruit chloroplasts.Moreover,large numbers of thylakoid localized photosynthetic genes were differentially expressed in low-β.CmOR family proteins were found to physically interact with light-harvesting chlorophyll a–b binding proteins,suggesting a new role of CmOR for chloroplast maintenance in melon fruit.This study brings more insights into the cellular and metabolic processes associated with fruit carotenoid accumulation in melon fruit and reveals a new maintenance mechanism of the photosynthetic apparatus for plastid development. 展开更多
关键词 apparatus ORANGE metabolism
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Carotenoid Metabolism in Plants: The Role ol Plastids 被引量:33
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作者 Tianhu Sun Hui Yuan +3 位作者 Hongbo Cao Mohammad Yazdani yaakov tadmor Li Li 《Molecular Plant》 SCIE CAS CSCD 2018年第1期58-74,共17页
关键词 类胡萝卜素 新陈代谢 质体 工厂 OL 细胞器 类型 叶绿体
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