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JIA 蔬菜研究合辑(2017)

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本合辑集选 JIA 2017年出版的蔬菜研究相关论文,涵盖蔬菜种质资源、遗传育种、生理栽培方向。欢迎相关领域的科研人员识别二维码阅读全文,关注、转发、使用。


番茄

Effects of different LED light wavelengths on the resistance of tomato against Botrytis cinerea and the corresponding physiological mechanisms

不同波长LED光源对番茄灰霉病的抑制作用及生理机制

XU Hui, FU Yan-nan, LI Tian-lai, WANG Rui

为了评价不同波长LED光源对于番茄灰霉病致病性的影响,选择合理波长的光源抑制灰霉病发展,探索LED光源抑制灰霉病发生机理,利用新型LED光源进行灰霉病病菌及接种灰葡萄孢菌的番茄叶片照射试验。结果表明紫光和蓝光照射显著抑制了灰霉病菌丝的生长,抑制率分别为22.3%和15.16%,紫光抑制效果好于蓝光。在抑制灰葡萄孢菌对叶片伤害的试验中,红光和紫光照射有显著的抑制作用,抑制率分别为32.08%和36.74%。红光抑制了由于灰霉病侵染产生的超氧阴离子(O2-)释放,使受灰霉病侵染的番茄叶片中的H2O2含量快速升高,迅速激活叶片的抗病防御反应,此后H2O2含量又迅速降低至较低水平。此外,红光提高了过氧化物歧化酶(SOD),过氧化氢酶(CAT),过氧化物酶(POD)在番茄叶片的活性。紫光没有提高相关酶的活性。红光和紫光通过不同的机理对于番茄叶片灰葡萄孢菌产生抑制作用。红光是通过诱导叶片防御反应,提高抗病能力抑制病害,而紫光主要通过对灰葡萄孢菌灭活作用影响灰霉病的致病性,抑制灰霉病的侵染。

Cite this article:   

XU Hui, FU Yan-nan, LI Tian-lai, WANG Rui. Effects of different LED light wavelengths on the resistance of tomato against Botrytis cinerea and the corresponding physiological mechanisms. Journal of Integrative Agriculture, 2017, 16(01): 106-114.

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Increased resistance of drought by Trichoderma harzianum fungal treatment correlates with increased secondary metabolites and proline content

Mona S. Alwhibi, Abeer Hashem, Elsayed Fathi Abd_Allah, Abdulaziz A.Alqarawi, Dina Wafi K. Soliman, Stephan Wirth, Dilfuza Egamberdieva

In this study we investigated whether root colonization of tomato (Solanum lycopersicum) infected by Trichoderma harzianum leads to alterations in the biosynthesis of secondary plant metabolites including phytohormones and osmolyte proline under drought stress. Exposure of tomato to drought caused a drastic decline in plant growth and physiological parameters. Tomato inoculated with T. harzianum showed increased root and shoot growth and chlorophyll pigments as compared to uninoculated controls as well as drought stressed plants. Proline and total soluble protein content was increased in plants inoculated with T. harzianum under both normal as well as drought conditions. An obvious increase in phenol and flavonoid content was observed due to T. harzianum. In addition, T. harzianum inoculated plants maintained higher levels of growth regulators indole acetic acid, indole butyric acid, and gibberellic acid under drought stress. Improved secondary metabolites which play an important role in plant stress tolerance by T. harzianum may have coordinately worked for bringing the growth regulation by protecting membranes from reactive oxygen species (ROS) and enhance plant growth through accessing more nutrients by root system.

Cite this article:   

Mona S. Alwhibi, Abeer Hashem, Elsayed Fathi Abd_Allah, Abdulaziz A. Alqarawi, Dina Wafi K. Soliman, Stephan Wirth, Dilfuza Egamberdieva. Increased resistance of drought by Trichoderma harzianum fungal treatment correlates with increased secondary metabolites and proline content. Journal of Integrative Agriculture, 2017,16(08): 1751-1757.

