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11.
Since 2012, a new pathogenic syndrome has frequently been observed in many areas of kiwifruit cultivation in Italy. The main symptoms include an initial withering of the leaves followed by a total and sudden collapse of plants, mainly occurring during summer. The withered leaves fall and the main and secondary feeder roots appear rotten, sometimes showing a reddish-brown discoloration. The disease, that affects both the green and yellow-fleshed cultivars, has been called kiwifruit vine decline and is locally known as moria. The syndrome has been found consistently associated with soil waterlogging, which frequently occurs either after the traditional agronomical practice of irrigating orchards through surface irrigation or after very heavy rainfall. So far, the role played by bacteria in this syndrome has not been investigated. In the present study, Clostridium spp. were isolated from both rotten roots and soils obtained from Italian kiwifruit orchards affected by the syndrome, indicating for the first time that anaerobic bacteria are able to cause damage to woody crops. C. bifermentans and C. subterminale incited symptoms in kiwifruit in both in vivo and in vitro pathogenicity tests. Soil waterlogging seems to potentially favour colonization of kiwifruit roots by anaerobic bacteria, probably because saturation of the soil can facilitate proliferation and persistence of these bacteria during long periods of the vegetative growth of the crop. The occurrence of anaerobic bacteria does not exclude the possibility that other microorganisms can play additional/synergic role(s) in causing the kiwifruit vine decline.  相似文献   
12.
以天津、北京、杭州等10个地区的葡萄园以及市场中的75份腐烂葡萄为研究对象,应用分子生物学手段进行葡萄表面微生物(细菌和真菌)多样性的核酸测序(包括16S区域扩增子和ITS区域扩增子)分析;同时基于次级代谢产物,使用高效液相色谱(HPLC)法对葡萄样本进行了21种真菌毒素的测定分析,以初步摸清主要风险危害,锁定风险菌株。结果表明,对表面微生物的核酸测序共获得细菌16S有效OTU信息732个和真菌ITS有效OTU信息4 336个,构建了葡萄表面菌相分子数据库,其中包括367种细菌和256种真菌,其主要病原菌为青霉、黑曲、链格孢菌、杂色曲霉、灰葡萄孢、炭疽和盾壳霉;通过真菌毒素测定分析,共检测出4种真菌毒素,分别为交链孢毒素AOH、交链孢毒素AME、交链孢毒素TeA和交链孢毒素TEN。  相似文献   
13.
木本植物逆境胁迫研究进展   总被引:1,自引:0,他引:1  
木本植物(Woody plant)具有多年生、木质部发达和茎坚硬等特点,能抵御复杂多变的外界环境。本综述归纳了木本植物逆境胁迫的几个重要方面,例如盐胁迫、干旱胁迫和低温胁迫。归纳并总结了与应激有关的基因、蛋白质、转录因子和应激反应机制,并简要概述了木本植物在植被保护、园林绿化和土壤改良等方面的应用价值,最后对木本植物研究的局限性和存在的不足进行了讨论。蒙古柳(Salix linearistipularis)作为松嫩平原盐碱地区唯一具有群落分布的木本植物,是研究逆境胁迫的重要树种材料。因此,本综述着重介绍了耐盐碱木本植物蒙古柳对盐等逆境胁迫的研究进展,以期为木本植物逆境胁迫研究提供一定的理论基础;并针对目前研究存在的不足,为进一步研究提供了参考方向。  相似文献   
14.
【目的】 以6份不同地理来源的糜子资源为试验材料,基于前期转录组测序获得的1 000对SSR引物,选出200对进行多态性检测,以期构建一批可以准确评估糜子种质遗传差异的分子标记。【方法】 用Primer Premier 5.0软件设计引物,改良CTAB法提取DNA,PCR扩增DNA和聚丙烯酰胺凝胶电泳筛选引物多态性;用PowerMarker 3.25和PopGen 1.32计算遗传多样性参数。【结果】 200对引物中97对呈单态性,80对呈多态性。单碱基序列重复引物有20对,10对具多态性,其重复基元是A(50%)和T(50%)。二碱基序列重复引物有36对,15对具多态性,其碱基重复类型有7种(AG最多,TC、GC和GA次之,CA、TA和AC最少)。三碱基序列重复引物有144对,55对具多态性,其碱基重复类型有24种(GGC、GCG和GCC最多,GAA、GCT和CGC等次之,ACC、AGG、CAG、CGT、AAG、AAC、TCG、CGA、ATT、CAA和CCA最少)。就引物分辨率(Rp)值而言,1—3碱基序列重复引物分别为0.67—4.67(平均2.07)、1.33—4.33(平均2.73)和0.67—4.00(平均1.83)。基于Rp值分析SSR分布频次,发现80个标记分布在5个区间:0—1、1—2、2—3、3—4和4—5,分别包含17(21.25%)、36(45.00%)、11(13.75%)、14(17.50%)和2个(2.50%)。就$\overline{\text{Rp}}$值而言,1—3碱基序列重复引物分别为0.33—0.67(平均0.51)、0.40—0.78(平均0.59)和0.33—0.83(平均0.59)。单碱基序列重复标记共检测到22个等位变异,每个位点为2—3个(平均2.2000),其中8个和2个位点分别具2和3个变异;二碱基序列重复标记共检测到38个等位变异,每个位点为2—3个(平均2.5333),其中7个和8个位点分别具2和3个变异;三碱基重复标记共检测到136个等位变异,每个位点为2—3个(平均2.4727),其中29个和26个位点分别具2和3个变异。就多态性信息含量而言,1—3碱基序列重复引物分别为0.3750—0.5355(平均0.4293)、0.2392—0.7438(平均0.4293)和0.2392—0.7438(平均0.3989)。就多样性指数而言,1—3碱基序列重复分别为0.6365—1.0776(平均0.7497)、0.5623—1.0986(平均0.8339)和0.5623—1.0889(平均0.8312)。【结论】 基于转录组测序结果,检测200对SSR引物的多态性,发现177对(88.5%)可以扩增出完整条带,其中80对具多态性,多态率为40%。  相似文献   
15.
