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Soya
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401por Liu, Jin Yue, Sheng, Ze Wen, Hu, Yu Qi, Liu, Qi, Qiang, Sheng, Song, Xiao Ling, Liu, Biao“…Merr.) into farming systems raises concerns that transgenes might escape from the soybeans via pollen into their endemic wild relatives, the wild soybean (Glycine soja Sieb. et Zucc.). The fitness of F1 hybrids obtained from 10 wild soybean populations collected from China and transgenic glyphosate-resistant soybean was measured without weed competition, as well as one JLBC-1 F1 hybrid under weed competition. …”
Publicado 2021
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402por Zheng, Yanfen, Xu, Zongchang, Liu, Haodong, Liu, Yan, Zhou, Yanan, Meng, Chen, Ma, Siqi, Xie, Zhihong, Li, Yiqiang, Zhang, Cheng-Sheng“…Here, we employed both amplicon and shotgun metagenomic sequencing to investigate the microbiome and function signatures of bulk soil and rhizocompartment samples from three salt-tolerant plants (legumes Glycine soja and Sesbania cannabina and nonlegume Sorghum bicolor). …”
Publicado 2021
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403por Wang, Wubin, Liu, Meifeng, Wang, Yufeng, Li, Xuliang, Cheng, Shixuan, Shu, Liping, Yu, Zheping, Kong, Jiejie, Zhao, Tuanjie, Gai, Junyi“…Annual wild soybean (Glycine soja Sieb. and Zucc.), the wild progenitor of the cultivated soybean [Glycine max (L.) …”
Publicado 2016
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404por Liu, Fang, Hewezi, Tarek, Lebeis, Sarah L., Pantalone, Vince, Grewal, Parwinder S., Staton, Margaret E.“…The undomesticated progenitor species, Glycine soja, had higher rhizosphere diversity in both soil types tested in comparison to the domesticated soybean genotypes. …”
Publicado 2019
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405“…In this study, the GsERF1 gene from the wild soybean BW69 line (an Al-resistant Glycine soja line) was rapidly induced in response to aluminum stress. …”
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406por Liu, Yuan, Gao, Shujuan, Hu, Yunan, Zhang, Tao, Guo, Jixun, Shi, Lianxuan, Li, Mingxia“…Wild soybean (Glycine soja), the ancestor of cultivated soybean, has evolved into many ecotypes with different adaptations to adversity under the action of divergent evolution. …”
Publicado 2023
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407por Azabji-Kenfack, M., Dikosso, S. Edie, Loni, E.G., Onana, E.A., Sobngwi, E., Gbaguidi, E., Kana, A.L. Ngougni, Nguefack-Tsague, G., Von der Weid, D., Njoya, O., Ngogang, J.“…CONCLUSION: We therefore conclude in this preliminary study, firstly, that both spirulina and soja improve on nutritional status of malnourished HIV-infected patients but in terms of quality of nutritional improvement, subjects on spirulina were better off than subjects on soya beans. …”
Publicado 2011
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408por Akamatsu, Hajime, Kato, Masayasu, Ochi, Sunao, Mimuro, Genki, Matsuoka, Jun-ichi, Takahashi, Mami“…Soybean cultivars susceptible to Phytophthora root and stem rot are vulnerable to seed rot and damping-off of seedlings and young plants following an infection by Phytophthora sojae. In this study, the disease responses of Japanese soybean cultivars including currently grown main cultivars during the early growth stages were investigated following infections by multiple P. sojae isolates from Japanese fields. …”
Publicado 2019
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409“…With the improper application of fungicides, Phytophthora sojae begins to develop resistance to fungicides, and biological control is one of the potential ways to control it. …”
