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151.
姜瘟病是由青枯雷尔氏菌(Ralstoniasolanacearum)引起的一种细菌性病害,被称为生姜种植产业的“癌症”.本试验设计了一种“网隔栽培法”,并探索其对土传姜瘟病发病率和生姜产量的影响.结果表明,经过连续3年的田间验证,相比传统栽培法,“网隔栽培法”种植可显著降低姜瘟病的发病率,平均减少了6.08个百分点,平均防治效果达到了48.33%;同时,生姜产量平均增加了13.21%.这种“短行播种、纵横开沟、深沟隔病”的“网隔栽培法”为姜瘟病的绿色防控提供了新方案,也为其他蔬菜、中药材等植物的土传病害防治提供了新的借鉴思路. 相似文献
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Susann Wicke Kai F. Müller Claude W. de Pamphilis Dietmar Quandt Norman J. Wickett Yan Zhang Susanne S. Renner Gerald M. Schneeweiss 《The Plant cell》2013,25(10):3711-3725
Nonphotosynthetic plants possess strongly reconfigured plastomes attributable to convergent losses of photosynthesis and housekeeping genes, making them excellent systems for studying genome evolution under relaxed selective pressures. We report the complete plastomes of 10 photosynthetic and nonphotosynthetic parasites plus their nonparasitic sister from the broomrape family (Orobanchaceae). By reconstructing the history of gene losses and genome reconfigurations, we find that the establishment of obligate parasitism triggers the relaxation of selective constraints. Partly because of independent losses of one inverted repeat region, Orobanchaceae plastomes vary 3.5-fold in size, with 45 kb in American squawroot (Conopholis americana) representing the smallest plastome reported from land plants. Of the 42 to 74 retained unique genes, only 16 protein genes, 15 tRNAs, and four rRNAs are commonly found. Several holoparasites retain ATP synthase genes with intact open reading frames, suggesting a prolonged function in these plants. The loss of photosynthesis alters the chromosomal architecture in that recombinogenic factors accumulate, fostering large-scale chromosomal rearrangements as functional reduction proceeds. The retention of DNA fragments is strongly influenced by both their proximity to genes under selection and the co-occurrence with those in operons, indicating complex constraints beyond gene function that determine the evolutionary survival time of plastid regions in nonphotosynthetic plants. 相似文献
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Bo Xian Jie Shen Weiyang Chen Na Sun Nan Qiao Dongqing Jiang Tao Yu Yongfan Men Zhijun Han Yuhong Pang Matt Kaeberlein Yanyi Huang Jing‐Dong J. Han 《Aging cell》2013,12(3):398-409
Caenorhabditis elegans is a leading model organism for studying the basic mechanisms of aging. Progress has been limited, however, by the lack of an automated system for quantitative analysis of longevity and mean lifespan. To address this barrier, we developed ‘WormFarm’, an integrated microfluidic device for culturing nematodes. Cohorts of 30–50 animals are maintained throughout their lifespan in each of eight separate chambers on a single WormFarm polydimethylsiloxane chip. Design features allow for automated removal of progeny and efficient control of environmental conditions. In addition, we have developed computational algorithms for automated analysis of video footage to quantitate survival and other phenotypes, such as body size and motility. As proof‐of‐principle, we show here that WormFarm successfully recapitulates survival data obtained from a standard plate‐based assay for both RNAi‐mediated and dietary‐induced changes in lifespan. Further, using a fluorescent reporter in conjunction with WormFarm, we report an age‐associated decrease in fluorescent intensity of GFP in transgenic worms expressing GFP tagged with a mitochondrial import signal under the control of the myo‐3 promoter. This marker may therefore serve as a useful biomarker of biological age and aging rate. 相似文献
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Abstract Formation of a triple helix between an oligodeoxyribonucleotide containing 8-oxo-2′-deoxyadenosine and a DNA duplex target was studied as a function of pH. Above pH 7.4, the triple helix with the 8-oxo-2′-deoxyadenosine was more stable than the complex with an analogous oligodeoxyribonucleotide containing deoxycytidine instead of 8-oxo-2′-deoxyadenosine. 相似文献
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