【目的】 刈割是草原主要利用方式之一,植物功能群和群落物种多样性是判别干扰条件下草地生态系统退化的重要生态学指标。研究不同刈割干扰下羊草草甸草原植物功能群和群落物种多样性的变化,了解刈割干扰下草原功能群与多样性变化过程和机制,为退化割草地生态恢复提供理论依据。【方法】 以呼伦贝尔羊草草甸草原时空刈割配置为试验平台,于2014—2018年植物生长最旺盛的季节(即每年8月初),采用样方法对各个小区进行群落植被调查。分析一年一割(G1)、两年一割(G2)、漏割带10 m(G3)、漏割带5 m(G4)和对照(CK)处理下草甸草原群落功能群和物种多样性变化以及刈割时间和不同刈割处理间的交互作用,探讨植物功能群与群落物种多样性的相关关系。【结果】 研究发现羊草(Leymus chinensis)在不同刈割制度下均为优势物种,但是随着刈割频次的增加呈现出羊草重要值逐渐降低,退化指示物种星毛委陵菜(Potentilla acaulis)、披针叶黄华(Thermopsis lanceolate)等重要值增加的趋势;两年一割处理下羊草、糙隐子草(Cleistogenes squarrosa)、长柱沙参(Adenophora stenanthina)、柴胡(Bupleurum scorzonerifolium)和草地早熟禾(Poa ratensis)等植物重要值均高于其他处理。一年一割和常年不刈割处理下草地植物禾本科和豆科植物重要值所占比例减少,以退化植物居多的菊科和莎草科植物所占比例增加,在漏割带为10 m处理草地的豆科植物增加;刈割处理5年后,不同刈割制度下植物群落物种多样性指数均有增加,其中漏割带为10 m处理Shannon-Wiener多样性和Simpson优势度指数增加明显。5个刈割处理均匀度指数变化趋势不同,其中G3和G4处理草地的群落均匀度有增加的趋势,分别增加16%和5.8%,G1、G2和CK草地群落均匀度指数下降,其中G1下降最大(下降了1.8%),其次是CK(下降1.6%),G2草地下降最少。植物群落物种多样性指数变化分析表明经过5年不同刈割处理,漏割带10 m处理的草地植物群落物种多样性提高。群落物种多样性指数与植物功能群禾本科重要值存在极显著负相关关系,与毛茛科和菊科重要值呈现显著正相关关系。【结论】 长期高频度刈割会导致草原退化,同样对草原长期不利用也会致使草原发生逆行演替;两年一割和漏割带为10 m的连年刈割均可以缓解群落中禾本科等优势植物比例下降,促进毛茛科植物比例增加;经过5年的不同刈割处理,漏割带为10 m的刈割处理植物群落物种多样性有所提高,即对草原进行适度刈割干扰(两年一割和漏割带10 m)有利于草原的可持续发展。  相似文献   
16.
Y Wang  Z W Fan  Y D Shen  X X Li  Y Liu  Q Q Huang 《Weed Research》2019,59(6):419-426
Invasive plants may be more plastic than non‐invasive plants and maintain high fitness under various environmental conditions. Previous studies mainly focused on the comparisons between invasive and native plants, and comparisons between highly invasive and less invasive exotic species are still relatively rare, especially for comparisons at the subspecies level. This study examined the effects of nutrient addition and shading on the performance of the highly invasive Mimosa invisa and its less invasive subspecies M. invisa var. inermis under either isolated or competitive conditions. Nutrient addition increased biomass and plant height and decreased root‐to‐shoot ratio (R/S). Shading decreased biomass and R/S and increased plant height. Under isolated conditions, the two invaders did not differ in R/S, plant height and plasticity of these traits in response to nutrient addition or shading, and the two invaders also did not differ in biomass production under each of the nutrient and light treatments. When the two invaders competed with each other, M. invisa outcompeted M. invisa var. inermis under high soil nutrient conditions, and the two invaders did not differ in performance under other growth conditions. Thus, only considering competition may we find out the difference between highly invasive species and their closely related, less invasive subspecies. Management of M. invisa should focus on habitats with high soil nutrient availability, in which M. invisa is more likely to dominate.  相似文献   
17.
