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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Efficient genetic transformation and CRISPR/Cas9-mediated genome editing of watermelon assisted by genes encoding developmental regulators

Abstract: Cucurbitaceae is an important family of flowering plants containing multiple species of important food plants, such as melons, cucumbers, squashes, and pumpkins. However, a highly efficient genetic transformation system has not been established for most of these species (Nanasato and Tabei, 2020). Watermelon (Citrullus lanatus), an economically important and globally cultivated fruit crop, is a model species for fruit quality research due to its rich diversity of fruit size, shape, flavor, aroma, texture, peel and flesh color, and nutritional composition (Guo et al., 2019). Through pan-genome sequencing, many candidate loci associated with fruit quality traits have been identified (Guo et al., 2019). However, few of these loci have been validated. The major barrier is the low transformation efficiency of the species, with only few successful cases of genetic transformation reported so far (Tian et al., 2017; Feng et al., 2021; Wang JF et al., 2021; Wang YP et al., 2021). For example, Tian et al. (2017) obtained only 16 transgenic lines from about 960 cotyledon fragments, yielding a transformation efficiency of 1.67%. Therefore, efficient genetic transformation could not only facilitate the functional genomic studies in watermelon as well as other horticultural species, but also speed up the transgenic and genome-editing breeding.

Key words: Genetic transformation; Developmental regulator; GRF5; Watermelon; Cucurbitaceae; Genome editing

Chinese Summary  <25> 适用于全金属外壳5G多输入多输出智能终端的零净空正交同频天线对

常乐1,贺文宝1,陈小民2,檀笑雪1,陈娟1,康凯3,杨阳4
1西安交通大学信息与通信工程学院,中国西安市,710049
2内蒙古大学电子信息工程学院,中国呼和浩特市,010021
3中国电子产业工程有限公司欧亚部,中国北京市,100846
4中国司法大数据研究院政企事业部,中国北京市,100043
摘要:本文首次提出零净空天线对,可适用于全金属外壳第五代移动通信技术(5G)多输入多输出(MIMO)智能终端。该天线对是金属边框上的T形槽结构,可以看作由两个对称的口对口开口槽构成。该结构存在两种工作于半波模式的极化正交特征模:对于同相电流环模式,两个开口槽相位相反,可以通过在缝隙处建立电位差来激励;对于槽模式,两个开口槽相位相同,可由一个对称馈电网络来激励。得益于T形槽位于侧边边框,不需要天线净空,非常适用于现代全面屏智能终端,终端后盖可采用金属材质,适用于全金属外壳终端。本文加工了一个Sub-6 GHz的四天线阵列来验证其可行性。在3.4–3.6GHz,两对天线对的隔离性均优于16.9 dB,任意两个天线之间的包络相关系数(ECC)均小于0.13,两种模式的总效率范围分别为43.5%–61.9%和40.5%–53.5%。

关键词组:天线对;第五代移动通信技术(5G);Sub-6 GHz;极化正交;智能终端;智能手机;零净空;全金属外壳;多输入多输出(MIMO)


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DOI:

10.1631/jzus.B2200119

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On-line Access:

2022-04-11

Received:

2022-02-25

Revision Accepted:

2022-03-11

Crosschecked:

2022-04-19

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