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DMRT1是DMRT家族重要成员之一,主要参与动物性别决定和分化调控,但在不同动物中其表达和功能调控作用存在差异。本研究采用生物信息学方法分析了栉孔扇贝(Chlamys farreriDmrt1的序列特征,采用半定量RT-PCR技术确定了其mRNA在成体性腺、闭壳肌、外套膜、鳃和肾等组织中的分布,定量RT-PCR和原位杂交技术揭示了Dmrt1 mRNA在性腺中的时空表达特征。结果显示:栉孔扇贝Dmrt1序列中含有DMRT家族保守的DM结构域;其mRNA仅在栉孔扇贝性腺中表达,在精巢中的表达明显高于卵巢,并且以生长期精巢的表达水平最高;原位杂交检测Dmrt1阳性信号主要定位于生殖细胞的细胞质中。研究结果表明,Dmrt1在栉孔扇贝性腺中的表达特征与大部分动物性腺中的表达特征基本一致,推测其可能参与性别分化和精巢发育的功能调节。  相似文献   
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Priyadarshani  S. V. G. N.  Hu  Bingyan  Li  Weimin  Ali  Hina  Jia  Haifeng  Zhao  Lihua  Ojolo  Simon Peter  Azam  Syed Muhammad  Xiong  Junjie  Yan  Maokai  ur Rahman  Zia  Wu  Qingsong  Qin  Yuan 《Plant methods》2018,14(1):1-11
Background

Seed viability monitoring is very important in ex situ germplasm preservation to detect germplasm deterioration. This requires seed-, time- and labor- saving methods with high precision to assess seed germination as viability. Although the current non-invasive, rapid, sensing methods (NRSs) are time- and labor-saving, they lack the precision and simplicity which are the virtues of traditional germination. Moreover, they consume a considerable amount of seeds to adjust sensed signals to germination percentage, which disregards the seed-saving objective. This becomes particularly severe for rare or endangered species whose seeds are already scarce. Here we propose a new method that is precise, low-invasive, simple, and quick, which involves analyzing the pattern of dehiscence (seed coat rupture), followed by embryonic protrusion.

Results

Dehiscence proved simple to identify. After the trial of 20 treatments from 3 rice varieties, we recognized that dehiscence percentage at the 48th hour of germination (D(48)) correlates significantly with germination rate for tested seed lots. In addition, we found that the final germination percentage corresponded to D(48) plus 5. More than 70% of the seeds survived post-dehiscence desiccation for storage. Hydrogen peroxide (1 mM) as the solution for imbibition could further improve the survival. The method also worked quicker than tetrazolium which is honored as a fast, traditional method, in detecting less vigorous but viable seeds.

Conclusion

We demonstrated the comprehensive virtues of dehiscence method in assessing rice seed: it is more precise and easier to use than NRSs and is faster and more seed-saving than traditional methods. We anticipate modifications including artificial intelligence to extend our method to increasingly diverse circumstances and species.

  相似文献   
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基于改进YOLOv3-Tiny的番茄苗分级检测   总被引:3,自引:3,他引:0  
为了提高番茄苗分选移栽分级检测精度,该研究提出了YOLOv3-Tiny目标检测改进模型.首先建立了番茄穴盘苗数据集,使用K-means++算法重新生成数据集锚定框,提高网络收敛速度和特征提取能力;其次为目标检测模型添加SPP空间金字塔池化,将穴孔局部和整体特征融合,提高了对弱苗的召回率;同时加入路径聚合网络(PANet...  相似文献   
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