Soil salinity has become a serious environmental abiotic stress limiting crop productivity and quality. The root system is the first organ sensing the changes in salinity. Root development under elevated salinity is therefore an important indicator for saline tolerance in plants. Previous studies focused on varietal differences in morphological traits of quinoa under saline stresses; however, variation in root development responses to salinity remains largely unknown. To understand the genetic variation in root development responses to salt stress of quinoa, we conducted a preliminary screening for salinity response at two salinity levels of a diverse set of 52 quinoa genotypes and microsatellite markers were used to link molecular variation to that in root development responses to salt stresses of represented genotypes. The frequency distribution of saline tolerance index showed continuous variation in the quinoa collection. Cluster analysis of salinity responses divided the 52 quinoa genotypes into six major groups. Based on these results, six genotypes representative of groups I to VI including Black quinoa, 2-Want, Atlas, Riobamba, NL-6 and Sayaña, respectively, were selected to evaluate root development under four saline stress levels: 0, 100, 200 and 300 mM NaCl. Contrasts in root development responses to saline stress levels were observed in the six genotypes. At 100 mM NaCl, significant differences were not observed in root length development (RLD) and root surface development (RSAD) of most genotypes except Black quinoa; a significant reduction was observed in this genotype as compared to controls. At 200 mM NaCl, significant reduction was detected in RLD and RSAD in all genotypes showing this as the best concentration to discriminate among genotypes. The strongest inhibition of root development was found for all genotypes at 300 mM NaCl as compared to lower saline levels. Among genotypes, Atlas of group III shows as a saline-tolerant genotype confirming previous reports. Variation in root responses to salinity stresses is also discussed in relation to climate conditions of origins of the genotypes and reveal interesting guidelines for further studies exploring the mechanisms behind this aspect of saline adaptation.  相似文献   
18.
Members of the bacterial genus Azospirillum are root-associated bacteria that increase yield in cereals by promoting growth and alleviating drought stress. How plants integrate the many bacterium-derived growth-promoting stimuli with other environmental factors to generate a coordinated response remains unresolved. Using a commercial Azospirillum strain, A. lipoferum CRT1 and two host maize cultivars, it was observed that bacterization reduced the drought-induced increase in lateral root growth and enhanced the flood-induced increase in lateral root growth in the more drought- and flood-sensitive cultivar. In the other one, A. lipoferum CRT1 only elicited a moderate root growth response under low soil water potential. The photosynthetic potential and activity were increased in the earlier cultivar and decreased in the later one, irrespective of the soil water content. No impact of the bacterium was seen on the growth of the leaves of both cultivars under both stresses until the third leaf stage, therefore suggesting that it is a consequence of multiple primary adaptations to biotic and abiotic stresses. It is suggested that host–bacteria recognition leads to a stress-specific modulation of the root response and a differential stress-independent effect on photosynthesis. This is the first report of the impact of Azospirillum under flood conditions.  相似文献   
19.
本研究旨在分析转录因子DREB2A基因在不同水稻种质中的遗传多样性,以期为水稻耐渗透胁迫遗传改良提供分子工具。利用单倍型分析、系统进化树、遗传距离和密码子偏好性分析,对85份不同类型水稻种质中DREB2A基因的功能性核苷酸序列变异及遗传多样性进行了研究。共鉴定出55个核苷酸变异位点,其中12个位于编码区,43个位于非编码区;鉴定出12个DREB2A等位基因型,其中来自非洲栽培稻(Oryza glaberrima)的3个等位基因型表现大片段变异;根据DREB2A基因的序列变异鉴定出39个单倍型,其中33个为新单倍型;将所有单倍型分为三组(Group I、II和III),其中非洲栽培稻(Oryza glaberrima)中的10个单倍型单独分为一组(Group III);系统进化树、遗传距离和密码子偏好性分析均表明Group III与其他两组具有较大差异。对85份不同类型水稻种质中DREB2A基因的序列分析表明,非洲栽培稻(Oryza glaberrima)中的DREB2A等位基因在序列变异、系统进化关系和密码子偏好性方面均明显不同于其他种质材料中的等位基因。  相似文献   
20.
为了促进一氧化碳(CO)在植物生理生化方面的研究,本文归纳了CO在植物体中的生物合成途径,CO作为信号分子对植物各种生理功能的调控,以及CO与其他信号分子之间的相互作用。经过分析得出,CO在植物生物胁迫过程中的作用及其作用机制方面的研究还很少,因此,CO在这方面的研究将会成为今后的研究重点。  相似文献   
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