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1. Pectate lyase is a factor in the adaptability for Heterodera glycines infecting tobacco
TIAN Zhong-ling, SHI Hong-li, Munawar Maria, ZHENG Jing-wu
Journal of Integrative Agriculture    2019, 18 (3): 618-626.   DOI: 10.1016/S2095-3119(18)62090-8
摘要218)      PDF(pc) (1094KB)(662)    收藏
The soybean cyst nematode, Heterodeara glycines, is a serious pathogen of soybean, and reported to be the host of a wide range of Fabaceae.  In the present study, the host specificity and reproductivity of two populations of H. glycines collected from soybean and tobacco were identified and characterized.  The comparative identity between β-1,4-endoglucanase, pectate lyase and chorismate mutase of H. glycines parasitizing on soybean and tobacco were 99, 97 and 98%, respectively.  The qRT-PCR analysis indicated that the expression of pectate lyase 2 gene was significantly higher in second-stage juveniles of H. glycines Henan population parasitizing on tobacco than that of H. glycines Shanxi population parasitizing on soybean.  In addition, the pectic acid content of cell wall was significantly higher (45%) in the roots of tobacco than the roots of soybean.  Our results indicate that the changes in transcript parasitism genes may be a result of long-term evolution illustrating how a plant-parasitic nematode adapts to the host environment for optimal infestation and survival.
 
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2. Fine Mapping and Cloning of the Grain Number Per-Panicle Gene (Gnp4) on Chromosome 4 in Rice (Oryza sativa L.)
ZHANG Zhan-ying, LI Jin-jie, YAO Guo-xin, ZHANG Hong-liang, DOU Hui-jing, SHI Hong-li, SUN Xingming, LI Zi-chao
Journal of Integrative Agriculture    2011, 10 (12): 1825-1833.   DOI: 10.1016/S1671-2927(11)60182-X
摘要2277)      PDF    收藏
Grain number per-panicle is one of the most important components for rice yield. Spikelets on the primary and secondary branches determine the grain number per-panicle in rice. In this study, we identified a natural mutant, gnp4, lack of lateral spikelet on the secondary branches in the field condition. In addition, the Gnp4 and Lax1-1 double mutant showed dramatically reduced secondary branches and spikelets in panicle at reproductive stage, and tillers at vegetative stage. By map-based cloning approach, and using four F2 segregating populations, the Gnp4 gene was finally mapped to a 10.7-kb region on the long arm of chromosome 4 in rice. In this region, only one gene was predicted, and genomic DNA sequencing of the 10.7-kb region showed no nucleotide differences between the mutant and wild type. Interestingly, we found that the methylation level of several cytosines in the promoter CpG islands region of the predicted gene in gnp4 were different from the wild type. Thus, we propose that the DNA methylation changes at these sites may induce to decrease expression level of Gnp4, consequently, resulting in phenotypic variation.
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