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DDT降解菌株Chryseobacterium sp. PYR2对小麦的促生作用及其机理 被引量:1
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作者 刘缨 王梦雨 +5 位作者 陈国参 王继雯 幕琦 徐文洪 李健强 刘志培 《微生物学通报》 CAS CSCD 北大核心 2019年第6期1346-1355,共10页
【背景】前期结果表明,DDT降解菌株Chryseobacterium sp. PYR2可高效去除土壤中的DDT等污染物,具有潜在的应用价值,但该菌对植物的影响尚不清楚。【目的】探讨菌株Chryseobacterium sp. PYR2对植物的促生作用及其机理,为后续开发DDT降... 【背景】前期结果表明,DDT降解菌株Chryseobacterium sp. PYR2可高效去除土壤中的DDT等污染物,具有潜在的应用价值,但该菌对植物的影响尚不清楚。【目的】探讨菌株Chryseobacterium sp. PYR2对植物的促生作用及其机理,为后续开发DDT降解及植物促生双效功能菌剂提供理论依据。【方法】配制该菌株的不同梯度稀释菌悬液,用纸卷发芽法和盆栽法研究菌悬液对小麦种子萌发和植株生长的影响;Salkowski法测定PYR2合成吲哚-3-乙酸(Indole-3-acetic acid,IAA)量;单因素实验研究不同培养条件对菌株生长及IAA合成的影响;液相色谱-串联质谱-多反应监测(LC-MS/MS-MRM)方法分析IAA在PYR2菌体内的生物合成途径。【结果】PYR2菌悬液可明显提高小麦种子萌发率并促进小麦植株的生长,小麦的侧根数、株高、鲜重、干重等指标均明显提高。该作用是由于菌株PYR2可以合成植物生长激素IAA。最适IAA合成条件:温度30°C,pH 7.0-8.0,盐浓度<0.5%,L-色氨酸50mg/L。代谢液中检测到色醇、色胺和吲哚-3-乙酰胺3种中间代谢产物,推测PYR2体内存在3条IAA合成途径,分别为吲哚-3-丙酮酸(IPy A)、TAM和IAM途径。【结论】菌株PYR2对小麦具有明显的促生效果,是由于其具有多条高效合成IAA的代谢途径,表明其在农药污染土壤的生物修复及作物种植中具有潜在的应用前景。 展开更多
关键词 DDT降解菌 CHRYSEOBACTERIUM sp. pyr2 植物促生菌 吲哚-3-乙酸
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[Co(pyr)_2(sal)_2]·H_2O的合成和晶体结构 被引量:2
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作者 钟凡 张淑华 +1 位作者 蒋毅民 钟新仙 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2003年第3期318-320,共3页
在水溶液中合成了标题配合物[Co(pyr)2(sal)2]H2O, 化学式为C24H22N2O5Co,并测定了其晶体结构。晶体属单斜晶系,C2/c空间群。a = 14.654(3),b = 12.247(3),c = 14.060(3) ,β = 116.804(4)°,V = 2252.1(8) 3, Mr = 477.37, Z = 4... 在水溶液中合成了标题配合物[Co(pyr)2(sal)2]H2O, 化学式为C24H22N2O5Co,并测定了其晶体结构。晶体属单斜晶系,C2/c空间群。a = 14.654(3),b = 12.247(3),c = 14.060(3) ,β = 116.804(4)°,V = 2252.1(8) 3, Mr = 477.37, Z = 4, Dc = 1.408 g/cm3,μ = 0.800 mm-1,F(000) = 988, Co(Ⅱ)原子是六配位的八面体结构。 展开更多
关键词 [Co(pyr)2(sal)2]·H2O 合成 晶体结构 C24H22N2O5Co 单斜晶 钴配合物 水杨醛 吡啶 酶研究
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Counteraction of ABA-Mediated Inhibition of Seed Germination and Seedling Establishment by ABA Signaling Terminator in Arabidopsis 被引量:13
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作者 Zhijuan Wang Ziyin Ren +13 位作者 Chunhong Cheng Tao Wang Hongtao Ji Yang Zhao Zhiping Deng Liya Zhi Jingjing Lu Xinying Wu Shimin Xu Mengmeng Cao Hongtao Zhao Liu Liu Jiankang Zhu Xia Li 《Molecular Plant》 SCIE CAS CSCD 2020年第9期1284-1297,共14页
Seed germination and seedling establishment are important for the reproductive success of plants,but seeds and seedlings typically encounter constantly changing environmental conditions.By inhibiting seed germination ... Seed germination and seedling establishment are important for the reproductive success of plants,but seeds and seedlings typically encounter constantly changing environmental conditions.By inhibiting seed germination and post-germinative growth through the PYR1/PYL/RCAR ABA receptors and PP2C co-receptors,the phytohormone abscisic acid(ABA)prevents premature germination and seedling growth under unfavorable conditions.However,little is known about how the ABA-mediated inhibition of seed germination and seedling establishment is thwarted.Here,we report that ABA Signaling Terminator(ABT),a WD40 protein,efficiently switches off ABA signaling and is critical for seed germination and seedling establishment.ABT is induced by ABA in a PYR1/PYL/RCAR-PP2C-dependent manner.Overexpression of ABT promotes seed germination and seedling greening in the presence of ABA,whereas knockout of ABT has the opposite effect.We found that ABT interacts with the PYR1/PYL/RCAR and PP2C proteins,interferes with the interaction between PYR1/PYL4 and ABI1/ABI2,and hampers the inhibition of ABI1/ABI2 by ABA-bound PYR1/PYL4,thereby terminating ABA signaling.Taken together,our results reveal a core mechanism of ABA signaling termination that is critical for seed germination and seedling establishment in Arabidopsis. 展开更多
关键词 ABA ABT ABA signaling PYR1/PYL7RCAR-ABA-PP2Cs complex seed germination post-germinative development
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