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辣椒

Bacterial artificial chromosome library construction of root-knot nematode resistant pepper genotype HDA149 and identification of clones linked to Me3 resistant locus  

辣椒抗根结线虫优异种质HDA149的BAC文库构建及Me3抗病基因位点BAC克隆的筛选鉴定

GUO Xiao, YANG Xiao-hui, YANG Yu, MAO Zhen-chuan, LIU Feng, MA Wei-qing, XIE Bing-yan, LI Guang-cun

本研究以含Me3基因的双单倍体辣椒基因型HDA149为材料,利用CopyControlTMpCC1克隆载体构建了其细菌人工染色体文库(BAC文库)。该文库包含约211,200个BAC克隆,平均插入片段大小为95 kb,且主要集中在90−120 kb之间,空载率小于3%,约覆盖辣椒基因组的5.3倍。为便于文库筛选,本研究进一步以384个BAC克隆为单位,在211,200个BAC克隆的基础上建立了550个BAC克隆超级池。进而利用辣椒Me3基因位点的特异引物进行文库筛选,并获得了20余个阳性BAC克隆。将筛选到的阳性BAC克隆进行限制性酶切分析、BAC末端测序、末端标记开发以及新阳性克隆的挖掘,最终通过染色体步移构建了Me3基因位点总长度约为300 kb的跨叠群,这为辣椒抗根结线虫Me3基因的克隆奠定了坚实基础。

Cite this article:   

GUO Xiao, YANG Xiao-hui, YANG Yu, MAO Zhen-chuan, LIU Feng, MA Wei-qing, XIE Bing-yan, LI Guang-cun. Bacterial artificial chromosome library construction of root-knot nematode resistant pepper genotype HDA149 and identification of clones linked to Me3 resistant locus. Journal of Integrative Agriculture, 2017, 16(01): 57-64.

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Effect of continuous negative pressure water supply on the growth, development and physiological mechanism of Capsicum annuum L.

连续负压供水对辣椒生长发育及生理学机制的影响

LI Di, LONG Huai-yu, ZHANG Shu-xiang, WU Xue-ping, SHAO Hong-ying, WANG Peng

【目的】探索连续负压供水对辣椒耗水量、生长发育、生理机制及品质影响,旨在筛选出适宜辣椒生长的最佳负压供水条件,以达到节水、高产及优质的目的,为辣椒的大田生产提供理论依据。【方法】在温室大棚内采用盆栽试验,利用连续负压供水装置,设置-5 kPa、-10 kPa、-15 kPa以及人工浇水(CK)4个处理,测定了辣椒的日耗水量、产量,辣椒不同生育期生物量、硝酸还原酶、根系活力、辣椒维生素C、辣椒素、氮磷钾养分吸收量。【结果】试验中供水压力控制在-5kPa~-15kPa时,与CK相比,辣椒总耗水量降低53.42%−67.75%,总耗水强度降低54.29%−67.14%,水分利用效率提高12.66%−124.67%;辣椒于转色期-红熟期单株氮素积累量较CK分别提高了15.99%−100.55%,磷素积累量较CK提高20.47%−154.0%,钾素积累量较CK提高64.92%−144.9%;当供水压力控制在-5 kPa时,辣椒各生育期维生素C含量较CK提高13.42%−147.01%,辣椒素含量较CK提高11.54%−71.01%,辣椒果实产量较CK提高13.79%,辣椒于未熟期和绿熟期硝酸还原酶活性较CK提高335.78%和500%,辣椒于绿熟期到完熟期根系活力较CK提高79.6%−140.68%,叶绿素(a+b)含量于未熟期-完熟期较CK提高114.95%676.19%,类胡萝卜素含量较CK提高41.1%−568.06 %。【结论】辣椒采用连续负压供水方式,具有显著的节水作用,当供水压力稳定在-5 kPa时,有利于辣椒生长发育、提高产量、根系活力增强,促进营养吸收,改善辣椒品质,达到辣椒节水、增产、优质和高效的效果。

Cite this article:   

LI Di, LONG Huai-yu, ZHANG Shu-xiang, WU Xue-ping, SHAO Hong-ying, WANG Peng. Effect of continuous negative pressure water supply on the growth, development and physiological mechanism of Capsicum annuum L. Journal of Integrative Agriculture, 2017, 16(09): 1978-1899.

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黄瓜

Genome-wide identification, characterization, and expression analysis of the SWEET gene family in cucumber

黄瓜SWEET基因家族全基因组鉴定、特征与表达分析

HU Li-ping, ZHANG Feng, SONG Shu-hui, TANG Xiao-wei, XU Hui, LIU Guang-min, WANG Ya-qin, HE Hong-ju