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410por Sahoo, Dipak K., Das, Anindya, Huang, Xiaoqiu, Cianzio, Silvia, Bhattacharyya, Madan K.“…Resistance is race- or gene-specific; a single gene confers immunity against only a subset of the P. sojae isolates. Unfortunately, rapid evolution of new Phytophthora sojae virulent pathotypes limits the effectiveness of an Rps (“resistance to Phytophthora sojae”) gene to 8–15 years. …”
Publicado 2021
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411“…Since the emergence of the Phytophthora sojae infection, economic losses of 10–20 billion U.S. dollars have been annually reported. …”
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412por Zhang, He, Yang, Yuxin, Mei, Xinyue, Li, Ying, Wu, Jiaqing, Li, Yiwen, Wang, Huiling, Huang, Huichuan, Yang, Min, He, Xiahong, Zhu, Shusheng, Liu, Yixiang“…Here, a field experiment confirmed the effects of maize and soybean intercropping on Phytophthora blight of soybean caused by Phytophthora sojae. Experimentally, the roots and root exudates of maize were found to attract P. sojae zoospores and inhibit their motility and the germination of cystospores. …”
Publicado 2020
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413por Fang, Yufeng, Coelho, Marco A., Shu, Haidong, Schotanus, Klaas, Thimmappa, Bhagya C., Yadav, Vikas, Chen, Han, Malc, Ewa P., Wang, Jeremy, Mieczkowski, Piotr A., Kronmiller, Brent, Tyler, Brett M., Sanyal, Kaustuv, Dong, Suomeng, Nowrousian, Minou, Heitman, Joseph“…P. sojae centromeres cluster at a single focus at different life stages and during nuclear division. …”
Publicado 2020
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414por Xia, Chengyao, Zhao, Yuqiang, Zhang, Lei, Li, Xu, Cheng, Yang, Wang, Dongming, Xu, Changsheng, Qi, Mengyi, Wang, Jihong, Guo, Xiangrui, Ye, Xianfeng, Huang, Yan, Shen, Danyu, Dou, Daolong, Cao, Hui, Li, Zhoukun, Cui, Zhongli“…Here, we examine the interactions between myxobacteria and Phytophthora sojae, an oomycete pathogen of soybean. We find that host plant and soil microbes complement P. sojae’s auxotrophy for thiamine. …”
Publicado 2023
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415“…Phytophthora sojae is one of the costliest soybean pathogens in the US. …”
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416por Yang, Kun, Yan, Qiang, Wang, Yi, Zhu, Wenyi, Wang, Xiaodan, Li, Xiaobo, Peng, Hao, Zhou, Yang, Jing, Maofeng, Dou, Daolong“…Transgenic soybean and potato plants expressing SP-PIP5K1 showed substantially enhanced resistance to various P. sojae and P. infestans isolates, respectively. SP-PIP5K1 significantly reduced PI3P accumulation during P. sojae and soybean interaction. …”
Publicado 2022
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417“…The genome sequences (95 MB for P.sojae and 65 MB for P.ramorum) were annotated with ∼19 000 and ∼16 000 gene models, respectively. …”
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418por Li, Haiyang, Wang, Haonan, Jing, Maofeng, Zhu, Jinyi, Guo, Baodian, Wang, Yang, Lin, Yachun, Chen, Han, Kong, Liang, Ma, Zhenchuan, Wang, Yan, Ye, Wenwu, Dong, Suomeng, Tyler, Brett, Wang, Yuanchao“…These results demonstrate that GmTAP1 is a susceptibility factor that is hijacked by PsAvh52 in order to promote epigenetic modifications that enhance the susceptibility of soybean to P. sojae infection.…”
Publicado 2018
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419por Feng, Siqi, Shi, Jinxia, Hu, Yongkang, Li, Die, Guo, Liang, Zhao, Zhibo, Lee, Gang-Seob, Qiao, Yongli“…The results showed that GmLBD9 and GmLBD23 negatively regulate plant immunity against P. sojae, whereas GmLBD16 and GmLBD88 positively manipulate plant immunity against P. sojae. …”
Publicado 2022
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420“…Phytophthora root rot (PRR) caused by Phytophthora sojae is a serious disease of soybean. The most effective disease-control strategy is to deploy resistant cultivars carrying Rps genes. …”
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