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1. 普通小麦P型质膜H+-ATP酶的鉴定以及与种子休眠和萌发相关的TaHA7的功能描述
Bingli Jiang, Wei Gao, Yating Jiang, Shengnan Yan, Jiajia Cao, Litian Zhang, Yue Zhang, Jie Lu, Chuanxi Ma, Cheng Chang, Haiping Zhang
Journal of Integrative Agriculture    2024, 23 (7): 2164-2177.   DOI: 10.1016/j.jia.2023.07.023
摘要170)      PDF    收藏
穗发芽严重降低小麦产量、品质以及种子活力。种子休眠性弱或缺乏是穗发芽发生的根本原因,但相关分子机制尚不清楚。 P型质膜(PM)H+-ATP酶(HAs)是植物生长、发育和抵御逆境的核心因子。尽管HAs在多种植物中的功能已被验证,但其在小麦种子萌发和休眠中的作用尚不清楚。本研究利用生物信息学方法在小麦中共鉴定了28个P型PM H+-ATP酶家族成员(命名为TaHA1-28),并将其分为5个亚族。综合转录组和基因公共表达数据库分析结果,共筛选出6个候选基因(TaHA7/-12/-14/-16/-18/-20)可能参与调控小麦种子休眠和萌发。其中,TaHA7的表达量随着种子萌发的进程而增加,推测TaHA7可能参与了小麦种子休眠和萌发的调控。随后,在强休眠和弱休眠小麦品种中对TaHA7进行全长克隆、序列变异分析、功能标记开发,并利用2个自然群体共同验证了该基因序列变异与种子休眠和萌发表型显著相关。同时,利用济麦22和京411背景的EMS突变体以及转基因拟南芥株系进一步验证了TaHA7的2种等位变异与种子休眠和萌发表型显著相关。此外,我们测定了济麦22和京411背景的EMS突变体和转基因拟南芥种子中P型PM H+-ATP酶的活性以及TaHA7拟南芥同源基因突变体和回补株系中GA和ABA信号通路中关键基因的相对表达量,推测TaHA7很可能通过影响H+-ATP酶的活性以及GA和ABA的合成、代谢以及信号转导途径,最终调控小麦种子休眠和萌发。本文结果为深入研究TaHAs基因调控小麦种子休眠和萌发的分子机制奠定了重要的理论基础。
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2. Morphological and ISSR molecular markers reveal genetic diversity of wild hawthorns (Crataegus songorica K. Koch.) in Xinjiang, China
SHENG Fang, CHEN Shu-ying, TIAN Jia, LI Peng, QIN Xue, WANG Lei, LUO Shu-ping, LI Jiang
Journal of Integrative Agriculture    2017, 16 (11): 2482-2498.   DOI: 10.1016/S2095-3119(17)61688-5
摘要627)      PDF    收藏
The wild hawthorn species, Crataegus songorica K. Koch., is an important wild germplasm resource in Xinjiang, China that has been endangered in recent years.  The genetic diversity of C. songorica K. Koch. germplasm in five populations from Daxigou, Xinjiang, China were evaluated based on phenotypic traits and ISSR molecular markers to provide basic information on resource protection, rational utilization and genetic improvement.  The F-value for the phenotypic differentiation coefficient of the 33 traits measured ranged from 0.266 to 15.128, and mean value was 13.85%.  The variation among populations was found to be lower than that within population.  A total of 303 loci were detected within the five populations by 12 primers.  Within 298 polymorphic loci, the polymorphism was 98.35%, showing a high genetic diversity in C. songorica K. Koch.  The gene diversity within population, total population genetic diversity, genetic differentiation coefficient and gene flow were 0.2779, 0.3235, 0.1408, and 3.0511, respectively.  Our results showed that C. songorica K. Koch. from Xinjiang has a high level of genetic diversity at both the phenotypic and molecular levels.  Significant genetic differentiation existed within population and the differentiation trend showed a regional association.  And in this study, in situ and ex situ conservation approaches were raised for wild hawthorn protection utilization.
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3. Cloning, localization and expression analysis of two fw2.2-like genes in small- and large-fruited pear species
TIAN Jia, ZENG Bin, LUO Shu-ping, LI Xiu-gen, WU Bin, LI Jiang
Journal of Integrative Agriculture    2016, 15 (2): 282-294.   DOI: 10.1016/S2095-3119(15)61075-9
摘要2514)      PDF    收藏
Fruit size is one of the most important agronomic characters, which is mainly determined by cell number and cell size. However, our current knowledge about pear is largely unknown. Through counting of pear mesocarp cells at different stages, we found that the cell number, rather than the cell size, is responsible for the differences between small- and large-fruited cultivars. Fruit weight-2.2 (fw2.2) is an important quantitative trait locus (QTL) affecting fruit weight in tomato and functions as a negative regulator in carpel cell division. To get more insights into this QTL in pear fruit development, we isolated two putative homologous fw2.2 genes, which were designated as fw2.2-like (PbFWL) genes. PbFWLs encode Cys-rich proteins with the CCXXXXCPC motif and belong to the PLAC8 superfamily. In addition, results from the subcellular localization indicated that PbFWLs were localized in the plasma membrane. The expression profile of the PbFWL genes by qRT-PCR showed they expressed higher in small-sized fruit cultivar than that in large-sized fruit cultivar during the cell division period. In summary, our data suggest that these two PbFWLs might be negatively related to the cell division in pear fruit.
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