本研究利用黄瓜全基因组信息鉴定出17个SWEET基因家族成员,这些基因不均匀的分布于黄瓜7条染色体上;序列分析发现这些家族成员含有7个保守结构域和2个丝氨酸磷酸化位点;对黄瓜、拟南芥和水稻中SWEET基因家族成员进行系统进化树分析,发现这些基因分为4个亚族;启动子元件分析显示,这17个CsSWEET基因含有9类激素和8类逆境应答顺式元件;采用荧光定量PCR技术对这17个CsSWEET基因在黄瓜各组织的转录水平进行了分析,发现大多数(70.58%)CsSWEET基因在生殖组织中具有较高表达量;在西瓜和甜瓜全基因组中各鉴定出18个SWEET基因家族成员,进化树分析结果表明这些基因家族成员与黄瓜CsSWEET基因具有高度同源性。研究结果可为进一步阐明SWEET基因家族成员在黄瓜和其他葫芦科作物中的功能提供信息参考。

Cite this article:   

HU Li-ping, ZHANG Feng, SONG Shu-hui, TANG Xiao-wei, XU Hui, LIU Guang-min, WANG Ya-qin, HE Hong-ju . Genome-wide identification, characterization, and expression analysis of the SWEET gene family in cucumber. Journal of Integrative Agriculture, 2017, 16(07): 1486-1501.

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Effects of seven different companion plants on cucumber productivity, soil chemical characteristics and Pseudomonas community

7种伴生作物对黄瓜产量,土壤化学性质和假单胞菌群的影响

CHANG Chun-ling, FU Xue-peng, ZHOU Xin-gang, GUO Mei-yu,WU Feng-zhi

本研究选择7种不同的伴生作物作为试验材料。研究发现,不同伴生作物对土壤的化学性质都具有一定的影响,例如电导率(EC),某些土壤必需的营养元素以及假单胞菌群落结构和多样性。试验结果表明,小麦/黄瓜伴生后的黄瓜产量显著高于黄瓜单作的产量。黄瓜单作后的土壤中磷和钾含量显著降低,而在黑麦/黄瓜伴生中的土壤中硝态氮和氨态氮的含量最高。PCR-DGGE和荧光定量结果表明,苜蓿/黄瓜伴生系统显著增加了土壤假单胞菌群落结构,而茼蒿/黄瓜伴生显著增加了假单胞菌的群落多样性。有趣的是,植物-土壤反馈试验结果表明,接种小麦/黄瓜伴生后的土壤,其能显著促进黄瓜的生长。总而言之,不同伴生作物对黄瓜产量,土壤化学性质和土壤假单胞菌菌群是存在不同的影响,而小麦是最适合提高黄瓜产量的伴生作物。此外,由伴生小麦引起的黄瓜土壤微生物的改变也是促进黄瓜产量增加的重要因素之一。

Cite this article:   

CHANG Chun-ling, FU Xue-peng, ZHOU Xin-gang, GUO Mei-yu, WU Feng-zhi. Effects of seven different companion plants on cucumber productivity, soil chemical characteristics and Pseudomonas community. Journal of Integrative Agriculture, 2017, 16(10): 2206-2214.

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韭菜

6-Benzylaminopurine treatment maintains the quality of Chinese chive (Allium tuberosum Rottler ex Spreng.) by enhancing antioxidant enzyme activity

6-BA处理通过增强抗氧化酶活性保持韭菜品质

JIA Li-e, LIU Sheng, DUAN Xiao-ming, ZHANG Chao, WU Zhan-hui, LIU Ming-chi, GUO Shao-gui, ZUO Jin-hua, WANG Li-bin

韭菜采后短时间贮藏便会出现异味。为了探索保持韭菜采后品质的有效途径,本试验对6-苄氨基嘌呤(6-BA)处理韭菜的品质和抗氧化活性应用效果进行了研究,在此基础上探索6-BA处理的生理反应模式。以碱性溶液为对照,将100,300和500毫克/升的6-BA喷洒处理韭菜10分钟后,置于2±1℃相对湿度80-85%的条件下储存。结果表明,300毫克/升6-BA明显延迟韭菜黄化和叶绿素降解进程,保持了总酚和类黄酮含量,提高了抗氧化酶包括超氧化物歧化酶,过氧化氢酶和过氧化物酶的活性。因此,本研究通过6-BA的外源性应用,有效的保持了韭菜采后品质。结合生理反应,对外源6-BA的应用提供了一个基于细胞分裂素采后保鲜机制的新思路。

Cite this article:   

JIA Li-e, LIU Sheng, DUAN Xiao-ming, ZHANG Chao, WU Zhan-hui, LIU Ming-chi, GUO Shao-gui, ZUO Jin-hua, WANG Li-bin. 6-Benzylaminopurine treatment maintains the quality of Chinese chive (Allium tuberosum Rottler ex Spreng.) by enhancing antioxidant enzyme activity. Journal of Integrative Agriculture, 2017, 16(09): 1968-1977.

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